Translation components API.

See the Weblate's Web API documentation for detailed description of the API.

GET /api/components/sdg-metadata/7-2-1/changes/?format=api
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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            "target": "<h1> Ссылки </h1>\n<h2> URL: </h2>\n<p> <a href=\"http://www.iea.org\"> www.iea.org </a> </p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/\"> unstats.un.org/unsd/energystats </a> </p>\n<h2> Ссылки: </h2>\n<p> Энергетические балансы и статистика МЭА </p>\n<p> <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\www.iea.org\\statistics\\\"> http://www.iea.org/statistics/ </a> </p>\n<p> База данных статистики энергетики ООН <a id=\"OLE_LINK1\"> </a> <a id=\"OLE_LINK2\"> </a> </p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/data/\"> unstats.un.org/unsd/energystats/data </a> (описание) и <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\data.un.org\\Explorer.aspx%3fd=EDATA\"> data.un.org/Explorer.aspx?d=EDATA </a> (данные) </p>\n<p> Веб-страница МЭА по ЦУР 7: <a href=\"http://www.iea.org/sdg\"> http://www.iea.org/sdg </a> </p>\n<p> Международные рекомендации по энергетической статистике (МРЭС) <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\"> unstats.un.org/unsd/energystats/methodology/ires </a> </p>\n<p> Международное энергетическое агентство (МЭА), Международное агентство по возобновляемым источникам энергии (IRENA), Статистический отдел ООН (СОООН), Всемирный банк, Всемирная организация здравоохранения (ВОЗ). 2019 год. &#x201C;Отслеживание ЦУР 7: Отчет о прогрессе в области энергетики за 2019 год&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\"> trackingsdg7.esmap.org/ </a> </p>\n<p> Международное энергетическое агентство (МЭА), Международное агентство по возобновляемым источникам энергии (IRENA), Статистический отдел ООН (СОООН), Всемирный банк, Всемирная организация здравоохранения (ВОЗ). 2018. &#x201C;Отслеживание ЦУР 7: Отчет о прогрессе в области энергетики за 2018 год&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\"> trackingsdg7.esmap.org/ </a> </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2017 год. &#x201C;Глобальная структура отслеживания 2017 год &#x2014; Прогресс на пути к устойчивой энергетике&#x201D;. Всемирный банк, Вашингтон, округ Колумбия. Лицензия: Creative Commons Attribution CC BY 3.0 IGO </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2015 год. &#x201C;Глобальная структура отслеживания 2015 год. &#x2014; Прогресс на пути к устойчивой энергетике&#x201D;. Всемирный банк, Вашингтон, округ Колумбия. Doi: 10.1596 / 978-1-4648 -0690-2 Лицензия: Creative Commons Attribution CC BY 3.0 IGO </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2013. &#x201C;Глобальная структура отслеживания 2013 год&#x201D;.</p>\n<p> База данных IRENA по возобновляемым источникам энергии <a href=\"http://resourceirena.irena.org/gateway/dashboard\"> http://resourceirena.irena.org/gateway/dashboard </a>.</p>",
            "old": "<h1> Ссылки </h1>\n<h2> URL: </h2>\n<p> <a href=\"http://www.iea.org\"> www.iea.org </a> </p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/\"> unstats.un.org/unsd/energystats </a> </p>\n<h2> Ссылки: </h2>\n<p> Энергетические балансы и статистика МЭА </p>\n<p> <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\www.iea.org\\statistics\\\"> http://www.iea.org/statistics/ </a> </p>\n<p> База данных статистики энергетики ООН <a id=\"OLE_LINK1\"> </a> <a id=\"OLE_LINK2\"> </a> </p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/data/\"> unstats.un.org/unsd/energystats/data </a> (описание) и <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\data.un.org\\Explorer.aspx%3fd=EDATA\"> data.un.org/Explorer.aspx?d=EDATA </a> (данные) </p>\n<p> Веб-страница МЭА по ЦУР 7: <a href=\"http://www.iea.org/sdg\"> http://www.iea.org/sdg </a> </p>\n<p> Международные рекомендации по энергетической статистике (МРЭС) <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\"> unstats.un.org/unsd/energystats/methodology/ires </a> </p>\n<p> Международное энергетическое агентство (МЭА), Международное агентство по возобновляемым источникам энергии (IRENA), Статистический отдел ООН (СОООН), Всемирный банк, Всемирная организация здравоохранения (ВОЗ). 2019 год. &#x201C;Отслеживание ЦУР 7: Отчет о прогрессе в области энергетики за 2019 год&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\"> trackingsdg7.esmap.org/ </a> </p>\n<p> Международное энергетическое агентство (МЭА), Международное агентство по возобновляемым источникам энергии (IRENA), Статистический отдел ООН (СОООН), Всемирный банк, Всемирная организация здравоохранения (ВОЗ). 