Pinho Samantha Cristina, Ratusznei Suzana Maria, Rodrigues José Alberto Domingues, Foresti Eugenio, Zaiat Marcelo
Departamento de Hidráulica e Saneamento, Escola de Engenharia de São Carlos, Universidade de São Paulo (USP), Av. Trabalhador São-Carlense 400, CEP 13566-590, São Carlos, Sao Paulo, Brazil.
Water Res. 2004 Nov;38(19):4117-24. doi: 10.1016/j.watres.2004.08.015.
This work reports on the influence of the agitation rate on the organic matter degradation in an anaerobic sequencing batch reactor, containing biomass immobilized on 3 cm cubic polyurethane matrices, stirred mechanically and fed with partially soluble soymilk substrate with mean chemical oxygen demand (COD) of 974+/-70 mg l(-1). Hydrodynamic studies informed on the homogenization time under agitagion rates from 500 to 1100 rpm provided by three propeller impellers. It occurred very quickly compared to the total cycle time. The results showed that agitation provided good mixing and improved the overall organic matter consumption rates. A modified first-order kinetic model represented adequately the data in the entire range of agitation rate. The apparent first-order kinetic constant for suspended COD rose approximately 360% when the agitation rate was changed from 500 to 900 rpm, whereas the apparent first-order kinetic constant for soluble COD did not vary significantly.
本研究报告了搅拌速率对厌氧序批式反应器中有机物降解的影响。该反应器中生物质固定在3立方厘米的聚氨酯基质上,通过机械搅拌,并以平均化学需氧量(COD)为974±70 mg l(-1)的部分可溶豆浆底物进料。流体动力学研究表明,由三个螺旋桨叶轮提供的500至1100 rpm搅拌速率下的均质化时间与总循环时间相比非常短。结果表明,搅拌提供了良好的混合效果,并提高了整体有机物消耗速率。一个修正的一级动力学模型充分代表了整个搅拌速率范围内的数据。当搅拌速率从500 rpm变为900 rpm时,悬浮COD的表观一级动力学常数上升了约360%,而可溶性COD的表观一级动力学常数变化不显著。