4.6 Article

An Improved Emergy Analysis of the Environmental and Economic Benefits of Reclaimed Water Reuse System

期刊

SUSTAINABILITY
卷 14, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/su14095050

关键词

reclaimed water; environmental economic value; environmental performance; emergy analysis; emission impacts; Qingdao City

资金

  1. National Key Research and Development Program of China [2018YFC0408000, 2018YFC0408004]

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This study assessed the environmental performance of reclaimed water systems using emergy analysis. The results showed that the RWRSs have good sustainability and high environmental and economic benefits. It is also important to select an appropriate treatment process based on water quality and reclaimed water use in practical applications.
Reclaimed water, a nontraditional water source, has become a desirable choice for meeting the increasing demand in areas with water shortages. However, the environmental and economic benefits of reclaimed water reuse systems (RWRSs) are unclear. Therefore, we conducted this study to assess the environmental performance of RWRSs based on emergy analysis. Notably, the emergy index system was improved by incorporating the environmental impacts of air emissions. The results show that the improved emergy indicator system was more rigorous than the traditional emergy index system. The environmental loading ratio and the emergy sustainability index of the studied system based on an improved emergy index system was 0.202 and 30.01, respectively. The environmental economic value was 3.52 x 10(20) sej/y. The results show that the RWRS has good sustainability, and high environmental and economic benefits. Compared with two other RWRSs (Scenario A in Zhengzhou City and Scenario B in Chongqing City) and one seawater desalination system (Scenario C in Qingdao City), it is found that RWRSs are preferred as a way to obtain water resources over seawater desalination under the same water quality conditions. It is also important to select an appropriate treatment process according to the raw water quality and reclaimed water use in the practical application.

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