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Source water odor in one reservoir in hot and humid areas of southern China: occurrence, diagnosis and possible mitigation measures

机译:中国南部炎热和潮湿地区的一个水库中的源水气味:发生,诊断和可能的缓解措施

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摘要

Abstract Background Identifying typical odor-causing compounds is essential for odor problem control in drinking water. In this study, aiming at a major water source reservoir in hot and humid areas in southern China, which encountered seasonable odor problems in recent years, an integrated approach including comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry (GC × GC–TOFMS), flavor profile analysis (FPA) and quantitative real-time polymerase chain reaction (qPCR) was adopted to investigate the odor occurrence. Results The results indicated that earthy–musty odor is blamed to the seasonable odor problems, and it is consistent with the complaints results from consumers. Fifty-four typical odor compounds were investigated in the reservoir and twelve were detected, of which, 2-methylisoborneol (2-MIB) was significantly increased during the odor event. Pseudanabaena sp. is the dominant species in the reservoir, which can be further represented by the number of mic gene with qPCR method (R 2 = 0.746, P < 0.001). Oxygen consumption (CODMn) and dissolved organic carbon (DOC) have great influence on growth of Pseudanabaena sp., and the release of 2-MIB from the Pseudanabaena sp. cells is affected by temperature and light. Conclusion Our findings demonstrated that 2-MIB is the odor-caused substance in the reservoir and Pseudanabaena sp. is the main 2-MIB producer, which was confirmed as a benthic filamentous algae. Due to CODMn and DOC have great influence on Pseudanabaena sp. growth, further measures to reduce the CODMn and DOC input should be performed. We also demonstrated that the 2-MIB release is affected by temperature and light. The risk of sudden increase of 2-MIB will be reduced by raising the depth of water in the reservoir. Our study will improve the understanding of T&O problems in this city, as well as in other hot and humid area.
机译:摘要背景鉴定典型的气味的化合物对于饮用水中的气味问题控制至关重要。在这项研究中,针对中国南部的热水和潮湿地区的主要水源水库,近年来遇到了季节性气味问题,一种综合方法,包括综合二维气相色谱,与飞行时间质谱(GC× GC-TOFMS)采用风味概况分析(FPA)和定量实时聚合酶链反应(QPCR)来研究气味发生。结果结果表明,泥炭酥气于季节性气味问题,这与消费者的投诉结果一致。在储存器中研究了五十四种典型的气味化合物,并且在气味事件期间检测到12种,其中,2-甲基甲醛(2-MIB)显着增加。 pseudanabaena sp。是储层中的主要种类,可以通过QPCR方法的MIC基因的数量进一步表示(R 2 = 0.746,P <0.001)。氧气消耗(CODMN)和溶解的有机碳(DOC)对Pseudanabaaena SP的生长有很大影响。以及来自Pseudanabaaena的2-mib的释放。细胞受温度和光的影响。结论我们的研究结果表明,2-MIB是水库和Pseudanabaena sp中的气味引起的物质。是主要的2-MIB生产者,被证实为底栖纤维藻类。由于Codmn和Doc对Pseudanabaaena SP有很大影响。增长,应执行减少CODMN和DOC输入的进一步措施。我们还证明了2-MIB释放受温度和光线的影响。通过提高水库中的水深将减少2-MIB突然增加的风险。我们的研究将提高对该城市的T&O问题的理解,以及其他炎热和潮湿的地区。

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