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Biogas-pH automation control strategy for optimizing organic loading rate of anaerobic membrane bioreactor treating high COD wastewater

机译:优化厌氧膜生物反应器处理高COD废水有机负荷的沼气pH自动控制策略

摘要

Control of organic loading rate (OLR) is essential for anaerobic digestion treating high COD wastewater, which would cause operation failure by overload or less efficiency by underload. A novel biogas-pH automation control strategy using the combined gas-liquor phase monitoring was developed for an anaerobic membrane bioreactor (AnMBR) treating high COD (27.53 g.L (1)) starch wastewater. The biogas-pH strategy was proceeded with threshold between biogas production rate >98 Nml.h (1) preventing overload and pH > 7.4 preventing underload, which were determined by methane production kinetics and pH titration of methanogenesis slurry, respectively. The OLR and the effluent COD were doubled as 11.81 kgCOD.kgVSS (1).d (1) and halved as 253.4 mg.L (1), respectively, comparing with a constant OLR control strategy. Meanwhile COD removal rate, biogas yield and methane concentration were synchronously improved to 99.1%, 312 Nml.gCOD(in)(1) and 74%, respectively. Using the biogas-pH strategy, AnMBR formed a "pH self-regulation ternary buffer system" which seizes carbon dioxide and hence provides sufficient buffering capacity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:有机负荷率(OLR)的控制对于厌氧消化处理高COD废水至关重要,否则会因过载而导致运行失败,或因欠载而导致效率降低。针对厌氧膜生物反应器(AnMBR)开发了一种新型的沼气-pH值自动化控制策略,该策略使用组合的气液相监测技术来处理高COD(27.53 g.L(1))淀粉废水。沼气-pH策略的阈值介于沼气产生速率> 98 Nml.h(1)(防止过载)和pH> 7.4(防止欠载)之间,这分别由甲烷生成动力学和甲烷生成浆液的pH滴定确定。与恒定的OLR控制策略相比,OLR和流出的COD分别翻了一番,分别为11.81 kgCOD.kgVSS(1).d(1)和一半,分别为253.4 mg.L(1)。同时,COD去除率,沼气产率和甲烷浓度分别同步提高到99.1%,312 Nml.gCOD(in)(1)和74%。通过使用沼气-pH策略,AnMBR形成了一个“ pH自调节三元缓冲系统”,该系统可以捕获二氧化碳并因此提供足够的缓冲能力。 (C)2015 Elsevier Ltd.保留所有权利。

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