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Methane production by treating vinasses from hydrous ethanol using a modified UASB reactor

机译:使用改良的UASB反应器通过从含水乙醇中处理酒糟生产甲烷

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Background A modified laboratory-scale upflow anaerobic sludge blanket (UASB) reactor was used to obtain methane by treating hydrous ethanol vinasse. Vinasses or stillage are waste materials with high organic loads, and a complex composition resulting from the process of alcohol distillation. They must initially be treated with anaerobic processes due to their high organic loads. Vinasses can be considered multipurpose waste for energy recovery and once treated they can be used in agriculture without the risk of polluting soil, underground water or crops. In this sense, treatment of vinasse combines the elimination of organic waste with the formation of methane. Biogas is considered as a promising renewable energy source. The aim of this study was to determine the optimum organic loading rate for operating a modified UASB reactor to treat vinasse generated in the production of hydrous ethanol from sugar cane molasses. Results The study showed that chemical oxygen demand (COD) removal efficiency was 69% at an optimum organic loading rate (OLR) of 17.05 kg COD/m3-day, achieving a methane yield of 0.263 m3/kg CODadded and a biogas methane content of 84%. During this stage, effluent characterization presented lower values than the vinasse, except for potassium, sulfide and ammonia nitrogen. On the other hand, primers used to amplify the 16S-rDNA genes for the domains Archaea and Bacteria showed the presence of microorganisms which favor methane production at the optimum organic loading rate. Conclusions The modified UASB reactor proposed in this study provided a successful treatment of the vinasse obtained from hydrous ethanol production. Methanogen groups (Methanobacteriales and Methanosarcinales) detected by PCR during operational optimum OLR of the modified UASB reactor, favored methane production.
机译:背景技术改良的实验室规模的上流厌氧污泥床(UASB)反应器用于通过处理含水乙醇酒糟获得甲烷。酒渣或酒馏物是具有高有机负荷的废料,并且是由醇蒸馏过程产生的复杂组成。由于它们的高有机负荷,它们必须首先进行厌氧处理。酒糟可以被认为是用于能源回收的多用途废物,经过处理后,它们可以用于农业,而不会污染土壤,地下水或农作物。从这个意义上讲,酒糟的处理结合了有机废物的消除和甲烷的形成。沼气被认为是有前途的可再生能源。这项研究的目的是确定运行改良的UASB反应器以处理甘蔗糖蜜生产含水乙醇时产生的酒糟的最佳有机负载率。结果研究表明,在最佳有机负荷率(OLR)为17.05 kg COD / m3-d​​ay的情况下,化学需氧量(COD)的去除效率为69%,实现的甲烷产量为0.263 m3 / kg COD,沼气中的甲烷含量为84%。在此阶段,除钾,硫化物和氨氮外,废水的表征值均低于酒糟。另一方面,用于扩增古细菌和细菌域的16S-rDNA基因的引物显示存在以最佳有机负载率促进甲烷生成的微生物。结论本研究中提出的改进的UASB反应器为成功处理含水乙醇生产的酒糟提供了成功的处理方法。在改良的UASB反应器的最佳操作OLR过程中,通过PCR检测到的产甲烷菌基(甲烷菌和甲烷菌)。

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