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Canal wall brushing―a control measure for taste and odour problems in drinking water supplies in arid environments

机译:渠壁刷牙-干旱环境中饮用水供应中的味道和气味问题的控制措施

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摘要

Canal wall brushing, accomplished by a tractor-mounted custom-designed rotating metal brush, was an effective means of removing nuisance periphytic cyanobacterial growth and consequently reducing MIB and geosmin production in the Arizona Canal, a major water conveying open channel in the metropolitan Phoenix (Arizona) water supply system. On average, c. 80% of the periphyton biomass was removed from the canal walls, resulting in immediate reduction in MIB and geosmin concentrations. Recolonization of periphytic cyanobacteria and other microalgae on the canal walls occurred following brushing, and algal biomass (chlorophyll a concentration) reached pre-brushing levels within 2 weeks. However, the production of MIB and geosmin was significantly reduced in the brushed section of the canal during this period of time. The extended duration of the effectiveness of brushing therefore did not appear to be due to the reduced total periphytic biomass, but rather the influence on species composition and population density of MIB and geosmin producers. Thus, slow recovery of MIB- and geosmin-producing cyanobacterial populations probably accounts for the reduced MIB and geosmin production. The brushing technique may be particularly applicable to open concrete-lined canal water supply systems and fish culture impoundments that contain point sources of periphyton-associated MIB and geosmin production.
机译:通过用拖拉机安装的定制设计的旋转金属刷完成的运河壁刷,是消除滋生有害生物的蓝藻细菌生长并因此减少亚利桑那州运河(大都市凤凰城主要的输水明渠)中MIB和土臭素生成的有效手段。亚利桑那州)供水系统。平均而言,c。从管壁去除了80%的浮游植物生物量,导致MIB和土臭素浓度立即降低。刷牙后,管壁周围的藻蓝细菌和其他微藻重新定殖,藻类生物量(叶绿素a浓度)在2周内达到刷牙前水平。但是,在这段时间里,在运河的刷​​面部分,MIB和土臭素的产生显着减少。因此,刷牙有效期的延长似乎不是由于减少了周围植物的总生物量,而是由于对MIB和土臭素生产者的物种组成和种群密度的影响。因此,MIB和土工产生蓝藻种群恢复缓慢可能是MIB和土工产生减少的原因。刷牙技术尤其适用于开放混凝土衬砌的运河供水系统和鱼类养殖蓄水池,这些蓄水池包含与浮游植物相关的MIB和土臭素生产的点源。

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