TECHNOLOGIES TO REDUCE EMISSION OF METHANE AND NITROUS OXIDE IN RICE FIELDS: A BRIEF REVIEW

A. Wihardjaka
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Abstract

Climate change caused by increasing anthropogenic greenhouse gas concentrations can threaten food security. Agricultural land is a source of food availability, however it is one source of GHG emissions, especially methane and nitrous oxide. Integration management of land, water, and plants in an integrated manner can be an effort to reduce the impact of climate change. This paper aims to inform the technologies to reduce emissions of methane and nitrous oxide in rice fields. One of the technologies to mitigate greenhouse gas emissions on agricultural land is through the use of natural materials as an inhibitor for the formation of methane and nitrous oxide in the soil due to the content of secondary metabolites in natural ingredients. Natural materials can simultaneously increase nitrogen nutrient uptake and improve crop yields. The methane production in rice fields is suppressed by more than 30% by coconut fiber, turmeric rhizomes, leaf of Ageratum conyzoides, and the leaf of Cosmos caudatus; while application of Cosmos caudatus and Ageratum conyzoides can also reduce the production of nitrous oxide more than 20%, respectively.
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减少稻田甲烷和一氧化二氮排放的技术:简要综述
人为温室气体浓度增加引起的气候变化可能威胁粮食安全。农业用地是粮食供应的一个来源,但它也是温室气体排放的一个来源,尤其是甲烷和一氧化二氮。以综合方式对土地、水和植物进行综合管理可以减少气候变化的影响。本文旨在为减少稻田甲烷和一氧化二氮排放的技术提供信息。减少农业用地温室气体排放的技术之一是通过使用天然材料作为土壤中甲烷和一氧化二氮形成的抑制剂,因为天然成分中含有次生代谢物。天然材料可以在增加氮素养分吸收的同时提高作物产量。椰子纤维、姜黄根状茎、刺叶和尾叶对稻田甲烷产量的抑制作用在30%以上;同时,施用尾状藤和凸形Ageratum conyzoides也可使氧化亚氮的产生分别减少20%以上。
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