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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Sequential anaerobic/aerobic biological treatment of olive mill wastewater and municipal wastewater
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Sequential anaerobic/aerobic biological treatment of olive mill wastewater and municipal wastewater

机译:橄榄厂废水和市政废水的顺序厌氧/好氧生物处理

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This work investigated the efficiency of the combined anaerobic/aerobic biological co-treatment of olive mill wastewater and primary municipal wastewater. A laboratory-scale (6.5 L) upflow anaerobic sludge bed reactor received a mixture of olive mill wastewater and primary municipal wastewater at a loading rate ranging between 3 and 7kg chemical oxygen demand (COD) m(-3) day(-1). The input COD concentration ranged between 1800 and 4400mg L-1. The anaerobic reactor was operated at mesophilic conditions (35 C). The effluent organic load was between 400 and 600 mg COD L-1, while the suspended solids removal efficiency varied between 75 and 95%. Average biogas production ranged between 3 and 4 L g(-1) COD removed. The anaerobic reactor effluent was further treated in a laboratory-scale activated sludge treatment plant. Aerobic treatment reduced the organic load even further to 85-175 mg COD L-1. However, the final effluent still retained a significant level of colour. Removal of colour was possible by ozonation or coagulation. Finally, the treated effluent was non-ecotoxic, as indicated by the Daphnia magna toxicity test. This treatment method showed that it is feasible to treat olive mill wastewater in a municipal wastewater treatment plant by means of a high-rate anaerobic reactor located between the primary clarifier and the aeration tank. (c) 2006 Society of Chemical Industry.
机译:这项工作研究了厌氧/好氧生物联合处理橄榄磨坊废水和主要市政废水的效率。实验室规模(6.5 L)的上流厌氧污泥床反应器以3至7kg化学需氧量(COD)m(-3)天(-1)的负荷速率接收了橄榄磨厂废水和主要市政废水的混合物。输入的COD浓度在1800和4400mg L-1之间。厌氧反应器在中温条件(35℃)下运行。废水有机负荷在400至600 mg COD L-1之间,而悬浮固体的去除效率则在75至95%之间变化。平均沼气产量介于3-4 L g(-1)COD之间。厌氧反应器废水在实验室规模的活性污泥处理厂中进一步处理。有氧处理将有机负荷进一步降低至85-175 mg COD L-1。但是,最终的出水仍然保留了显着的颜色。通过臭氧或凝结可以去除颜色。最终,如达夫尼亚水蚤毒性试验所示,处理后的废水无生态毒性。该处理方法表明,通过位于初级澄清池和曝气池之间的高速厌氧反应器,在市政废水处理厂中处理橄榄磨废水是可行的。 (c)2006年化学工业协会。

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