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Gas holdup and oxygen transfer in an aerobic granule-based sequencing batch reactor

机译:基于好氧颗粒的顺序分批反应器中的气体滞留和氧气转移

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摘要

Aerobic granules with mean radius of 0.25 mm were cultivated in a sequencing batch reactor (SBR) fed with soybean-processing wastewater,and the gas holdup and oxygen transfer were investigated for this granule-based reactor.At the discontinuous point in the variation of gas holdup with superficial gas velocity at 1.73 cm/s,bubble flow regime was changed into churn-turbulent flow one.Gas holdup of the granule-based SBR was greater than that of a floe-based SBR,indicating that higher oxygen transfer efficiency could be achieved in the former.The volumetric gas-liquid oxygen transfer coefficient increased with increasing superficial gas velocity,but declined with increasing solid fraction.Observed Thiele modulus and effectiveness factor were effectively used to describe the efficiency of oxygen diffusion in the granules and the oxygen utilization rate of the reactor.With the porous pellet model,the oxygen concentration profiles and effectiveness factor for aerobic granules with different sizes were predicted.Effectiveness factor of 0.98 for the granules with radius of 0.25 mm suggests that the oxygen diffusion limitation could be neglected.For the granules with radius of 1.00 mm,a severe oxygen limitation occurred,as indicated by an effectiveness factor of 0.55.
机译:在装有大豆加工废水的定序分批反应器(SBR)中培养平均半径为0.25 mm的好氧颗粒,并研究该颗粒型反应器的气体滞留率和氧转移。在气体变化的不连续点表观气体流速为1.73 cm / s时,气泡流态转换为搅动湍流。颗粒型SBR的气体保持率大于絮凝型SBR的气体保持率,表明可以提高氧气的转移效率。气液氧的体积转移系数随表观气体速度的增加而增加,但随固相分数的增加而减小,有效地利用实测Thiele模量和有效因子来描述颗粒中氧的扩散效率和氧的利用多孔颗粒模型,不同浓度好氧颗粒的氧浓度分布和有效因子半径为0.25 mm的颗粒的有效因子为0.98,表明可以忽略氧扩散限制。半径为1.00 mm的颗粒的严重氧限制发生,有效因子为0.55。

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