连续搅拌槽式反应器中废洗污泥厌氧消化产甲烷

S. Panhwar, A. R. Sahito, G. S. Solangi, R. Mahar, J. Lal
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引用次数: 2

摘要

DSW (Distillery Spent Wash)是酒精生产过程中产生的多余的废液。它是造成污染的最关键的环境问题之一。尽管对污水质量规定了严格的标准,但部分或未经处理的污水经常进入地表水和地下水。在全球一些地区,酿酒厂废水已成为严重的水质威胁。不断增加的DSW的产生导致采取尝试研究厌氧消化的几个方面从一个酒厂收集的废洗。在本研究中,CSTR(连续搅拌槽式反应器)用于实验室规模。研究了CSTR在有效启动和OLR (Organic Loading Rate)逐渐增加后的性能。在COD(化学需氧量)/L的OLR为1.0g时,最大甲烷气体(CH4)为71.68 ml。CSTR的最佳COD去除率为91%,OLR为1g /L。pH值在7.1 ~ 7.3范围内,工艺性能较好,稳定性最高。随着ORL的增加,挥发性脂肪酸(VFA)含量也有所增加,达到1.5g COD/L。而总固形物的去除效率随着OLR的加快而提高。
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Methane Production by Anaerobic Digestion of Spent Wash in Continuous Stirred Tank Reactor
DSW (Distillery Spent Wash) is superfluous residual liquid waste produced during the process of alcohol production. It is one of the most critical environmental issues which cause pollution. Despite strictness of standards imposed on effluent quality, partially or untreated effluent very often finds access to surface and groundwater. The distillery wastewater becomes a serious risk to the water quality in several regions around the globe. The ever-increasing generation of DSW lead to take an attempt to investigate a few aspects of anaerobic digestion of spent wash collected from a distillery. In the present study CSTR (Continuous Stirred Tank Reactor) was used at laboratory scale. The study was carried out to evaluate the performance of CSTR after the effective startup and the gradual increment in the OLR (Organic Loading Rate). The maximum methane gas (CH4) of 71.68 ml at the OLR of 1.0g of COD (Chemical Oxygen Demand)/L was observed. The optimum COD removal efficiency of the CSTR was 91% corresponding to OLR of 1g of COD/L. The pH ranges from 7.1-7.3 gave better performance and maximum stability of the process. By increasing the ORL, the VFA (Volatile Fatty Acids) content was also increased and reached to the 1.5g COD/L. However, the removal efficiency of TS (Total Solids) increased at an accelerated rate of OLR.
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