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Performance Optimization of Anaerobic Continuous Stirred-Tank Reactor Operating on Distillery Spent Wash

机译:陶桥连续搅拌罐反应器的性能优化在酿酒厂运行

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In order to better understand the performance, anaerobic treatment of spent wash with very high chemical oxygen demand (COD) (110,000-140,000 mg/L) and biochemical oxygen demand (BOD) (55,000-65,000 mg/L) was studied on a full-scale continuous stirred-tank reactor (CSTR). Under variable organic loading rates (OLRs), optimum conditions for maximum COD removal and biogas generation were found to be OLR=60,000-65,000 kg COD/day, hydraulic retention time (HRT)=22-17 days, and volatile fatty acids (VFA) to alkalinity ratio of around 0.12. Maximum COD removal efficiency was found to be around 71% when operated in the pH range of 7-8 with stable temperature of 37 degrees C-38 degrees C with biogas conversion coefficient of 0.4. These figures are particularly significant when operating the anaerobic biodigesters for treatment of spent wash and to produce biogas as an energy source. An anaerobic CSTR can successfully be employed for the treatment of distillery spent wash, but postmethanation effluent still contains a high COD concentration and needs to be treated further to meet the pollution norms and standards. (c) 2019 American Society of Civil Engineers.
机译:为了更好地了解性能,厌氧处理用非常高的化学需氧量(COD)(COD)(110,000-140,000mg / L)和生化氧需求(BOD)(55,000-65,000mg / L)进行了全部-scale连续搅拌罐反应器(Cstr)。在可变的有机加载率(OLRS)下,发现最大鳕鱼去除和沼气生成的最佳条件是OLR = 60,000-65,000公斤COD /天,液压保留时间(HRT)= 22-17天和挥发性脂肪酸(VFA )至碱度比为0.12。当在7-8的pH范围内操作时,最大鳕鱼去除效率约为71%,其稳定温度为37℃-38摄氏度,沼气转化系数为0.4。当操作厌氧生物消泡剂时,这些数字是特别显着的,用于治疗花洗涤并产生作为能量源的沼气。厌氧CSTR可以成功地用于治疗酿酒厂的洗涤,但后甲烷化流出物仍然含有高COD浓度,并且需要进一步治疗以满足污染规范和标准。 (c)2019年美国土木工程师协会。

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