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Effective enzyme activity: A proposed monitoring methodology for biofiltration systems with or without ozone

机译:有效酶活性:具有或没有臭氧的生物滤光系统的提出监测方法

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"Effective Enzyme Activity", or simply "Effective Activity", is proposed as a biofiltration monitoring tool which combines enzyme activity with empty bed contact time (EBCT) to quantify biodegradation potential. The primary objective of this study was to evaluate the applicability of the Effective Activity concept for predicting water quality in biofiltration systems. This pilot-scale study evaluated eight different biofilter configurations in order to quantify impacts associated with filter media (anthracite/ sand or granular activated carbon), pre-treatment (settled water with or without ozonation) and operating conditions (15- and 30-min EBCT, and backwash with or without chlorine). Microbial characterization included biomass concentration, as measured by adenosine triphosphate (ATP), in addition to esterase and phosphatase activity. Water quality parameters included dissolved organic carbon (DOC), trihalomethane (THM) formation potential (FP), haloacetic acid (HAA) FP, haloacetonitrile (HAN) FP, iodinated DBP FP (THMs and HAAs) and inorganic nutrients (phosphorus and nitrogen). Results confirmed the benefits to treated water quality associated with the application of an ozone residual of 0.5 mg/L, utilization of GAC filter media, eliminating chlorinated backwash, and extending EBCT. This study demonstrated a good relationship between effective esterase activity and reductions in DOC and THM FP, including those systems which incorporate pre-ozonation. As such, this study showed that Effective Activity may be appropriate for relating biomass characterization to treated water quality and highlights the importance of quantifying biomass activity in addition to quantity. (C) 2020 Elsevier Ltd. All rights reserved.
机译:“有效酶活性”,或简单地“有效活性”,作为生物滤光监测工具,其将酶活性与空床接触时间(EBCT)结合以定量生物降解电位。本研究的主要目标是评估有效活动概念的适用性预测生物滤光系统中的水质。该试验规模研究评估了八种不同的生物过滤器配置,以定量与过滤介质(无烟煤/砂或颗粒状活性炭)相关的影响,预处理(沉降或没有臭氧的沉降)和操作条件(15-30分钟) EBCT和背后洗涤或没有氯)。微生物表征包括通过腺苷三磷酸(ATP)测量的生物质浓度,除了酯酶和磷酸酶活性。水质参数包括溶解有机碳(DOC),三卤代甲烷(THM)形成电位(FP),卤代乙酸(HAA)FP,卤代乙腈(HAN)FP,碘化DBP FP(THMS和HAAS)和无机营养素(磷和氮) 。结果证实了对水质的益处与应用臭氧残留物0.5mg / L的涂层,利用GAC过滤介质,消除氯化反冲洗,并延伸EBCT。本研究表明了生物酯酶活性与DOC和THM FP中减少的良好关系,包括那些掺入臭氧质的系统。因此,该研究表明,有效的活性可能适合于将生物质表征与处理的水质相关,并突出除当数量外量化生物质活性的重要性。 (c)2020 elestvier有限公司保留所有权利。

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