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Emergy Evaluation of a Production and Utilization Process of Irrigation Water in China

机译:中国灌溉水生产利用过程的能值评估

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摘要

Sustainability evaluation of the process of water abstraction, distribution, and use for irrigation can contribute to the policy of decision making in irrigation development. Emergy theory and method are used to evaluate a pumping irrigation district in China. A corresponding framework for its emergy evaluation is proposed. Its emergy evaluation shows that water is the major component of inputs into the irrigation water production and utilization systems (24.7% and 47.9% of the total inputs, resp.) and that the transformities of irrigation water and rice as the systems' products (1.72E + 05 sej/J and 1.42E + 05 sej/J, resp.; sej/J = solar emjoules per joule) represent their different emergy efficiencies. The irrigated agriculture production subsystem has a higher sustainability than the irrigation water production subsystem and the integrated production system, according to several emergy indices: renewability ratio (%R), emergy yield ratio (EYR), emergy investment ratio (EIR), environmental load ratio (ELR), and environmental sustainability index (ESI). The results show that the performance of this irrigation district could be further improved by increasing the utilization efficiencies of the main inputs in both the production and utilization process of irrigation water.
机译:对取水,分配和灌溉用水过程的可持续性评估可以有助于制定灌溉政策。用能值理论和方法对中国的抽水灌溉区进行了评估。提出了其能值评估的相应框架。其能值评估显示,水是灌溉水生产和利用系统投入的主要组成部分(分别占总投入的24.7%和47.9%),灌溉水和稻米作为系统产品的转化(1.72) E + 05 sej / J和1.42E + 05 sej / J,分别; sej / J =太阳焦耳/焦耳)表示它们不同的能效效率。根据几个能值指数,可灌溉农业生产子系统比灌溉水生产子系统和集成生产系统具有更高的可持续性:可再生性比(%R),能值产量比(EYR),能值投资比(EIR),环境负荷比率(ELR)和环境可持续性指数(ESI)。结果表明,在灌溉水的生产和利用过程中,通过增加主要投入的利用效率,可以进一步改善该灌溉区的性能。

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