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A Cyanotoxin Primer for Drinking Water Professionals

机译:用于饮用水专业人员的氰毒素底漆

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Cyanobacteria and cyanotoxins became an emerging issue for the drinking water industry in 1998 by appearing in the first US Environmental Protection Agency drinking water Contaminant Candidate List (CCL 1). Before CCL, cyanotoxin contaminants did not fit into the two prevailing paradigms: synthetic chemicals and pathogens. Cyanotoxins added a new paradigm: natural chemical toxins. Driven by anthropogenic influences, nutrient loading, and climate change, cyanobacterial blooms are increasing in frequency and distribution. To efficiently produce potable water from a source impacted by a toxic cyanobacterial bloom, drinking water practitioners need to take a multidisciplinary approach. Bloom dynamics (biology), surrogate and analytical methods (chemistry), inactivation/removal of intra- and extracellular toxins and multibarrier treatment (engineering), and risk management (public health) must all be part of a comprehensive management strategy. This article provides a holistic primer for water professionals on cyanotoxin treatment and management using pertinent literature, technical sources, case studies, and experience.
机译:蓝细菌和氰毒素在1998年被列入美国环境保护署的第一份饮用水污染物候选清单(CCL 1),成为饮用水行业的一个新兴问题。在进行CCL之前,氰毒素污染物不适合两种流行的范例:合成化学品和病原体。氰毒素增加了新的范例:天然化学毒素。在人为因素,养分含量和气候变化的驱动下,蓝藻水华的发生频率和分布正在增加。为了从受有毒的蓝藻水华影响的来源有效地生产饮用水,饮用水从业人员需要采取多学科的方法。 Bloom动力学(生物学),替代和分析方法(化学),细胞内和细胞外毒素的失活/去除和多屏障治疗(工程)以及风险管理(公共卫生)都必须成为全面管理策略的一部分。本文使用相关文献,技术来源,案例研究和经验,为水专业人士提供了有关氰毒素处理和管理的整体入门。

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