钥匙(锁)
碳中和
中国
中立
碳纤维
温室气体
计算机科学
环境科学
政治学
计算机安全
地理
生态学
复合数
生物
考古
法学
算法
作者
Ming Ren,Chen Huang,Yazhen Wu,Андре Депперманн,Stefan Frank,Peter Havlík,Yuyao Zhu,Chen Fang,Xiaotian Ma,Yong Liu,Hao Zhao,Jinfeng Chang,Lin Ma,Zhaohai Bai,Shasha Xu,Hancheng Dai
出处
期刊:Nature food
[Nature Portfolio]
日期:2023-07-03
卷期号:4 (7): 552-564
被引量:39
标识
DOI:10.1038/s43016-023-00790-1
摘要
Bioenergy with carbon capture and storage, among other negative-emission technologies, is required for China to achieve carbon neutrality—yet it may hinder land-based Sustainable Development Goals. Using modelling and scenario analysis, we investigate how to mitigate the potential adverse impacts on the food system of ambitious bioenergy deployment in China and its trading partners. We find that producing bioenergy domestically while sticking to the food self-sufficiency ratio redlines would lower China's daily per capita calorie intake by 8% and increase domestic food prices by 23% by 2060. Removing China's food self-sufficiency ratio restrictions could halve the domestic food dilemma but risks transferring environmental burdens to other countries, whereas halving food loss and waste, shifting to healthier diets and narrowing crop yield gaps could effectively mitigate these external effects. Our results show that simultaneously achieving carbon neutrality, food security and global sustainability requires a careful combination of these measures. Negative-emission technologies might pose trade-offs to food security and other land-based sustainability targets. A scenario analysis reveals the potential impacts of bioenergy deployment in China on global and domestic sustainable development, and how free trade and food systems efficiency measures could mitigate the potential adverse sustainability impacts.
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