2018. &#x201C;Отслеживание ЦУР 7: Отчет о прогрессе в области энергетики за 2018 год&#x201D;. <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\trackingsdg7.esmap.org\\\"> trackingsdg7.esmap.org/ </a> </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2017 год. &#x201C;Глобальная структура отслеживания 2017 год &#x2014; Прогресс на пути к устойчивой энергетике&#x201D;. Всемирный банк, Вашингтон, округ Колумбия. Лицензия: Creative Commons Attribution CC BY 3.0 IGO </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2015 год. &#x201C;Глобальная структура отслеживания 2015 год. &#x2014; Прогресс на пути к устойчивой энергетике&#x201D;. Всемирный банк, Вашингтон, округ Колумбия. Doi: 10.1596 / 978-1-4648 -0690-2 Лицензия: Creative Commons Attribution CC BY 3.0 IGO </p>\n<p> Международное энергетическое агентство (МЭА) и Всемирный банк. 2013. &#x201C;Глобальная структура отслеживания 2013 год&#x201D;.</p>\n<p> База данных IRENA по возобновляемым источникам энергии <a href=\"http://resourceirena.irena.org/gateway/dashboard\"> http://resourceirena.irena.org/gateway/dashboard </a>.</p>",
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                "source": "<p>The country specific commodity balances underlying the IEA energy data are based on national energy data of heterogeneous nature converted and adapted to fit the IEA format and methodology. Considerable effort has been made to ensure that the data adhere to the IEA definitions based on the guidelines provided by IRES. Nevertheless, energy statistics at the national level are often collected using criteria and definitions which differ, sometimes considerably, from those of international organisations. This is especially true for non-OECD countries, which are submitting data to the IEA on a voluntary basis. The IEA has identified most of these differences and, where possible, adjusted the data to meet international definitions. For details on recognized country specific anomalies and the corresponding adjustments, please refer to country specific notes included in the IEA World energy balances documentation file available at: <a href=\"http://wds.iea.org/wds/pdf/WORLDBAL_Documentation.pdf\">wds.iea.org/wds/pdf/WORLDBAL_Documentation.pdf</a> </p>\n<p>Likewise, UNSD also needs to adjust certain data to fit the international methodology set by IRES, thus ensuring data comparability across countries. Data from all countries are submitted voluntarily to UNSD, sometimes via non-standard formats or through sharing of national publications. The identification of such deviations from the standard is an ongoing task, and UNSD has started publishing some of this information in a supplement to the Energy Statistics Database named &#x201C;Notes on sources&#x201D;, available at: unstats.un.org/unsd/energystats/pubs/yearbook/, with the goal of increasing transparency and providing more and more information with time.</p>",
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            "action": 59,
            "target": "<h1> Методология </h1>\n<h2> Метод расчета: </h2>\n<p> Этот показатель основан на разработке комплексной энергетической статистики по спросу и предложению для всех источников энергии - статистических данных, используемых для составления энергетического баланса. Согласованные на международном уровне методологии для статистики энергетики описаны в «Международных рекомендациях по энергетической статистике\" (МРЭС), принятых Статистической комиссией ООН, доступных по адресу: <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\unstats.un.org\\unsd\\energystats\\methodology\\ires\"> unstats.un.org/unsd/energystats/methodology/ires </a>. </p>\n<p> После разработки национального энергетического баланса этот показатель можно рассчитать путем деления конечного потребления энергии из всех возобновляемых источников на общее конечное потребление энергии. Потребление возобновляемой энергии получается из трех таблиц мировой энергетической статистики и балансов МЭА: общее конечное потребление, выработка электроэнергии и выработка тепла. Все объемы, указанные в таблице общего конечного потребления, считаются отчетными. Поскольку объемы электроэнергии и тепла в таблице конечного потребления не разбиты по технологиям, вместо этого используются таблицы объемов производства электроэнергии и тепла для разбивки конечного потребления электроэнергии и тепла по технологиям. Распределение по технологиям осуществляется путем получения доли технологий в таблицах выработки электроэнергии и тепла и умножения этой доли на конечное энергопотребление электроэнергии и тепла, соответственно. Например, если в таблице общего конечного потребления указано 150 ТДж для энергии биогаза, в то время как общее конечное потребление электроэнергии составляет 400 ТДж, а тепла - 100 ТДж, а доля биогаза в общем объеме выработки электроэнергии составляет 10 процентов и 5 процентов по теплу, то итоговое отчетное значение количества потребляемого биогаза составит 195 ТДж (150 ТДж + 400 ТДж * 10% + 100 ТДж * 5%). Отчет по структуре глобального отслеживания (МЭА и Всемирный банк, 2013 год) содержит более подробную информацию о предлагаемой методологии определения и оценки возобновляемой энергии (глава 4, раздел 1, стр. 201-202). СОООН использует ту же методологию для расчета показателей, хотя информация может поступать из разных таблиц. </p>",
