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Analysis on the formation condition of the algae-induced odorous black water agglomerate

机译:藻类气味黑水团聚体形成条件分析

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摘要

The algae-induced odorous black water agglomerate (OBWA) is a phenomenon in which water turns black and emits odorous gas. It is an ecological and environmental problem that has occurred several times in Taihu, a large eutrophic shallow lake in China. In this study, the collected eutrophic water with different algae densities was used to simulate OBWA. The results revealed that the massive accumulation and death of algae was the substrate source for OBWA. When the algae density reached 1.0 × 108 cells/L in the static and dark condition, at a constant high temperature (30 ± 2 °C), OBWA happened. There was a time difference between the water stinking and blackening with the stinking first. When the oxidation–reduction potential (ORP) value was between −250 and −50 mV, Dimethyl trisulfide (DMTS), the main contributor to the water stinking at the initial stage, and other odorous organics were produced. Water blackening was closely related to the increases of sulfide and dissolved Fe2+ concentration. When the ORP value was between −350 and −300 mV, heavy metal containing sulfides such as FeS formed. Therefore, the condition when the water ORP value decreased to about −300 mV was considered the precursor for OBWA formation.
机译:藻类引起的有臭味的黑水附聚物(OBWA)是一种现象,水会变黑并散发出恶臭气体。这是一个生态和环境问题,在中国一个富营养化的浅水湖泊太湖中曾发生过几次。在这项研究中,使用收集的具有不同藻类密度的富营养化水来模拟OBWA。结果表明,藻类的大量积累和死亡是OBWA的底物来源。在静态和黑暗条件下,在恒定的高温(30±2°C)下,藻类密度达到1.0×10 8 cells / L时,就会发生OBWA。水发臭和先发臭变黑之间存在时间差异。当氧化还原电位(ORP)值介于-250和-50 mV之间时,二甲基三硫化物(DMTS)是水在初始阶段发臭的主要起因,并产生了其他有气味的有机物。水发黑与硫化物的增加和溶解的Fe 2 + 浓度密切相关。当ORP值在-350至-300 mV之间时,形成了含有重金属的硫化物如FeS。因此,将水ORP值降至约-300 mV的条件视为OBWA形成的前兆。

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