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食物系统产生的温室气体排放量占全球人为温室气体排放总量的三分之一。

Food systems are responsible for a third of global anthropogenic GHG emissions.

作者信息

Crippa M, Solazzo E, Guizzardi D, Monforti-Ferrario F, Tubiello F N, Leip A

机构信息

European Commission, Joint Research Centre (JRC), Ispra, Italy.

Statistics Division, Food and Agriculture Organization of the United Nations, Rome, Italy.

出版信息

Nat Food. 2021 Mar;2(3):198-209. doi: 10.1038/s43016-021-00225-9. Epub 2021 Mar 8.

Abstract

We have developed a new global food emissions database (EDGAR-FOOD) estimating greenhouse gas (GHG; CO, CH, NO, fluorinated gases) emissions for the years 1990-2015, building on the Emissions Database of Global Atmospheric Research (EDGAR), complemented with land use/land-use change emissions from the FAOSTAT emissions database. EDGAR-FOOD provides a complete and consistent database in time and space of GHG emissions from the global food system, from production to consumption, including processing, transport and packaging. It responds to the lack of detailed data for many countries by providing sectoral contributions to food-system emissions that are essential for the design of effective mitigation actions. In 2015, food-system emissions amounted to 18 Gt CO equivalent per year globally, representing 34% of total GHG emissions. The largest contribution came from agriculture and land use/land-use change activities (71%), with the remaining were from supply chain activities: retail, transport, consumption, fuel production, waste management, industrial processes and packaging. Temporal trends and regional contributions of GHG emissions from the food system are also discussed.

摘要

我们开发了一个全新的全球食物排放数据库(EDGAR - FOOD),用于估算1990年至2015年期间的温室气体(GHG;一氧化碳、甲烷、氧化亚氮、含氟气体)排放量。该数据库以全球大气研究排放数据库(EDGAR)为基础,并补充了粮农组织统计数据库中土地利用/土地利用变化的排放量。EDGAR - FOOD提供了一个关于全球食物系统从生产到消费(包括加工、运输和包装)全过程温室气体排放的完整且时空一致的数据库。它通过提供对食物系统排放的部门贡献数据,解决了许多国家缺乏详细数据的问题,这些数据对于设计有效的减排行动至关重要。2015年,全球食物系统的排放量总计达每年180亿吨二氧化碳当量,占温室气体排放总量的34%。最大的贡献来自农业和土地利用/土地利用变化活动(71%),其余来自供应链活动:零售、运输、消费、燃料生产、废物管理、工业加工和包装。本文还讨论了食物系统温室气体排放的时间趋势和区域贡献。

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