            "old": "<h1> Методология </h1>\n<h2> Метод расчета: </h2>\n<p> Этот показатель основан на разработке комплексной энергетической статистики по спросу и предложению для всех источников энергии - статистических данных, используемых для составления энергетического баланса. Согласованные на международном уровне методологии для статистики энергетики описаны в «Международных рекомендациях по энергетической статистике\" (МРЭС), принятых Статистической комиссией ООН, доступных по адресу: <a href=\"file:///C:\\Users\\leonardo.souza\\AppData\\Local\\Microsoft\\Windows\\INetCache\\Content.Outlook\\6GFD9MJP\\unstats.un.org\\unsd\\energystats\\methodology\\ires\"> unstats.un.org/unsd/energystats/methodology/ires </a>. </p>\n<p> После разработки национального энергетического баланса этот показатель можно рассчитать путем деления конечного потребления энергии из всех возобновляемых источников на общее конечное потребление энергии. Потребление возобновляемой энергии получается из трех таблиц мировой энергетической статистики и балансов МЭА: общее конечное потребление, выработка электроэнергии и выработка тепла. Все объемы, указанные в таблице общего конечного потребления, считаются отчетными. Поскольку объемы электроэнергии и тепла в таблице конечного потребления не разбиты по технологиям, вместо этого используются таблицы объемов производства электроэнергии и тепла для разбивки конечного потребления электроэнергии и тепла по технологиям. Распределение по технологиям осуществляется путем получения доли технологий в таблицах выработки электроэнергии и тепла и умножения этой доли на конечное энергопотребление электроэнергии и тепла, соответственно. Например, если в таблице общего конечного потребления указано 150 ТДж для энергии биогаза, в то время как общее конечное потребление электроэнергии составляет 400 ТДж, а тепла - 100 ТДж, а доля биогаза в общем объеме выработки электроэнергии составляет 10 процентов и 5 процентов по теплу, то итоговое отчетное значение количества потребляемого биогаза составит 195 ТДж (150 ТДж + 400 ТДж * 10% + 100 ТДж * 5%). Отчет по структуре глобального отслеживания (МЭА и Всемирный банк, 2013 год) содержит более подробную информацию о предлагаемой методологии определения и оценки возобновляемой энергии (глава 4, раздел 1, стр. 201-202). СОООН использует ту же методологию для расчета показателей, хотя информация может поступать из разных таблиц. </p>",
            "details": {
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                "source": "<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce the energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once an energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived as the sum of direct final consumption of renewable sources plus the components of electricity and heat consumption estimated to be derived from renewable sources based on generation shares. The indicator is calculated based on the following formula:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <msub>\n      <mrow>\n        <mi>T</mi>\n        <mi>F</mi>\n        <mi>E</mi>\n        <mi>C</mi>\n      </mrow>\n      <mrow>\n        <mi>R</mi>\n        <mi>E</mi>\n        <mi>S</mi>\n      </mrow>\n    </msub>\n    <mo>=</mo>\n    <mi>&amp;nbsp;</mi>\n    <mfrac>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>R</mi>\n            <mi>E</mi>\n            <mi>S</mi>\n          </mrow>\n        </msub>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>E</mi>\n                <mi>L</mi>\n                <mi>E</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>H</mi>\n                <mi>E</mi>\n                <mi>A</mi>\n                <mi>T</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n      </mrow>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>T</mi>\n            <mi>O</mi>\n            <mi>T</mi>\n            <mi>A</mi>\n            <mi>L</mi>\n          </mrow>\n        </msub>\n      </mrow>\n    </mfrac>\n  </math></p>\n<p>Where:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>T</mi>\n    <mi>F</mi>\n    <mi>E</mi>\n    <mi>C</mi>\n  </math>: Total final energy consumption is the sum of final energy consumption in the transport, industry and other sectors (also equivalent to the total final consumption minus the non-energy use).