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设计和开发可持续修复过程,以减轻地下水氟污染,并进行现场应用,供家庭使用。

Design and development of sustainable remediation process for mitigation of fluoride contamination in ground water and field application for domestic use.

机构信息

National Environmental Engineering Research Institute, Water Technology and Management Division, Nehru Marg, Nagpur, India.

National Environmental Engineering Research Institute, Water Technology and Management Division, Nehru Marg, Nagpur, India.

出版信息

Sci Total Environ. 2014 Aug 1;488-489:588-94. doi: 10.1016/j.scitotenv.2014.01.054. Epub 2014 Feb 20.

Abstract

Decentralised household chemo defluoridation unit (CDU) was developed and designed based on a combination of coagulation and sorption processes. Chemo-defluoridation process was optimised to reduce use of chemicals and increase acceptability among beneficiaries without affecting palatability of water. Chemical dose optimization undertaken in the laboratory using jar test revealed the optimum calcium salt to initial fluoride ratio of 60 for fluoride removal. Performance of CDU was evaluated in the laboratory for removal efficiency, water quality parameters, filter bed cleaning cycle and desorption of fluoride. CDU evaluation in the laboratory with spiked water (5 mg/L) and field water (~4.2 mg/L) revealed treated water fluoride concentration of less than 1mg/L. Seventy five CDUs were installed in households at Sakhara Village, Yavatmal District in Maharashtra State of India. Monthly monitoring of CDUs for one year indicated reduction of the raw water fluoride concentration from around 4 mg/L to less than 1mg/L. Post implementation survey after regular consumption of treated drinking water by the users for one year indicated user satisfaction and technological sustainability.

摘要

基于混凝和吸附工艺,开发并设计了分散式家庭化学除氟装置(CDU)。优化了化学除氟工艺,在不影响水的口感的情况下,减少了化学品的使用并提高了受益人的接受程度。通过实验室的 jar 测试进行的化学剂量优化表明,去除氟化物的最佳钙盐与初始氟化物的比例为 60。在实验室中对 CDU 的性能进行了去除效率、水质参数、过滤床清洗周期和氟化物解吸的评估。用加标水(5mg/L)和现场水(~4.2mg/L)对 CDU 进行实验室评估表明,处理后的水中氟化物浓度低于 1mg/L。在印度马哈拉施特拉邦亚瓦特马尔区的萨哈拉村安装了 75 个 CDU。对 CDU 进行了为期一年的每月监测,结果表明原水氟化物浓度从约 4mg/L 降低到了 1mg/L 以下。在用户定期饮用处理后的饮用水一年后的实施后调查中,用户表示满意并认为该技术具有可持续性。

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