首页> 外文期刊>Journal of water, sanitation and hygiene for development >Lead-lag series and staged parallel operational strategies improve the performance and cost-effectiveness of bonechar for control of fluoride in groundwater
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Lead-lag series and staged parallel operational strategies improve the performance and cost-effectiveness of bonechar for control of fluoride in groundwater

机译:Lead-LAG系列和分阶段并行运营策略提高了Bonechar的性能和成本效益,用于控制地下水中的氟化物

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摘要

Affordable, locally managed, decentralized treatment technologies are needed to protect health in resource-poor regions where communities consume groundwater containing elevated levels of fluoride (F). Bonechar is a promising low-cost sorbent for F that can be produced using local materials and simple pyrolysis technology. However, the sorption capacity of bonechar is low relative to the quantities of F that must be removed to meet health criteria (typically several mg/L), especially at pH typical of groundwaters containing high levels of geogenic F. This necessitates large bonechar contactors and/or frequent sorbent replacement, which could be prohibitively costly in materials and labor. One strategy for improving the feasibility of bonechar water treatment is to utilize lead-lag series or staged parallel configurations of two or more contactors. This study used column testing to quantify potential benefits to bonechar use rate, replacement frequency, and long-run average F concentration in treated water of lead-lag series and staged parallel operational modes compared with single contactor mode. Lead-lag series operation exhibited the largest reduction in bonechar use rate (46% reduction over single contactor mode compared with 29% reduction for staged parallel) and lowest long-run average F levels when treating central Mexican groundwater at pH 8.2 containing 8.5 mg/L F.
机译:经济实际的,当地管理的分散的处理技术需要保护资源贫乏地区的健康,其中社区消耗含有升高水平的氟化物(F)的地下水。 Bonechar是一种很有希望的低成本吸附剂,用于使用本地材料和简单的热解技术生产。然而,Bonechar的吸收能力相对于必须被移除的F的量低,以满足健康标准(通常是几Mg / L),尤其是含有高含量造成高水平的地下水的pH值。这需要大型Bonechar接触器和/或频繁的吸附剂更换,这可能在材料和劳动中承受昂贵。一种提高Bonechar水处理可行性的策略是利用两个或更多个接触器的引线延迟系列或分阶段并行配置。本研究使用了柱测试,以使铅滞后系列和分级并行操作模式的处理水中的益稳利用率,替换频率和长期平均f浓度量化潜在的益处。铅滞后系列操作表现出最大的伯爵使用率降低(单个接触器模式减少46%,而平行分阶段的29%相比)和在含有8.5mg /含有8.5mg /如果。

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