Chang Siyuan, Fang Yuqing, Shi Lin. The Effect and Mechanism of Calcium Ions Concentration on Biofouling Grown in Treated Sewage Source Heat Pump Systems[J]. Journal of refrigeration, 2016, 37(6).
DOI:
Chang Siyuan, Fang Yuqing, Shi Lin. The Effect and Mechanism of Calcium Ions Concentration on Biofouling Grown in Treated Sewage Source Heat Pump Systems[J]. Journal of refrigeration, 2016, 37(6). DOI: 10.3969/j.issn.0253-4339.2016.06.055.
The Effect and Mechanism of Calcium Ions Concentration on Biofouling Grown in Treated Sewage Source Heat Pump Systems
Treated sewage source heat pump systems could reuse the large amount of wasted heat in the city sewage to refrigerate and heat the buildings. However
biofouling
which is the key problem in treated sewage heat pump systems
decreases the system efficiency and security. Ca2+
which is an important inorganic ion for bacteria metabolism
has a significant influence on biofouling formation. In this study
the effect and mechanism of calcium ions concentration on biofouling growth were investigated under flowing conditions. Model sewage was prepared
with the Ca2+ concentration ranging from 100 mg/L to 450 mg/L
and a rotating coupon device was used for biofouling formation. The total weight
dry weight and organic weight of biofouling grown under different Ca2+ concentrations were measured
the moisture content of the biofouling was calculated
and the microstructure of the biofouling was viewed. The results indicated that biofouling grown under higher Ca2+ concentrations have a more heterogeneous and porous structure
thus the moisture content and the total mass of the biofouling were increased. The results of this study could be used for predicting the biofouling formation under different operation conditions and improving the performance of treated sewage source heat pump systems.
Experimental Investigation on the Anti-fouling Effect of Benzalkonium Chloride against Biofouling in Treated Sewage Heat Pump System
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Related Author
Chang Siyuan
Jiang Shuo
Yang Qianpeng
Shi Lin
Zhu Kai
Dong Yang
Wang Yabo
Xie Yanqi
Related Institution
Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Beijing Municipal Key Laboratory for CO2 Utilization &Reduction, Department of Thermal Engineering of Tsinghua University
Tianjin Key Laboratory of Refrigeration Technology, Tianjin University of Commerce