</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>E</mi>\n    <mi>L</mi>\n    <mi>E</mi>\n  </math>: Gross electricity production </p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>H</mi>\n    <mi>E</mi>\n    <mi>A</mi>\n    <mi>T</mi>\n  </math>: Gross heat production</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>R</mi>\n    <mi>E</mi>\n    <mi>S</mi>\n  </math>: Renewable energy sources which include hydropower, wind, solar photovoltaic, solar thermal, geothermal, tide/wave/ocean, renewable municipal waste, solid biofuels, liquid biofuels, and biogases.</p>\n<p>The denominator is the total final energy consumption of all energy products, while the numerator includes the direct consumption of renewable energy sources plus the final consumption of gross electricity and heat that is estimated to have come from renewable sources. This estimation allocates the amount of electricity and heat consumption to renewable sources based on the share of renewables in gross production in order to perform the calculation at the final energy level. For instance, if total final consumption is 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas is 10 percent in electricity output and 5 percent in heat output, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%).</p>\n<p>The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). </p>",
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            "action": 30,
            "target": "<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce the energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once an energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived as the sum of direct final consumption of renewable sources plus the components of electricity and heat consumption estimated to be derived from renewable sources based on generation shares. The indicator is calculated based on the following formula:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <msub>\n      <mrow>\n        <mi>T</mi>\n        <mi>F</mi>\n        <mi>E</mi>\n        <mi>C</mi>\n      </mrow>\n      <mrow>\n        <mi>R</mi>\n        <mi>E</mi>\n        <mi>S</mi>\n      </mrow>\n    </msub>\n    <mo>=</mo>\n    <mi>&amp;nbsp;</mi>\n    <mfrac>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>R</mi>\n            <mi>E</mi>\n            <mi>S</mi>\n          </mrow>\n        </msub>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>E</mi>\n                <mi>L</mi>\n                <mi>E</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>H</mi>\n                <mi>E</mi>\n                <mi>A</mi>\n                <mi>T</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n      </mrow>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>T</mi>\n            <mi>O</mi>\n            <mi>T</mi>\n            <mi>A</mi>\n            <mi>L</mi>\n          </mrow>\n        </msub>\n      </mrow>\n    </mfrac>\n  </math></p>\n<p>Where:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>T</mi>\n    <mi>F</mi>\n    <mi>E</mi>\n    <mi>C</mi>\n  </math>: Total final energy consumption is the sum of final energy consumption in the transport, industry and other sectors (also equivalent to the total final consumption minus the non-energy use).</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>E</mi>\n    <mi>L</mi>\n    <mi>E</mi>\n  </math>: Gross electricity production </p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>H</mi>\n    <mi>E</mi>\n    <mi>A</mi>\n    <mi>T</mi>\n  </math>: Gross heat production</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>R</mi>\n    <mi>E</mi>\n    <mi>S</mi>\n  </math>: Renewable energy sources which include hydropower, wind, solar photovoltaic, solar thermal, geothermal, tide/wave/ocean, renewable municipal waste, solid biofuels, liquid biofuels, and biogases.</p>\n<p>The denominator is the total final energy consumption of all energy products, while the numerator includes the direct consumption of renewable energy sources plus the final consumption of gross electricity and heat that is estimated to have come from renewable sources. This estimation allocates the amount of electricity and heat consumption to renewable sources based on the share of renewables in gross production in order to perform the calculation at the final energy level. For instance, if total final consumption is 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas is 10 percent in electricity output and 5 percent in heat output, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%).</p>\n<p>The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). </p>",
