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Integrated biological (anaerobic-aerobic) and physico-chemical treatment of baker's yeast wastewater

机译:面包酵母废水的综合生物(厌氧-好氧)和物理化学处理

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The UASB reactor (35 degrees C) was quite efficient for removal of bulk COD (52-74%) from simulated (on the basis of cultivation medium from the first separation process) general effluent of baker's yeast production (the average organic loading rates varied from 8.1 to 16 g COD/l/d). The aerobic-anoxic biofilter (19-23 degrees C) can be used for removal of remaining BOD and ammonia from anaerobic effluents; however, it suffered from COD-deficiency to fulfil denitrification requirements. To balance COD/N ratio, some bypass (similar to 10%) of anaerobically untreated general effluent should be added to the biofilter feed. The application of iron (III)-, aluminium- or calcium-induced coagulation for post-treatment of aerobic-anoxic effluents can fulfil the limits for discharge to sewerage (even for colour mainly exerted by hardly biodegradable melanoidins), however, the required amounts of coagulants were relatively high.
机译:UASB反应器(35摄氏度)对于从模拟的(基于第一次分离过程的培养基)面包酵母生产的一般废水中去除大量的COD(52-74%)非常有效(平均有机负荷率有所变化)从8.1到16 g COD / l / d)。好氧-缺氧生物滤池(19-23摄氏度)可用于去除厌氧废水中剩余的BOD和氨。但是,它不能满足反硝化要求的化学需氧量不足。为了平衡COD / N比率,应在生物滤池进料中添加一些旁路(约10%)的厌氧未经处理的一般污水。将铁(III),铝或钙诱导的凝结物用于需氧-缺氧废水的后处理可以满足污水排放的限制(即使是主要由难于降解的黑色素产生的颜色),但是,所需的量凝结剂相对较高。

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