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Operating feasibility of anaerobic whey treatment in a stirred sequencing batch reactor containing immobilized biomass

机译:含固定化生物质的搅拌顺序分批反应器中厌氧乳清处理的操作可行性

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The scope of this work was to evaluate the operating feasibility of anaerobic whey treatment in a stirred sequencing batch reactor (ASBR) containing biomass immobilized on inert support. Assays were performed using 8-hour cycles and agitation rate of 200 rpm at 30 +/- 1degreesC, for treating cheese whey containing 500 to 4,000 mgCOD/L, which corresponded to a volumetric organic load (VOL) of 0.81 to 5.7 gCOD/L.d. Stability and high organic matter removal of about 96% were achieved at effluent concentration below 160 mgCOD/L for non filtered samples. Operating stability of the reactor was shown to be strongly dependent on the alkalinity supplementing strategy during the assay, especially during the startup period, where NaHCO3 supplementation was approximately 20-30% of the chemical oxygen demand (mgNaHCO(3)/mgCOD). After startup, alkalinity supplementation could be reduced down to 10% maintaining efficiency and stability. Moreover, proper homogenization of the system through mechanical agitation was also shown to be indispensable, especially with increasing organic load. [References: 16]
机译:这项工作的范围是评估在固定在惰性载体上的生物质的搅拌顺序分批反应器(ASBR)中进行厌氧乳清处理的操作可行性。使用8小时的循环和在30 +/- 1摄氏度下以200 rpm的搅拌速率进行分析,以处理含500至4,000 mgCOD / L的干酪乳清,其对应于0.81至5.7 gCOD / L.d的体积有机负荷。对于未过滤的样品,当废水浓度低于160 mgCOD / L时,可获得约96%的稳定性和高有机物去除率。结果表明,反应器的运行稳定性在很大程度上取决于测定过程中的碱度补充策略,特别是在启动阶段,其中NaHCO3补充量约为化学需氧量的20-30%(mgNaHCO(3)/ mgCOD)。启动后,可将碱度补充剂降低至10%,以保持效率和稳定性。此外,通过机械搅拌使系统适当均匀化也被证明是必不可少的,特别是随着有机负荷的增加。 [参考:16]

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