            "old": "<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce the energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once an energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived as the sum of direct final consumption of renewable sources plus the components of electricity and heat consumption estimated to be derived from renewable sources based on generation shares. For instance, if total final consumption is 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas is 10 percent in electricity output and 5 percent in heat output, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%). The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). </p>",
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                "source": "<p>IEA as one of the custodian agencies responsible for monitoring progress towards the SDG 7.2 target, leverage on their national data efforts and add value by promoting coherent standards, definitions and methodologies for both raw data and the derived indicators with the ultimate goal of producing internationally comparable datasets. </p>\n<p>The UNSD mission in the area of energy statistics is to strengthen national statistical systems in order to assist countries to produce high quality energy statistics and balances. The mission is realized through four workstreams: Data collection (since 1950); Development of methodological guidelines and standards in energy statistics (e.g., IRES, ESCM); Capacity building (to disseminate such methodology and to assist countries to strengthen their energy statistical systems); and International cooperation and coordination. UNSD was selected as one of the custodians of indicator 7.2.1 because it collects for all countries the underlying data necessary to calculate the indicator. </p>",
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            "action": 59,
            "target": "<h1> Понятия и определения </h1>\n<h2> Определение: </h2>\n<p> Доля возобновляемых источников энергии в общем объеме конечного энергопотребления - это процент конечного потребления энергии, полученной из возобновляемых ресурсов. </p>\n<h2> Понятия: </h2>\n<p> Потребление возобновляемой энергии включает потребление энергии, полученной из: энергии падающей воды, твердого биотоплива, энергии ветра, солнца, жидкого биотоплива, биогаза, геотермальной, морской энергии и отходов. Общее конечное потребление энергии рассчитывается на основе национальных балансов и статистических данных как общее конечное потребление за вычетом неэнергетического использования. </p>\n<p> Комментарии относительно конкретных возобновляемых источников энергии: </p>\n<ul>\n  <li> Потребление солнечной энергии включает фотоэлектрическую солнечную энергию и гелиотермальную энергию. </li>\n  <li> Потребление энергии жидкого биотоплива включает биогазолин, биодизельное топливо и другие виды жидкого биотоплива. </li>\n  <li> Потребление твердого биотоплива включает топливную древесину, отходы животноводства, растительные отходы, черный щелок, жмых и древесный уголь. </li>\n  <li> Энергия отходов включают энергию из возобновляемых бытовых отходов. </li>\n</ul>",
            "old": "<h1> Понятия и определения </h1>\n<h2> Определение: </h2>\n<p> Доля возобновляемых источников энергии в общем объеме конечного энергопотребления - это процент конечного потребления энергии, полученной из возобновляемых ресурсов. </p>\n<h2> Понятия: </h2>\n<p> Потребление возобновляемой энергии включает потребление энергии, полученной из: энергии падающей воды, твердого биотоплива, энергии ветра, солнца, жидкого биотоплива, биогаза, геотермальной, морской энергии и отходов. Общее конечное потребление энергии рассчитывается на основе национальных балансов и статистических данных как общее конечное потребление за вычетом неэнергетического использования. </p>\n<p> Комментарии относительно конкретных возобновляемых источников энергии: </p>\n<ul>\n  <li> Потребление солнечной энергии включает фотоэлектрическую солнечную энергию и гелиотермальную энергию. </li>\n  <li> Потребление энергии жидкого биотоплива включает биогазолин, биодизельное топливо и другие виды жидкого биотоплива. </li>\n  <li> Потребление твердого биотоплива включает топливную древесину, отходы животноводства, растительные отходы, черный щелок, жмых и древесный уголь. </li>\n  <li> Энергия отходов включают энергию из возобновляемых бытовых отходов. </li>\n</ul>",
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            "target": "<p><strong>Definition:</strong></p>\n<p>The renewable energy share in total final consumption is the percentage of final consumption of energy that is derived from renewable resources.</p>\n<p><strong>Concepts:</strong></p>\n<p>Renewable energy consumption includes consumption of energy derived from: hydro, wind, solar, solid biofuels, liquid biofuels, biogas, geothermal, marine and renewable waste. Total final energy consumption is calculated from balances as total final consumption minus non-energy use. </p>\n<p>Comments regarding specific renewable energy sources: </p>\n<ul>\n  <li>Solar energy includes solar PV and solar thermal. </li>\n  <li>Liquid biofuels include biogasoline, biodiesels and other liquid biofuels. </li>\n  <li>Solid biofuels include fuelwood, animal waste, vegetable waste, black liquor, bagasse and charcoal. </li>\n  <li>Renewable waste energy covers energy from renewable municipal waste.</li>\n</ul>",
