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Combined biological and physico-chemical treatment of baker's yeast wastewater

机译:面包酵母废水的生物和物理化学联合处理

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The UASB reactor (35 degrees C) was quite efficient for removal of bulk COD (52-74%) from the raw and diluted cultivation medium from the first separation process of baker's yeasts (the average organic loading rates varied in the range 3.7-16 g COD/I/d). The aerobic-anoxic biofilter (19-23 degrees C) can be used for removal of remaining BOD and ammonia from anaerobic effluents; however, it had insufficient COD to fulfil the denitrification requirements. To balance COD/N ratio, some bypass of raw wastewater (similar to 10%) should be added to the biofilter feed. The application of iron (III)-, aluminium- or calcium-induced coagulation for post-treatment of aerobic 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)对于从面包酵母的第一个分离过程中的原始和稀释的培养基中去除大量COD(52-74%)非常有效(平均有机负载率在3.7-16范围内变化) g COD / I / 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,它的化学需氧量不足以满足脱氮要求。为了平衡COD / N比率,应在生物滤池中添加一些旁路的原废水(约10%)。铁(III),铝或钙诱导的混凝在好氧废水的后处理中的应用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,需要的凝结剂数量相对较高。

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