生物滤池
过滤(数学)
慢砂过滤器
环境科学
水处理
废物管理
环境工程
过程(计算)
地下水
工程类
计算机科学
岩土工程
数学
统计
操作系统
作者
R. Gimbel,N. A. Graham,Michael R. Collins
出处
期刊:Water intelligence online
[IWA Publishing]
日期:2015-12-21
卷期号:5: 9781780402451-9781780402451
被引量:54
标识
DOI:10.2166/9781780402451
摘要
Slow sand filtration is typically cited as being the first “engineered” process in drinking-water treatment. Proven modifications to the conventional slow sand filtration process, the awareness of induced biological activity in riverbank filtration systems, and the growth of oxidant-induced biological removals in more rapid-rate filters (e.g. biological activated carbon) demonstrate the renaissance of biofiltration as a treatment process that remains viable for both small, rural communities and major cities. Biofiltration is expected to become even more common in the future as efforts intensify to decrease the presence of disease-causing microorganisms and disinfection by-products in drinking water, to minimize microbial regrowth potential in distribution systems, and where operator skill levels are emphasized.Recent Progress in Slow Sand and Alternative Biofiltration Processes provides a state-of-the-art assessment on a variety of biofiltration systems from studies conducted around the world. The authors collectively represent a perspective from 23 countries and include academics, biofiltration system users, designers, and manufacturers.It provides an up-to-date perspective on the physical, chemical, biological, and operational factors affecting the performance of slow sand filtration (SSF), riverbank filtration (RBF), soil-aquifer treatment (SAT), and biological activated carbon (BAC) processes. The main themes are: comparable overviews of biofiltration systems; slow sand filtration process behavior, treatment performance and process developments; and alternative biofiltration process behaviors, treatment performances, and process developments.This title belongs to Water Research Foundation Report SeriesISBN: 9781843391203 (Print)ISBN: 9781780402451 (eBook)
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