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                "source": "<p>Indicator 9.4.1: CO<sub>2</sub> emission per unit of value added</p>\n<p>Indicator 13.2.2: Total greenhouse gas emissions per year</p>",
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            "target": "<p> Последнее обновление: 7 февраля 2020 года </p>",
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                "source": "<p><strong>URL: </strong></p>\n<p><a href=\"file:///\\\\jupiter\\EDC\\CO2\\Collaboration\\SDG\\SDG7\\GTF%202021\\Data\\Meta%20data\\iea.org\">iea.org</a>; <a href=\"https://unstats.un.org/unsd/energystats/\">unstats.un.org/unsd/energystats</a></p>\n<p><strong>References: </strong></p>\n<p>IEA Energy Balances and Statistics </p>\n<p><a href=\"http://www.iea.org/statistics/\">http://www.iea.org/statistics/ </a></p>\n<p>UN Energy Statistics Database <a id=\"OLE_LINK2\"></a><a id=\"OLE_LINK1\"></a></p>\n<p> <a href=\"https://unstats.un.org/unsd/energystats/data/\">unstats.un.org/unsd/energystats/data</a> (description) and <a href=\"http://data.un.org/Explorer.aspx?d=EDATA\">data.un.org/Explorer.aspx?d=EDATA</a> (data). Downloadable though API (https://data.un.org/ws). Browse contents on https://data.un.org/SdmxBrowser/start.</p>\n<p>IEA SDG 7 webpage: <a href=\"file:///C:\\Users\\leonardo.souza\\Documents\\Leo\\Energy\\Sustainable%20Development\\SDG%20Indicators\\IEA%20coordination\\iea.org\\reports\\sdg7-data-and-projections\">iea.org/reports/sdg7-data-and-projections</a></p>\n<p>United Nations. 2018. &#x201C;International Recommendations for Energy Statistics&#x201D;. <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a></p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2019. &#x201C;Tracking SDG7: The Energy Progress Report 2019&#x201D;. <a href=\"https://trackingsdg7.esmap.org/\">trackingsdg7.esmap.org/</a> </p>\n<p>International Energy Agency (IEA), International Renewable Energy Agency (IRENA), United Nations Statistics Division (UNSD), the World Bank, World Health Organization (WHO). 2018. &#x201C;Tracking SDG7: The Energy Progress Report 2018&#x201D;. <a href=\"https://trackingsdg7.esmap.org/\">trackingsdg7.esmap.org/</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2017. &#x201C;Global Tracking Framework 2017&#x2014;Progress toward Sustainable Energy&#x201D;. World Bank, Washington, DC. License: Creative Commons Attribution CC BY 3.0 IGO. <a href=\"https://www.seforall.org/sites/default/files/eegp17-01_gtf_full_report_final_for_web_posting_0402.pdf\">seforall.org/sites/default/files/eegp17-01_gtf_full_report_final_for_web_posting_0402.pdf</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2015. &#x201C;Global Tracking Framework 2015&#x2014;Progress Toward Sustainable Energy&#x201D;, World Bank, Washington, DC. Doi: 10.1596/978-1-4648 -0690-2 License: Creative Commons Attribution CC BY 3.0 IGO. <a href=\"http://seforall.org/sites/default/files/GTF-2105-Full-Report.pdf\">seforall.org/sites/default/files/GTF-2105-Full-Report.pdf</a></p>\n<p>International Energy Agency (IEA) and the World Bank. 2013. &#x201C;Global Tracking Framework 2013&#x201D;. <a href=\"https://webstore.iea.org/global-tracking-framework-2013\">webstore.iea.org/global-tracking-framework-2013</a></p>\n<p>IRENA Renewable Energy Database </p>\n<p><a href=\"https://www.irena.org/statistics\">https://www.irena.org/statistics</a>.</p>\n<p>United Nations. 2016. &#x201C;Energy Statistics Compilers Manual&#x201D; </p>\n<p><a href=\"file:///\\\\jupiter\\EDC\\CO2\\Collaboration\\SDG\\SDG7\\GTF%202021\\Data\\Meta%20data\\unstats.un.org\\unsd\\energystats\\methodology\\escm\\\">unstats.un.org/unsd/energystats/methodology/escm/</a></p>",
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            "component": "https://hosted.weblate.org/api/components/sdg-metadata/7-2-1/?format=api",
