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Biological wastewater treatment (anaerobic-aerobic) technologies for safe discharge of treated slaughterhouse and meat processing wastewater

机译:生物废水处理(厌氧-好氧)技术,可安全排放经过处理的屠宰场和肉类加工废水

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Slaughterhouse industry generates considerable amount of wastewater rich in proteins, lipids, fibres, and carbohydrates. Numerous technologies such as electrocoagulation, membrane separation, advanced oxidation, physico-chemical processes, and biological treatment have been implemented for reducing the concentrations of these compounds. Nevertheless, this review aims to provide extensive information solely on the biological treatment (anaerobic and aerobic) of slaughterhouse wastewater. The advantages of anaerobic treatment are excellent organic matter removal, less sludge production, low energy requirement, execution of higher loading rates, and considerable production of biogas. Aerobic treatment on the other hand is a less sensitive process, possess lower start-up period, and efficient nutrient removal process. Numerous case studies are described to bestow maximum understanding of the wastewater characteristics, kind of treatment employed, and complications involved in managing and treating of slaughterhouse effluent. Additionally, role of microbial community involved in the treatment of slaughterhouse waste is also discussed. Sequential anaerobic and aerobic reactors are also reviewed in order to present their advantages over single bioreactors. Intermittent sequencing batch reactor is a promising technology than other high rate digesters in the removal of carbon, nitrogen, and phosphorous. (C) 2019 Elsevier B.V. All rights reserved.
机译:屠宰场产生大量废水,废水中富含蛋白质,脂质,纤维和碳水化合物。为了降低这些化合物的浓度,已经实施了许多技术,例如电凝,膜分离,高级氧化,物理化学过程和生物处理。但是,本综述旨在仅提供有关屠宰场废水的生物处理(厌氧和好氧)的广泛信息。厌氧处理的优势在于出色的有机物去除能力,更少的污泥产生,较低的能源需求,更高的装载率以及可观的沼气产量。另一方面,有氧处理是一个较不敏感的过程,具有较短的启动时间和有效的营养去除过程。描述了许多案例研究,以最大程度地了解废水的特性,采用的处理方式以及屠宰场废水管理和处理中涉及的复杂性。此外,还讨论了微生物群落在屠宰场废物处理中的作用。还对顺序厌氧和好氧反应器进行了综述,以展示其相对于单个生物反应器的优势。在去除碳,氮和磷方面,间歇测序间歇反应器是一种比其他高速率消化器有前途的技术。 (C)2019 Elsevier B.V.保留所有权利。

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