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首页> 外文期刊>Journal of Chemical Engineering & Process Technology >Anaerobic Treatment of Vinasse from Sugarcane Ethanol Production in Expanded Granular Sludge Bed Bioreactor
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Anaerobic Treatment of Vinasse from Sugarcane Ethanol Production in Expanded Granular Sludge Bed Bioreactor

机译:膨化颗粒污泥床生物反应器中甘蔗乙醇生产中的蔗糖厌氧处理

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The sugarcane vinasse cause an environmental problem, due they do not a previous treatment and are discharged directly into the environment. For this reason, the main aim of this project was to evaluate the anaerobic digestion in Expanded Granular Sludge Bed (EGSB) bioreactor as a sustainable alternative for the treatment of sugarcane vinasse. In addition, the production of biogas and Biochemical Methane Potential (BMP) were determined. Vinasse was characterized physico-chemically and its parameters such as Chemical Oxygen Demand (COD), bio Chemical Oxygen Demand (BOD5), pH, metal ions, among others were evaluated. Simultaneously, an anaerobic inoculum was acclimated in a batch bioreactor to assimilate the vinasse during 75 days. After that, the EGSB bioreactor was started-up with the previously acclimated inoculum and evaluated to determinate the BMP, biogas production and COD removal. The EGSB bioreactor was operated with a Hydraulic Retention Time (HRT) of 7 days under stable conditions (i.e., alkaline factor of 0.24, pH 7.2 and temperature 26°C) for 140 days, generating a maximum Chemical Oxygen Demand (COD) removal efficiency close to 75%, biogas production contained 76% methane concentration which generates a calorific power of 6507 kcal/m3 with an average methane production of 4.2 L of CH4/day and BMP of 244.64 mL CH4/gCOD. According to the obtained results, the anaerobic EGSB bioreactor can be a solution to the environmental challenges that this agro-industry confronts, since could be a sustainable alternative to simultaneously solve the environmental pollution caused by vinasse and produce bioenergy for the operation in the same agro-industry.
机译:甘蔗酒糟没有经过事先处理,直接排放到环境中,因此会引起环境问题。因此,该项目的主要目的是评估膨化颗粒污泥床(EGSB)生物反应器中的厌氧消化,以作为甘蔗酒糟处理的可持续替代方案。此外,还确定了沼气的生产量和生化甲烷潜力(BMP)。对Vinasse进行了物理化学表征,并评估了其参数,如化学需氧量(COD),生物化学需氧量(BOD5),pH,金属离子等。同时,在分批的生物反应器中使厌氧接种物适应环境,以在75天内吸收酒糟。此后,使用先前适应的接种物启动EGSB生物反应器,并进行评估以确定BMP,沼气产生和COD去除。 EGSB生物反应器在稳定条件下(即碱性系数0.24,pH 7.2和温度26°C)在7天的水力保留时间(HRT)下运行140天,从而产生了最大的化学需氧量(COD)去除效率接近75%的沼气产量包含76%的甲烷浓度,产生的热量为6507 kcal / m3,平均甲烷产量为4.2 L CH4 /天,BMP为244.64 mL CH4 / gCOD。根据获得的结果,厌氧EGSB生物反应器可以解决该农业工业面临的环境挑战,因为它可以作为可持续解决方案,同时解决酒糟带来的环境污染并为同一农业中的生产提供生物能-行业。

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