从排水到资源:将中水回用于家庭灌溉的实践方法

Anh Dao Ngo Ho, C. P. Leo, Anh Tuan Ta, Thanh Quang Nguyen
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摘要

联合国指出,由于污染增长和城市化,可用淡水资源将大幅减少;到 2030 年,全球三分之二的人口可能面临缺水问题。推广使用中水是减少城市地区饮用水消耗的主要替代方法之一。最近,将处理过的中水回用于家庭菜园、城郊农业和景观美化已成为许多发展中国家广泛关注的问题。本文介绍了一项关于低成本中水处理系统的研究。该处理系统采用了陶瓷过滤器、石英砂砾、中空纤维膜和紫外线消毒等物理过滤方法。对从厨房、洗衣盆和浴室收集的三种中水样本进行了调查。运行过程通过考虑进水和出水的浊度、大肠菌群、生化需氧量(BOD5)和化学需氧量(COD)浓度来确定系统的有效性。因此,对每个调查参数都能获得较高的去除效率(即大于 60%)。结果还显示,清洗池产生的中水具有最大的回用潜力,因为处理后的水质符合家庭灌溉的中水回用标准。研究结果鼓励进一步探索和实施中水回用实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From drainage to resource: a practice approach to reuse greywater for household irrigation purposes
The United Nations indicates that available freshwater resources will decrease significantly due to pollution growth and urbanization; two-thirds of the world's population may face water shortages by 2030. Extended use of greywater is one of the main alternatives for reducing potable water consumption in urban areas. Recently, the reuse of treated greywater for home gardens, peri-urban agriculture, and landscaping has become a widespread concern in many developing countries. This paper presents a study on a low-cost system that can perform greywater treatment for household use. This treatment system employed physical filtration by ceramic filters, quartz gravel, hollow fiber membrane, and UV disinfection. Three greywater samples collected from the kitchen, washing basins, and bathroom were investigated. The operation process determines the system's effectiveness by considering turbidity, coliform, Biochemical Oxygen Demand (BOD5), and Chemical Oxygen Demand (COD) concentration of the inlet and outlet water. As a result, high removal efficiency (i.e., >60%) could be obtained for each investigated parameter. Results also showed that grey water generated from washing basins has the highest potential for reuse since the water quality after treatment satisfies the water reuse standards for household irrigation. The findings encourage further exploration and implementation of greywater reuse practices.
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