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                "source": "<p>The country specific commodity balances underlying the IEA energy data are based on national energy data of heterogeneous nature converted and adapted to fit the IEA format and methodology. Considerable effort has been made to ensure that the data adhere to the IEA definitions based on the guidelines provided by IRES. Nevertheless, energy statistics at the national level are often collected using criteria and definitions which differ, sometimes considerably, from those of international organisations. This is especially true for non-OECD countries, which are submitting data to the IEA on a voluntary basis. The IEA has identified most of these differences and, where possible, adjusted the data to meet international definitions. For details on recognized country specific anomalies and the corresponding adjustments, please refer to country specific notes included in the IEA World energy balances documentation file available at: <a href=\"http://wds.iea.org/wds/pdf/WORLDBAL_Documentation.pdf\">wds.iea.org/wds/pdf/WORLDBAL_Documentation.pdf</a> </p>\n<p>Likewise, UNSD also needs to adjust certain data to fit the international methodology set by IRES, thus ensuring data comparability across countries. Data from all countries are submitted voluntarily to UNSD, sometimes via non-standard formats or through sharing of national publications. The identification of such deviations from the standard is an ongoing task, and UNSD has started publishing some of this information in a supplement to the Energy Statistics Database named &#x201C;Notes on sources&#x201D;, available at: unstats.un.org/unsd/energystats/pubs/yearbook/, with the goal of increasing transparency and providing more and more information with time.</p>",
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        {
            "unit": "https://hosted.weblate.org/api/units/38498180/?format=api",
            "component": "https://hosted.weblate.org/api/components/sdg-metadata/7-2-1/?format=api",
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            "user": null,
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            "timestamp": "2022-04-09T01:47:20.602706+02:00",
            "action": 59,
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                "source": "<p>This indicator is based on the development of comprehensive energy statistics across supply and demand for all energy sources &#x2013; statistics used to produce the energy balance. Internationally agreed methodologies for energy statistics are described in the &#x201C;International Recommendations for Energy Statistics&#x201D; (IRES), adopted by the UN Statistical Commission, available at: <a href=\"https://unstats.un.org/unsd/energystats/methodology/ires\">unstats.un.org/unsd/energystats/methodology/ires</a>.</p>\n<p>Once an energy balance is developed, the indicator can be calculated by dividing final energy consumption from all renewable sources by total final energy consumption. Renewable energy consumption is derived as the sum of direct final consumption of renewable sources plus the components of electricity and heat consumption estimated to be derived from renewable sources based on generation shares. The indicator is calculated based on the following formula:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <msub>\n      <mrow>\n        <mi>T</mi>\n        <mi>F</mi>\n        <mi>E</mi>\n        <mi>C</mi>\n      </mrow>\n      <mrow>\n        <mi>R</mi>\n        <mi>E</mi>\n        <mi>S</mi>\n      </mrow>\n    </msub>\n    <mo>=</mo>\n    <mi>&amp;nbsp;</mi>\n    <mfrac>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>R</mi>\n            <mi>E</mi>\n            <mi>S</mi>\n          </mrow>\n        </msub>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>E</mi>\n                <mi>L</mi>\n                <mi>E</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>E</mi>\n                    <mi>L</mi>\n                    <mi>E</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n        <mo>+</mo>\n        <mfenced separators=\"|\">\n          <mrow>\n            <msub>\n              <mrow>\n                <mi>T</mi>\n                <mi>F</mi>\n                <mi>E</mi>\n                <mi>C</mi>\n              </mrow>\n              <mrow>\n                <mi>H</mi>\n                <mi>E</mi>\n                <mi>A</mi>\n                <mi>T</mi>\n              </mrow>\n            </msub>\n            <mo>&#xD7;</mo>\n            <mfrac>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>R</mi>\n                    <mi>E</mi>\n                    <mi>S</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n              <mrow>\n                <msub>\n                  <mrow>\n                    <mi>H</mi>\n                    <mi>E</mi>\n                    <mi>A</mi>\n                    <mi>T</mi>\n                  </mrow>\n                  <mrow>\n                    <mi>T</mi>\n                    <mi>O</mi>\n                    <mi>T</mi>\n                    <mi>A</mi>\n                    <mi>L</mi>\n                  </mrow>\n                </msub>\n              </mrow>\n            </mfrac>\n          </mrow>\n        </mfenced>\n      </mrow>\n      <mrow>\n        <msub>\n          <mrow>\n            <mi>T</mi>\n            <mi>F</mi>\n            <mi>E</mi>\n            <mi>C</mi>\n          </mrow>\n          <mrow>\n            <mi>T</mi>\n            <mi>O</mi>\n            <mi>T</mi>\n            <mi>A</mi>\n            <mi>L</mi>\n          </mrow>\n        </msub>\n      </mrow>\n    </mfrac>\n  </math></p>\n<p>Where:</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>T</mi>\n    <mi>F</mi>\n    <mi>E</mi>\n    <mi>C</mi>\n  </math>: Total final energy consumption is the sum of final energy consumption in the transport, industry and other sectors (also equivalent to the total final consumption minus the non-energy use).