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Maize, wheat and rice production potential changes in China under the background of climate change

机译:在气候变化背景下,中国玉米,小麦和水稻生产潜在变化

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摘要

China, as one of the largest food consumers in the world, is currently experiencing obvious impacts of climate change. Exploring the impact of climate change on the production potential of maize, wheat, and rice in China is of great significance in adapting to climate change and safeguarding global food security. In this study the Global Agro-Ecological Zone (GAEZ) model and the Extreme-Point Symmetric Mode Decomposition (ESMD) model were used to explore the trends in production potential of China's three major crops in the context of climate change from 1960 to 2010. There was a quasi-3-year and quasi-5-year cycle in changes in maize, wheat, and rice production potential due to climate change in China. Climate change increased maize and rice production potential and reduced wheat production potential. The increase in minimum temperature was the main reason for the increased maize and rice production potential. Reduced wheat production potential was mainly caused by increased maximum temperature. Decreases in precipitation had a substantial negative impact on the production potential of all three crops. These results suggest that priority should be given to adjusting the structure of agricultural cultivation and appropriately expanding the planting area of maize and rice to adapt to climate change. Accelerating the construction of agricultural infrastructure to reduce the negative impact of declining precipitation and increasing daytime temperature on agriculture is also a high priority in order to safeguard food security.
机译:中国作为世界上最大的食品消费者之一,目前正在经历明显对气候变化影响的影响。探索气候变化对中国玉米,小麦和水稻生产潜力的影响在适应气候变化和保护全球粮食安全方面具有重要意义。在这项研究中,全球农业生态区(GAEZ)模型和极端对称模式分解(ESMD)模型用于探讨中国三大作物在1960年至2010年的气候变化背景下生产潜力的趋势。由于中国气候变化,玉米,小麦和水稻生产潜力的变化存在准3年和准5年周期。气候变化提高玉米和水稻生产潜力和小麦生产潜力。最小温度的增加是玉米和水稻生产潜力增加的主要原因。降低小麦产量潜力主要是由最高温度提高引起的。降水量降低对所有三种作物的生产潜力具有大量负面影响。这些结果表明,应优先考虑调整农业种植结构,并适当地扩展玉米和稻米种植面积,以适应气候变化。加速农业基础设施的建设,以降低降水下降的负面影响,增加农业日间温度的影响也是一种高度优先,以保护粮食安全。

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