首页> 外文期刊>Journal of biological engineering >Pretreatment of vinasse from the sugar refinery industry under non-sterile conditions by Trametes versicolor in a fluidized bed bioreactor and its effect when coupled to an UASB reactor
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Pretreatment of vinasse from the sugar refinery industry under non-sterile conditions by Trametes versicolor in a fluidized bed bioreactor and its effect when coupled to an UASB reactor

机译:在流化床生物反应器中,由Trametes versicolor在非无菌条件下对制糖业中的酒糟进行预处理,以及与UASB反应器耦合后的效果

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BackgroundDuring hydrous ethanol production from the sugar refinery industry in Mexico, vinasse is generated. Phenolic compounds and melanoidins contribute to its color and make degradation of the vinasse a difficult task. Although anaerobic digestion (AD) is feasible for vinasse treatment, the presence of recalcitrant compounds can be toxic or inhibitory for anaerobic microorganism. Therefore, this study presents new data on the coupled of the FBR (Fluidized Bed Bioreactor) to the UASB (Upflow Anaerobic Sludge Blanket) reactor under non-sterile conditions by T. versicolor . Nevertheless, for an industrial application, it is necessary to evaluate the performance in this kind of proposal system. ResultsTherefore, this study used a FBR for the removal of phenolic compounds (67%) and COD (38%) at non-sterile conditions. Continuous operation of the FBR was successfully for 26 days according to the literature. When the FBR was coupled to the UASB reactor, we obtained a better quality of effluent, furthermore methane content and yield were 74% and 0.18 m3 CH4/ kg CODremoval respectively. ConclusionsThis study demonstrated the possibility of using for an industrial application the coupled of the FBR to the UASB reactor under non-sterile conditions. Continuous operation of the FBR was carried out successfully for 26 days, which is the highest value found in the literature.
机译:背景技术在墨西哥制糖业的含水乙醇生产过程中,产生了酒糟。酚类化合物和黑素类化合物对其颜色有贡献,并使酒糟的降解变得困难。尽管厌氧消化(AD)可用于酒糟处理,但顽固性化合物的存在可能对厌氧微生物有毒或具有抑制作用。因此,本研究提供了在非无菌条件下通过杂色丁香菌将FBR(流化床生物反应器)与UASB(上流厌氧污泥毯)反应器耦合的新数据。然而,对于工业应用,有必要评估这种提议系统的性能。结果因此,本研究使用FBR在非无菌条件下去除酚类化合物(67%)和COD(38%)。根据文献,FBR的连续运行成功进行了26天。当FBR与UASB反应器耦合时,我们获得了更好的废水质量,而且甲烷含量和产率分别为74%和0.18 m 3 CH 4 / kg COD < sub> remove 。结论这项研究表明在非无菌条件下将FBR与UASB反应器耦合用于工业应用的可能性。 FBR连续运行成功进行了26天,这是文献中发现的最高值。

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