在津巴布韦哈拉雷 Morton Jaffray 水厂应用三介质过滤的试点研究

Water Supply Pub Date : 2024-04-23 DOI:10.2166/ws.2024.086
Z. Hoko, Brian T. Musima, C. F. Mapenzauswa
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引用次数: 0

摘要

Chivero 湖是哈拉雷饮用水的主要原水来源,湖中水藻丛生,影响了 Morton Jaffray 水处理厂 (MJWTW) 的水处理工艺。因此,MJWTW 遇到了一些挑战,包括频繁的过滤器反冲洗,导致工厂产量下降。本研究调查了用三介质过滤器替代单介质过滤器(目前在 MJWTW 使用)的可能性。研究使用了单介质过滤器(SMF)和三介质过滤器(TMF)的试验过滤器,并使用马家水厂的澄清水进行了试验。电导率 (EC)、pH 值、溶解固体总量 (TDS)、浊度和温度是监测的水质参数。水头损失和流速是监测的过滤器运行参数。水质和运行参数每小时监测一次,直到一个过滤器的水头损失或浊度达到最大允许限度。过滤器之间的出水浊度、TDS、EC 和 pH 值变化不大。不过,TMF 的水头损失发展速度明显慢于 SMF,导致 SMF 更早达到最大水头损失。因此,TMF 的整体性能更好。因此,采用 TMF 可以延长过滤器的运行时间,提高马家水厂的过滤和产水量。
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Pilot studies for the application of triple media filtration at Morton Jaffray Water Works, Harare, Zimbabwe
Lake Chivero, Harare's main source of raw water for drinking water, is algae infested thus affecting water treatment processes at Morton Jaffray Water Treatment Works (MJWTW). Consequently, several challenges have been encountered including frequent filter backwashing, leading to a reduced plant output. In this study, the potential of substituting single-media filters (currently used at MJWTW) with triple-media filters was investigated. This was done using pilot filters of a single-media filter (SMF) and a triple-media filter (TMF) and piloted using clarified water from MJWTW. Electrical conductivity (EC), pH, total dissolved solids (TDS), turbidity, and temperature were the water quality parameters that were monitored. Headloss and flow rate were the filter operation parameters that were monitored. Both water quality and operational parameters were monitored at hourly intervals until one filter reached the maximum allowable headloss or turbidity limit. The variation in effluent turbidity, TDS, EC, and pH between the filters was insignificant. Nevertheless, the headloss development for the TMF was significantly slower than that of the SMF resulting in the SMF reaching the maximum headloss earlier. Therefore, the TMF performed better overall. Therefore, the adoption of TMF could result in a longer filter run and improve filtration and water production at MJWTW.
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