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An assessment of irrigated rice production energy efficiency and environmental footprint with in-field and off-field rice straw management practices

机译:灌溉水稻生产能效和环境足迹与现场和野外稻草管理实践评估

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摘要

The research provided scientific evidences for improved rice straw management. Rice cultivation with in-field burning of rice straw is the worst option with the lowest energy efficiency and highest air pollution emission. This article comprises a comparative assessment of energy efficiency and the environmental footprint of rice production using four different rice straw management scenarios, namely, straw retained, straw burned, partial straw removal, and complete straw removal. Paddy yield, grain quality, and energy balance were assessed for two seasons while greenhouse gas emissions (GHGE) were measured weekly starting from land preparation through to the cropping and fallow period. Despite the added energy requirements in straw collection and transport, the use of collected rice straw for mushroom production can increase the net energy obtained from rice production systems by 10-15% compared to burning straw in the field. Partial and complete removal of rice straw reduces GHGE by 30% and 40% compared to complete straw retention, respectively.
机译:该研究为改善稻草管理提供了科学证据。水稻栽培稻草的现场燃烧是最低能源效率和最高空气污染排放的最差选择。本文包括使用四种不同的稻草管理场景的能效和水稻生产环境足迹的比较评估,即秸秆保留,稻草烧,部分秸秆去除和完全秸秆去除。在两个季节评估水稻产量,粒度和能量平衡,而温室气体排放(GHGE)每周测量从土地准备到种植和休耕期。尽管秸秆收集和运输中增加了能源要求,但与植物灌木丛相比,蘑菇生产中的米秸秆用于蘑菇生产的稻草可以增加10-15%的净能量。与完全秸秆保留相比,部分和完全剥离稻草减少30%和40%。

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