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Impact of nozzle operation on mass transfer in jet aerated loop reactors. Characterization and comparison to an aerated stirred tank reactor

机译:喷嘴运行对喷射气流环反应器中传质的影响。 对充气搅拌釜反应器的表征和比较

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The impact of mass transfer on productivity can become a crucial aspect in the fermentative production of bulk chemicals. For highly aerobic bioprocesses the oxygen transfer rate (OTR) and productivity are coupled. The achievable space time yields can often be correlated to the mass transfer performance of the respective bioreactor. The oxygen mass transfer capability of a jet aerated loop reactor is discussed in terms of the volumetric oxygen mass transfer coefficient k(L)a [h(-1)] and the energetic oxygen transfer efficiency E [kgO(2) kW(-1) h(-1)]. The jet aerated loop reactor (JLR) is compared to the frequently deployed aerated stirred tank reactor. In jet aerated reactors high local power densities in the mixing zone allow higher mass transfer rates, compared to aerated stirred tank reactors. When both reactors are operated at identical volumetric power input and aeration rates, local k(L)a values up to 1.5 times higher are possible with the JLR. High dispersion efficiencies in the JLR can be maintained even if the nozzle is supplied with pressurized gas. For increased oxygen demands (above 120 mmol L-1 h(-1)) improved energetic oxygen transfer efficiencies of up to 100% were found for a JLR compared to an aerated stirred tank reactor operating with Rushton turbines.
机译:大规模转移对生产率的影响可能成为散装化学品发酵生产中的关键方面。对于高氧性生物处理,氧传输速率(OTR)和生产率耦合。可实现的空间产量通常可以与各自生物反应器的传质性能相关。在体积氧传质系数k(1)A [H(-1)]和能量氧转印效率E [KGO(2)KW(-1)方面讨论了喷射曝气环形反应器的氧气传递能力。 )H(-1)]。将喷射曝气环形反应器(JLR)与经常展开的气化搅拌釜反应器进行比较。在喷气机膨胀的反应器中,与充气搅拌釜反应器相比,混合区中的高局部功率密度允许较高的传质速率。当两个电抗器以相同的容积功率输入和通气速率运行时,jlr可以局部k(l)k(l)高达1.5倍的值。即使将喷嘴提供加压气体,也可以保持JLR中的高分散效率。对于增加的氧气需求(120mmol L-1 H(-1)),与使用Rushton涡轮机操作的充气搅拌的罐式反应器相比,针对JLR的增强的能量氧气转移效率最高可达100%。

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