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Advanced technologies for the treatment of wastewaters from agro-processing industries and cogeneration of by-products: a case of slaughterhouse, dairy and beverage industries

机译:从农业加工行业治疗废水的先进技术和副产品的热电联产:屠宰场,乳制品和饮料行业的情况

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Agro-industrial wastewaters are known by high strength of organic pollutants that cause an adverse effect on the water bodies. Wastewater management becomes a major task, leads environmental regulations to be stricter worldwide. Increased disposal of untreated/partially treated industrial wastewaters are major environmental problems in Ethiopia. In Ethiopia, industries most commonly dispose their untreated wastewater straight into the nearby rivers. Somewhat, constructed wetlands are used by some industries for treatment of wastewaters. The objective of this review paper was to summarize the characteristics and recent research efforts done on anaerobic treatment of some selected agro-industrial wastewaters and innovative technologies used for cogeneration of byproducts. Many developed countries designed cost effective approaches for agro-industrial wastewater management. The full-scale anaerobic treatment system in China generates 40,000 m(3) biogas daily for 20,000 households from agro-industrial wastes. Likewise, the Brewery, Addis Ababa, Ethiopia used full-scale anaerobic treatment technology and produce average methane yield of 487 Nm(3)/day. The estimated maximum methane production potential of Kera, Luna slaughterhouses, and Ada milk factory were 4.5599LCH(4), 0.1878LCH(4), and 0.9952LCH(4), respectively. These indicate that they can be potential sources of biogas production. Limitations of the brewery are burning of the produced energy and some quantified parameters being become above national standards while meat processing and diary industries are discharging their wastewater without treatment into the rivers. We devised the brewery to use the produced energy properly and extend its treatment to achieve the national standards using integrated sequencing batch reactor. Similarly, slaughterhouse and diary industries should install anaerobic-aerobic integrated treatment techniques.
机译:农业工业废水众所周知,有机污染物的高强度众所周知,导致对水体产生不利影响。污水管理成为一项重大任务,导致环境法规在全球更加强悍。未经处理/部分治疗的工业废水的处理增加是埃塞俄比亚的主要环境问题。在埃塞俄比亚,行业最常见地将未经处理的废水直接纳入附近的河流。某些行业使用了一些建造的湿地用于治疗废水。本文的目的是总结了对某些选定农业工业废水和用于副产品发电的创新技术对厌氧处理的特点和最近的研究努力。许多发达国家为农业工业废水管理设计了成本效益的方法。中国的全规模厌氧治疗系统每天为来自农业工业废物的20,000户家庭产生40,000米(3)个沼气。同样,啤酒厂,亚亚的斯亚贝巴,埃塞俄比亚使用全规模的厌氧处理技术,并产生487nm(3)/天的平均甲烷产率。估计Kera,Luna屠宰场和ADA牛奶厂的最大甲烷生产潜力分别为4.5599LCH(4),0.1878克(4)和0.9952LCH(4)。这些表明它们可以成为沼气生产的潜在来源。啤酒厂的局限性正在燃烧所产生的能量,并且在肉类加工和日记产业将其废水放入河流的肉类加工和日记产业之上,一些量化的参数燃烧。我们设计了啤酒厂正确使用生产的能量并扩展其处理,以实现使用集成测序批量反应器实现国家标准。同样,屠宰场和日记产业应安装厌氧 - 有氧综合处理技术。

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