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Evaluation of biofilm development on various pipelines in the domestic hot water system

Huijin Zhang, Yanling Yang, Xing Li, Yongwang Liu, Li Zhao
Available Online 10 July 2017, ws2017138; DOI: 10.2166/ws.2017.138
Huijin Zhang
College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, P.R. China
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Yanling Yang
College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, P.R. China
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  • For correspondence: yangyanlingbjut@126.com
Xing Li
College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, P.R. China
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Yongwang Liu
China Architecture Design & Research Group, No. 19 Chegongzhuang Street, Beijing, P.R. China
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Li Zhao
China Architecture Design & Research Group, No. 19 Chegongzhuang Street, Beijing, P.R. China
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Abstract

Biological safety of hot water is important, and it is affected by pipeline material to a certain degree. Polypropylene random (PPR), polyvinyl chloride (PVC) and stainless steel (SS) are the common materials for pipelines in domestic hot water systems (DHWS), and biofilm growth characteristics, and biofilm microbial communities and biological diversity on the walls of pipelines are affected by the pipeline materials to a certain extent. In this paper, the effects of different materials on the growth characteristics and diversity of microbial communities were studied. The results showed that after about 60 days, the bacteria of the biofilm on the wall of pipelines completed a microbial growth cycle. Compared with PPR and SS, a greater amount of the total number of bacteria, E. coli and HPC attached to the PVC pipeline. Although the types of bacteria on the pipelines were similar, the proportions of species were different. Proteobacteria were the dominant bacteria at the phylum level on all the walls of the PPR, PVC and SS pipelines, and the dominant bacteria at the genus level changed before and after the exfoliation of biofilm. Some potential pathogens, such as Pseudomonas and Legionella, were detected in biofilm, so effective biofilm disinfection should be considered to ensure biological safety in DHWS.

  • bacterial community diversity
  • biofilm
  • biological safety
  • domestic hot water system
  • pipeline material
  • First received 9 April 2017.
  • Accepted in revised form 19 June 2017.
  • © IWA Publishing 2017
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Water Science and Technology: Water Supply: 18 (2)
  Volume 18,issue 2

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Evaluation of biofilm development on various pipelines in the domestic hot water system
Huijin Zhang, Yanling Yang, Xing Li, Yongwang Liu, Li Zhao
Water Science and Technology: Water Supply Jul 2017, ws2017138; DOI: 10.2166/ws.2017.138
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Evaluation of biofilm development on various pipelines in the domestic hot water system
Huijin Zhang, Yanling Yang, Xing Li, Yongwang Liu, Li Zhao
Water Science and Technology: Water Supply Jul 2017, ws2017138; DOI: 10.2166/ws.2017.138

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Keywords

bacterial community diversity
biofilm
biological safety
domestic hot water system
pipeline material
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