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Measuring nitrification inhibition by metals in wastewater treatment systems: Current state of science and fundamental research needs

机译:测量废水处理系统中金属对硝化的抑制作用:当前的科学状况和基础研究需求

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Wastewater treatment is an important step within the water continuum as it reduces the risks associated with microorganisms as well as organic and inorganic compounds. From a chemical standpoint, treatment effectiveness is generally linked to carbon and nutrient (e.g., nitrogen, phosphorus) removal. A critical step in nitrogen removal is initiated by the conversion of ammonia to nitrate, a process that is carried out by nitrifying microorganisms. Nitrification is considered a key step as it removes the toxic effect of ammonia, while the resulting nitrate can be further converted into N-2 gas (by autotrophic or heterotrophic nitrifying bacteria), which is not harmful to the environment. As nitrification is susceptible to a wide range of inhibitory substances, measuring the effect of potential inhibitors on nitrification rates is relevant to maintaining the performance of treatment plants. In this review we discuss the primary methods used to measure nitrification inhibition, their applications, and potential limitations. The authors also identify the research gaps that need to be addressed to better assess inhibition, with special attention on the effect of metals on nitrification in engineered wastewater treatment systems.
机译:废水处理是水连续体中的重要步骤,因为它减少了与微生物以及有机和无机化合物相关的风险。从化学观点来看,治疗效果通常与碳和营养物(例如氮,磷)的去除有关。脱氮的关键步骤是将氨转化为硝酸盐,这是通过硝化微生物进行的过程。硝化被认为是关键步骤,因为它消除了氨的毒性作用,而生成的硝酸盐可以进一步转化为N-2气体(通过自养或异养硝化细菌),对环境无害。由于硝化易受多种抑制性物质的影响,因此测量潜在抑制剂对硝化率的影响与维持污水处理厂的性能有关。在这篇综述中,我们讨论了用于测量硝化抑制作用的主要方法,其应用和潜在的局限性。作者还确定了需要解决的研究差距,以更好地评估抑制作用,并特别关注金属对工程废水处理系统中硝化作用的影响。

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