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Assimilable organic carbon cycling within drinking water distribution systems

机译:饮用水分配系统内可吸白的有机碳循环

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A new conceptual model to describe and understand the role of assimilable organic carbon (AOC) within drinking water distribution systems is proposed. The impact of AOC on both drinking water biofilm and water quality was studied using bespoke pipe loop experimental facilities installed at three carefully selected operational water treatment works. Integrated physical, chemical and biological monitoring was undertaken that highlights the central role of biofilms in AOC cycling, forming the basis of the new conceptual model. Biofilms formed under high AOC conditions were found to pose the highest discoloration response, generating a turbidity (4.3 NTU) and iron (241.5 mu g/l) response sufficient to have caused regulatory failures from only 20 m of pipe in only 12 months of operation. This new knowledge of the role of biofilms in AOC cycling, and ultimately impacts on water quality, can be used to inform management and help ensure the supply of high-quality, biostable drinking water.(c) 2021 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license ( http://creativecommons.org/licenses/by/4.0/ )
机译:提出了一种新的概念模型,用于描述和理解可间白的有机碳(AOC)在饮用水分配系统中的作用。使用在三个精心选择的运营水处理工作中安装的定制管道回路实验设施,研究了AOC对饮用水生物膜和水质的影响。进行了综合物理,化学和生物监测,突出了生物膜在AOC循环中的核心作用,形成了新的概念模型的基础。发现在高AOC条件下形成的生物膜造成最高的变色响应,产生浊度(4.3 NTU)和铁(241.5μg/ L)响应,足以在仅12个月的操作中仅导致20米的管道中的监管故障。这种对生物膜在AOC循环中的作用的新知识,并最终对水质的影响,可用于告知管理,并帮助确保提供高质量的可生物饮用水。(C)2021作者。由elsevier有限公司出版。这是CC的开放式访问文章,由许可证(http://creativecommons.org/licenses/by/4.0/)

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