Characterization of Brewery Wastewater Composition

A. Enitan, J. Adeyemo, S. Kumari, F. Swalaha, F. Bux
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引用次数: 37

Abstract

Abstract—Industries produce millions of cubic meters of effluent every year and the wastewater produced may be released into the surrounding water bodies, treated on-site or at municipal treatment plants. The determination of organic matter in the wastewater generated is very important to avoid any negative effect on the aquatic ecosystem. The scope of the present work is to assess the physicochemical composition of the wastewater produced from one of the brewery industry in South Africa. This is to estimate the environmental impact of its discharge into the receiving water bodies or the municipal treatment plant. The parameters monitored for the quantitative analysis of brewery wastewater include biological oxygen demand (BOD5), chemical oxygen demand (COD), total suspended solids, volatile suspended solids, ammonia, total oxidized nitrogen, nitrate, nitrite, phosphorus and alkalinity content. In average, the COD concentration of the brewery effluent was 5340.97 mg/l with average pH values of 4.0 to 6.7. The BOD5 and the solids content of the wastewater from the brewery industry were high. This means that the effluent is very rich in organic content and its discharge into the water bodies or the municipal treatment plant could cause environmental pollution or damage the treatment plant. In addition, there were variations in the wastewater composition throughout the monitoring period. This might be as a result of different activities that take place during the production process, as well as the effects of peak period of beer production on the water usage.
啤酒废水组成的表征
摘要:工业每年产生数百万立方米的废水,产生的废水可能被排放到周围的水体中,在现场或市政处理厂进行处理。为了避免对水生生态系统产生负面影响,废水中有机物的测定非常重要。目前的工作范围是评估的物理化学成分的废水产生的啤酒厂之一在南非。这是为了估计其排放到接收水体或市政处理厂的环境影响。用于啤酒废水定量分析的监测参数包括生物需氧量(BOD5)、化学需氧量(COD)、总悬浮物、挥发性悬浮物、氨、总氧化氮、硝酸盐、亚硝酸盐、磷和碱度含量。平均COD浓度为5340.97 mg/l,平均pH值为4.0 ~ 6.7。啤酒工业废水中BOD5和固体含量较高。这意味着废水的有机含量非常丰富,排放到水体或市政处理厂可能造成环境污染或破坏处理厂。此外,在整个监测期间,废水成分也发生了变化。这可能是由于在生产过程中发生的不同活动,以及啤酒生产高峰期对用水量的影响。
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