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Reduction of precursors of chlorination by-products in drinking water using fluidized-bed biofilm reactor at low temperature / 生物医学与环境科学(英文)
Article in English | WPRIM (Western Pacific) | ID: wpr-229675
Responsible library: WPRO
ABSTRACT
<p><b>OBJECTIVE</b>To investigate the reduction of chlorination by-products (CBPs) precursors using the fluidized-bed biofilm reactor (FBBR).</p><p><b>METHODS</b>Reduction of total organic carbon (TOC), ultraviolet absorbance (UV254), trihalomethane (THM) formation potential (THMFP), haloacetic acid (HAA) formation potential (HAAFP), and ammonia in FBBR were evaluated in detail. Results The reduction of TOC or UV254 was low, on average 12.6% and 4.7%, respectively, while the reduction of THMFP and HAAFP was significant. The reduction of ammonia was 30%-40% even below 3 degrees C, however, it could quickly rise to over 50% above 3degrees C. Conclusions The FBBR effectively reduces CBPs and ammonia in drinking water even at low temperature and seems to be a very promising and competitive drinking water reactor for polluted surface source waters, especially in China.</p>
Subject(s)
Full text: Available Health context: SDG3 - Health and Well-Being Health problem: Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: WPRIM (Western Pacific) Main subject: Chlorine / Water Purification / Biofilms Language: English Journal: Biomedical and Environmental Sciences Year: 2006 Document type: Article
Full text: Available Health context: SDG3 - Health and Well-Being Health problem: Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: WPRIM (Western Pacific) Main subject: Chlorine / Water Purification / Biofilms Language: English Journal: Biomedical and Environmental Sciences Year: 2006 Document type: Article
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