首页> 外文期刊>The journal of microbiology >Effects of phosphate addition on biofilm bacterial communities and water quality in annular reactors equipped with stainless steel and ductile cast iron pipes
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Effects of phosphate addition on biofilm bacterial communities and water quality in annular reactors equipped with stainless steel and ductile cast iron pipes

机译:添加磷酸盐对配备不锈钢和球墨铸铁管的环形反应器中生物膜细菌群落和水质的影响

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摘要

The impact of orthophosphate addition on biofilm formation and water quality was studied in corrosion-resistant stainless steel (STS) pipe and corrosion-susceptible ductile cast iron (DCI) pipe using cultivation and culture-independent approaches. Sample coupons of DCI pipe and STS pipe were installed in annular reactors, which were operated for 9 months under hydraulic conditions similar to a domestic plumbing system. Addition of 5 mg/L of phosphate to the plumbing systems, under low residual chlorine conditions, promoted a more significant growth of biofilm and led to a greater rate reduction of disinfection by-products in DCI pipe than in STS pipe. While the level of THMs (trihalomethanes) increased under conditions of low biofilm concentration, the levels of HAAs (halo acetic acids) and CH (chloral hydrate) decreased in all cases in proportion to the amount of biofilm. It was also observed that chloroform, the main species of THM, was not readily decomposed biologically and decomposition was not proportional to the biofilm concentration; however, it was easily biodegraded after the addition of phosphate. Analysis of the 16S rDNA sequences of 102 biofilm isolates revealed that Proteobacteria (50%) was the most frequently detected phylum, followed by Firmicutes (10%) and Actinobacteria (2%), with 37% of the bacteria unclassified. Bradyrhizobium was the dominant genus on corroded DCI pipe, while Sphingomonas was predominant on non-corroded STS pipe. Methylobacterium and Afipia were detected only in the reactor without added phosphate. PCR-DGGE analysis showed that the diversity of species in biofilm tended to increase when phosphate was added regardless of the pipe material, indicating that phosphate addition upset the biological stability in the plumbing systems.
机译:使用与培养无关的方法研究了添加正磷酸盐对生物耐蚀不锈钢管(STS)和易腐蚀球墨铸铁(DCI)管中生物膜形成和水质的影响。 DCI管和STS管的样品试样安装在环形反应器中,在类似于家用管道系统的液压条件下运行9个月。在低残留氯气条件下,向管道系统中添加5 mg / L的磷酸盐可促进生物膜更显着的生长,并导致DCI管道中消毒副产物的速率比STS管道更大。虽然在低生物膜浓度条件下THMs(三卤甲烷)的水平增加,但在所有情况下,HAAs(卤乙酸)和CH(水合氯醛)的水平均与生物膜的数量成比例下降。还观察到,THM的主要种类氯仿不易在生物上分解,分解与生物膜浓度不成正比。但是,添加磷酸盐后很容易被生物降解。对102个生物膜分离物的16S rDNA序列进行分析后发现,变形杆菌(50%)是检出率最高的门,其次是Firmicutes(10%)和放线菌(2%),其中37%的细菌未分类。缓生根瘤菌是腐蚀的DCI管道的主要属,鞘氨醇单胞菌在未腐蚀的STS管道中占主导。仅在反应器中未添加磷酸盐的情况下检测到甲基杆菌和Afipia。 PCR-DGGE分析表明,无论添加何种磷酸盐,无论加入何种管道材料,生物膜中物种的多样性都趋于增加,这表明磷酸盐的添加破坏了管道系统的生物稳定性。

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