</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>E</mi>\n    <mi>L</mi>\n    <mi>E</mi>\n  </math>: Gross electricity production </p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>H</mi>\n    <mi>E</mi>\n    <mi>A</mi>\n    <mi>T</mi>\n  </math>: Gross heat production</p>\n<p><math xmlns=\"http://www.w3.org/1998/Math/MathML\">\n    <mi>R</mi>\n    <mi>E</mi>\n    <mi>S</mi>\n  </math>: Renewable energy sources which include hydropower, wind, solar photovoltaic, solar thermal, geothermal, tide/wave/ocean, renewable municipal waste, solid biofuels, liquid biofuels, and biogases.</p>\n<p>The denominator is the total final energy consumption of all energy products, while the numerator includes the direct consumption of renewable energy sources plus the final consumption of gross electricity and heat that is estimated to have come from renewable sources. This estimation allocates the amount of electricity and heat consumption to renewable sources based on the share of renewables in gross production in order to perform the calculation at the final energy level. For instance, if total final consumption is 150 TJ for biogas energy, while total final consumption of electricity is 400 TJ and heat 100 TJ, and the share of biogas is 10 percent in electricity output and 5 percent in heat output, the total reported number for biogas consumption will be 195 TJ (150 TJ+400TJ*10%+100TJ*5%).</p>\n<p>The Global Tracking Framework Report (IEA and World Bank, 2013) provides more details on the suggested methodology for defining and measuring renewable energy (Chapter 4, Section 1, page 201-202). </p>",
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            "id": 23093760,
            "action_name": "String updated in the repository",
            "url": "https://hosted.weblate.org/api/changes/23093760/?format=api"
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        {
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            "component": "https://hosted.weblate.org/api/components/sdg-metadata/7-2-1/?format=api",
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                "source": "<p>IEA as one of the custodian agencies responsible for monitoring progress towards the SDG 7.2 target, leverage on their national data efforts and add value by promoting coherent standards, definitions and methodologies for both raw data and the derived indicators with the ultimate goal of producing internationally comparable datasets. </p>\n<p>The UNSD mission in the area of energy statistics is to strengthen national statistical systems in order to assist countries to produce high quality energy statistics and balances. The mission is realized through four workstreams: Data collection (since 1950); Development of methodological guidelines and standards in energy statistics (e.g., IRES, ESCM); Capacity building (to disseminate such methodology and to assist countries to strengthen their energy statistical systems); and International cooperation and coordination. UNSD was selected as one of the custodians of indicator 7.2.1 because it collects for all countries the underlying data necessary to calculate the indicator. </p>",
                "old_state": 0
            },
            "id": 23093759,
            "action_name": "String updated in the repository",
            "url": "https://hosted.weblate.org/api/changes/23093759/?format=api"
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            "timestamp": "2022-04-09T01:47:20.602499+02:00",
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                "source": "<p>The IEA collects energy data at the national level according to harmonised international definitions and questionnaires, as described in the UN International Recommendations for Energy Statistics (<a href=\"https://unstats.un.org/unsd/energystats/methodology/ires/\">unstats.un.org/unsd/energystats/methodology/ires/</a>).</p>\n<p>UNSD also collects energy statistics from countries according to the same harmonised methodology.</p>",
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            "id": 23093758,
            "action_name": "String updated in the repository",
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