基于气候智能型农业(CSA)的京畿道华城当地水稻种植评价

Okjung Ju, Ho-Sob Soh, Sang-Woo Lee, Young-Soon Lee
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引用次数: 0

摘要

背景:气候智慧型农业(CSA)已被提出用于气候变化干扰下农业生态系统的可持续农业和粮食安全。然而,对当地农业生态系统实现CSA的科学方法却很少。本研究以京畿道华城市为研究对象,对气象条件、水稻产量、温室气体排放等进行了评价。方法与结果:对位于京畿道华城市吉山洞的京畿道农业研究推广服务所稻田(37°13’15”N, 127°02’22”E)近3年(2017~2019年)的初清水稻品种产量和甲烷排放进行了分析。甲烷样本从安装在该地块的三个自动封闭室中收集。分析了设在小区附近的自动气象站所测得的气象资料。结论:在农业生态系统中,水稻产量随天气环境的变化而变化。在有利于水稻生长的气候条件下,甲烷排放量很高。因此,有必要在减缓气候变化的温室气体排放目标和提高当地水稻种植CSA的生产力之间最小化权衡。
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Climate-Smart Agriculture(CSA)-Based Assessment of a Local Rice Cultivation in Hwaseong-city, Gyeonggi-do
BACKGROUND: Climate-smart agriculture (CSA) has been proposed for sustainable agriculture and food security in an agricultural ecosystem disturbed by climate change. However, scientific approaches to local agricultural ecosystems to realize CSA are rare. This study attempted to evaluate the weather condition, rice production, and greenhouse gas emissions from the rice cultivation in Hwaseong-si, Gyeonggi-do to fulfill CSA of the rice cultivation. METHODS AND RESULTS: Over the past 3 years (2017~2019), Chucheong rice cultivar yield and methane emissions were analyzed from the rice field plot (37°13′ 15′′N, 127° 02′22′′E) in the Gyeonggi-do Agricultural Research and Extension Services located in Gisan-dong, Hwaseong-si, Gyeonggi-do. Methane samples were collected from three automated closed chambers installed in the plot. The weather data measured through automatic weather station located in near the plot were analyzed. CONCLUSION(S): The rice productivity was found to vary with weather environment in the agricultural ecosystem. And methane emissions are high in a favorable weather condition for rice growth. Therefore, it is necessary to minimize the trade-off between the greenhouse gas emission target for climate change mitigation and productivity improvement for CSA in a local rice cultivation.
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