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首页> 外文期刊>Environmental Science and Pollution Research >Comparison greenhouse gas (GHG) emissions and global warming potential (GWP) effect of energy use in different wheat agroecosystems in Iran
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Comparison greenhouse gas (GHG) emissions and global warming potential (GWP) effect of energy use in different wheat agroecosystems in Iran

机译:比较伊朗不同小麦农业生态系统中温室气体(GHG)的排放量和能源使用的全球变暖潜能(GWP)效应

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摘要

The aims of this study were to determine energy requirement and global warming potential (GWP) in low and high input wheat production systems in western of Iran. For this purpose, data were collected from 120 wheat farms applying questionnaires via face-to-face interviews. Results showed that total energy input and output were 60,000 and 180,000 MJ ha(-1) in high input systems and 14,000 and 56,000 MJ ha(-1) in low input wheat production systems, respectively. The highest share of total input energy in high input systems recorded for electricity power, N fertilizer, and diesel fuel with 36, 18, and 13 %, respectively, while the highest share of input energy in low input systems observed for N fertilizer, diesel fuel, and seed with 32, 31, and 27 %. Energy use efficiency in high input systems (3.03) was lower than of low input systems (3.94). Total CO2, N2O, and CH4 emissions in high input systems were 1981.25, 31.18, and 1.87 kg ha(-1), respectively. These amounts were 699.88, 0.02, and 0.96 kg ha(-1) in low input systems. In high input wheat production systems, total GWP was 11686.63 kg CO(2)eq ha(-1) wheat. This amount was 725.89 kg CO(2)eq ha(-1) in low input systems. The results show that 1 ha of high input system will produce greenhouse effect 17 times of low input systems. So, high input production systems need to have an efficient and sustainable management for reducing environmental crises such as change climate.
机译:这项研究的目的是确定伊朗西部低和高投入小麦生产系统中的能源需求和全球变暖潜能(GWP)。为此目的,通过面对面访谈从应用问卷的120个小麦农场中收集数据。结果表明,高输入系统的总能量输入和输出分别为60,000和180,000 MJ ha(-1),低输入小麦生产系统的总能量输入和输出分别为14,000和56,000 MJ ha(-1)。在高输入系统中,电力,氮肥和柴油的总输入能量中最高的份额分别为36%,18%和13%,而在低输入系统中,氮肥,柴油的输入能量中最高的输入能量中最高燃料和种子,分别占32%,31%和27%。高输入系统(3.03)的能源使用效率低于低输入系统(3.94)的能源使用效率。高输入系统中的总CO2,N2O和CH4排放分别为1981.25、31.18和1.87 kg ha(-1)。在低输入系统中,这些数量分别为699.88、0.02和0.96 kg ha(-1)。在高投入小麦生产系统中,总GWP为11686.63 kg CO(2)eq ha(-1)小麦。在低输入系统中,该数量为725.89 kg CO(2)eq ha(-1)。结果表明,高投入系统1 ha的温室效应是低投入系统的17倍。因此,高投入生产系统需要进行有效且可持续的管理,以减少诸如气候变化等环境危机。

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