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Spatial Patterns of Urban Wastewater Discharge and Treatment Plants Efficiency in China

机译:中国城市污水排放与处理厂效率的空间格局

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摘要

With the rapid economic development, water pollution has become a major concern in China. Understanding the spatial variation of urban wastewater discharge and measuring the efficiency of wastewater treatment plants are prerequisites for rationally designing schemes and infrastructures to control water pollution. Based on the input and output urban wastewater treatment data of the 31 provinces of mainland China for the period 2011–2015, the spatial variation of urban water pollution and the efficiency of wastewater treatment plants were measured and mapped. The exploratory spatial data analysis (ESDA) model and super-efficiency data envelopment analysis (DEA) combined Malmquist index were used to achieve this goal. The following insight was obtained from the results. (1) The intensity of urban wastewater discharge increased, and the urban wastewater discharge showed a spatial agglomeration trend for the period 2011 to 2015. (2) The average inefficiency of wastewater treatment plants (WWTPs) for the study period was 39.2%. The plants’ efficiencies worsened from the eastern to western parts of the country. (3) The main reasons for the low efficiency were the lack of technological upgrade and scale-up. The technological upgrade rate was −4.8%, while the scale efficiency increases as a result of scaling up was −0.2%. Therefore, to improve the wastewater treatment efficiency of the country, the provinces should work together to increase capital investment and technological advancement.
机译:随着经济的飞速发展,水污染已成为中国的主要问题。了解城市污水排放量的空间变化并测量污水处理厂的效率是合理设计控制水污染的方案和基础设施的前提。根据中国大陆31个省2011-2015年的输入和输出城市废水处理数据,测量并绘制了城市水污染的空间变化和废水处理厂的效率。探索性空间数据分析(ESDA)模型和超高效数据包络分析(DEA)结合了Malmquist指数来实现此目标。从结果中获得以下见解。 (1)2011年至2015年期间,城市废水排放强度增加,城市废水排放呈空间集聚趋势。(2)研究期间,废水处理厂(WWTPs)的平均效率为39.2%。从该国的东部到西部,工厂的效率在下降。 (3)效率低下的主要原因是缺乏技术升级和规模扩大。技术升级率为-4.8%,而由于规模扩大而导致的规模效率提高为-0.2%。因此,为提高国家的废水处理效率,各省应共同努力,增加资本投资和技术进步。

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