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中泰地区土地-水-温室气体-粮食关系的表现及影响水稻种植的物理社会经济政策因素。

Land-Water-GHG-Food Nexus performance and physical-socio-economic-policy factors influencing rice cultivation in Central Thailand.

机构信息

Department of Environmental Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Bangkok, Thailand.

Department of Environmental Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Bangkok, Thailand.

出版信息

Sci Total Environ. 2024 Jul 1;932:173066. doi: 10.1016/j.scitotenv.2024.173066. Epub 2024 May 8.

Abstract

Agriculture activity contributes to greenhouse gas (GHG) emissions through its utilization of land, water, and energy for food production. Hence, the interactions between land, water, and GHG emissions in agricultural production need to be comprehensively studied. The study aimed to assess the Land-Water-GHG-Food Nexus Index (LWGFNI) of rice cultivation across various land suitability classes in Central Thailand and determining the physical, socio-economic, and policy factors that can influence farmers' decisions to choose for cultivating rice instead of shifting to other crops. The results indicated that the highest LWGFNI score was 0.69 for the rice grown in the moderate suitability land class which revealed a lower use of land and water resources as well as GHG emissions compared to other levels of land suitability. The LWGFNI scores of major rice cultivation were greater compared to the second rice in all four-land suitability. The use of fertilizers had a crucial role in enhancing productivity levels and was a significant factor in the generation of GHG emissions. Hence, improving effective production should consider the appropriate use of fertilizer. The physical, socio-economic, and policy-related aspects that significantly influenced farmers' decisions on cultivation of rice included topography, water resources, inherited professions, price guarantee, and knowledge/training factors. The methodology used and results obtained can help policy makers to plan the use of water and land resources efficiently and appropriately with local resources based on land suitability class. The assessment results revealed the GHG hotspots and the strategies to mitigate GHG emissions associated with rice cultivation.

摘要

农业活动通过土地、水和能源的利用来生产粮食,从而导致温室气体(GHG)排放。因此,需要综合研究农业生产中土地、水和 GHG 排放之间的相互作用。本研究旨在评估泰国中部不同土地适宜性等级的水稻种植的土地-水-温室气体-粮食关联指数(LWGFNI),并确定影响农民选择种植水稻而不是转向其他作物的物理、社会经济和政策因素。结果表明,中等适宜性土地上种植的水稻的 LWGFNI 得分最高,为 0.69,与其他土地适宜性等级相比,土地和水资源的利用以及 GHG 排放较低。主要水稻种植的 LWGFNI 得分均高于所有四个土地适宜性等级的第二季水稻。化肥的使用在提高生产力水平方面起着至关重要的作用,也是 GHG 排放的重要因素。因此,提高有效产量应考虑合理使用化肥。地形、水资源、祖传职业、价格保障和知识/培训因素等物理、社会经济和政策相关方面显著影响了农民的水稻种植决策。所使用的方法和获得的结果可以帮助政策制定者根据土地适宜性等级,利用当地资源,有效地规划水和土地资源的使用。评估结果揭示了与水稻种植相关的 GHG 热点和减轻 GHG 排放的策略。

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