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Biomethane and ammonia generation through treatment of rice mill wastewater

机译:通过碾米废水处理的生物甲烷和氨生成

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Small-scale rice industry produces about 7,000 1 of effluent per day, having a Chemical Oxygen Demand (COD) ranging from 4,000 to 7,000 ppm. The effluent contains mainly long-chain carbohydrates, which is an ideal source for biogas production. In this research work, physical and chemical methods for treatment of rice mill waste were investigated and compared. Filtration, centrifugation and adsorption were used in the physical method, and chemical methods included lime and hydrogen peroxide treatments. Filtration and centrifugation did not reduce COD values because impurities were mainly in the form of dissolved solids. Adsorption using bottom ash obtained from the boiler located at a rice mill reduced the COD of effluent by c. 28%. Lime treatment ranging from 0.1 g to 2 g lime per 100 ml effluent reduced the COD by c. 23% to 43%, respectively. Hydrogen peroxide treatment gave the best results of all the treatments with c. 98% reduction in COD values. Sludge production was c. 60% lower in peroxide-treated effluent as compared to lime-treated effluent. The sludge obtained from lime and peroxide treatment methods was further added to a batch of anaerobic digester for biogas production. Lime-treated sludge reduced biogas production of a stable biogas-producing digester, due to an increase in pH from c. 7.2 to 11.5. Biogas production was enhanced markedly when hydrogen peroxide-treated sludge was added to an anaerobic digester, as compared to lime-treated sludge.
机译:小型稻米行业每天产生约7,000份流出物,具有4,000至7,000ppm的化学需氧量(COD)。流出物主要含有长链碳水化合物,这是沼气生产的理想来源。在本研究中,研究了对稻磨废弃物处理的物理和化学方法进行了研究。过滤,离心和吸附在物理方法中,化学方法包括石灰和过氧化氢处理。过滤和离心不降低COD值,因为杂质主要是溶解固体的形式。使用从位于稻磨机的锅炉获得的底灰的吸附降低了C的鳕鱼。 28%。每100ml流出物的0.1g至2g石灰的石灰处理降低了C鳕鱼。分别为23%至43%。过氧化氢处理得到了所有处理的最佳结果。 COD值减少98%。污泥生产是c。与石灰处理的流出物相比,过氧化物处理过的流出物较60%。从石灰和过氧化物处理方法获得的污泥进一步加入到一批厌氧蒸煮器中进行沼气生产。由于C的pH增加,石灰处理的污泥降低了沼气产生稳定的沼气蒸煮器的沼气。 7.2至11.5。与石油酸蒸煮器加入到厌氧蒸煮器中,沼气产生明显增强,与石灰处理的污泥相比,当加入过氧化氢处理的污泥时。

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