| Literature DB >> 23954247 |
Shuangfu Zhang1, Yayi Wang2, Weitao He1, Meiyan Xing1, Min Wu1, Jian Yang1, Naiyun Gao1, Guangyao Sheng1, Daqiang Yin1, Shanhu Liu1.
Abstract
Biofilm physiology was characterized by four biofilm constituents, i.e., polysaccharides, proteins (PN), humic-like substances and phospholipids (PL), for the first time to explore the relationships between biofilm characteristics and nitrification performance in moving-bed biofilm reactors (MBBRs) designed for pretreatment of polluted raw surface water for potable supply. The biofilm compositions depended highly on the balance of microbial decay and nitrification processes. The increased ammonia loading greatly regulated the community structure, promoting the dominance of nitrifiers and their proportions in the nitrifying biofilm. Nitrification rate and activity correlated linearly with the fractions of volatile solids (VS), PN and PL, which were related to nitrification processes in the biofilm. The specific biofilm activity demonstrated an exponential-asymptotic relationship with ratios of PN/VS and PL/VS. Thus, analyzing biofilm characteristics can be valid for estimating nitrification performance in MBBRs, and may offer engineers with basis to optimize MBBR design and operation.Entities:
Keywords: Biofilm characteristics; Moving-bed biofilm reactor; Nitrification performance; Nitrifying community structure; Polluted raw water
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Year: 2013 PMID: 23954247 DOI: 10.1016/j.biortech.2013.07.056
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642