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本文引用的文献

1
Jet aeration as alternative to overcome mass transfer limitation of stirred bioreactors.喷射曝气作为克服搅拌式生物反应器传质限制的替代方法。
Eng Life Sci. 2018 Jan 19;18(4):244-253. doi: 10.1002/elsc.201700169. eCollection 2018 Apr.
2
Oxygen transfer in a pressurized airlift bioreactor.加压气升式生物反应器中的氧传递
Bioprocess Biosyst Eng. 2015 Aug;38(8):1559-67. doi: 10.1007/s00449-015-1397-4. Epub 2015 Apr 23.
3
Bioreactor scale-up and oxygen transfer rate in microbial processes: an overview.微生物过程中的生物反应器放大与氧传递速率:综述
Biotechnol Adv. 2009 Mar-Apr;27(2):153-76. doi: 10.1016/j.biotechadv.2008.10.006. Epub 2008 Nov 12.
4
The ejector-loop fermenter: Description and performance of the apparatus.喷射环流发酵罐:装置的描述与性能
Biotechnol Bioeng. 1983 Dec;25(12):2889-904. doi: 10.1002/bit.260251207.
5
Cultivation of a filamentous bacterium in a deep jet fermentor.在深层喷射发酵罐中培养丝状细菌。
Biotechnol Bioeng. 1982 Aug;24(8):1905-9. doi: 10.1002/bit.260240819.
6
High cell density cultivation of recombinant yeasts and bacteria under non-pressurized and pressurized conditions in stirred tank bioreactors.在搅拌罐式生物反应器中,在非加压和加压条件下对重组酵母和细菌进行高细胞密度培养。
J Biotechnol. 2007 Oct 31;132(2):167-79. doi: 10.1016/j.jbiotec.2007.06.010. Epub 2007 Jun 23.
7
The oxygen mass transfer, carbon dioxide inhibition, heat removal, and the energy and cost efficiencies of high pressure fermentation.高压发酵中的氧气传质、二氧化碳抑制、热量移除以及能量和成本效率。
Adv Biochem Eng Biotechnol. 2005;92:77-99. doi: 10.1007/b98918.
8
Oxygen mass transfer enhancement via fermentor headspace pressurization.通过发酵罐顶部空间加压增强氧传质
Biotechnol Prog. 1992 May-Jun;8(3):244-51. doi: 10.1021/bp00015a010.

喷嘴操作对喷射曝气环流反应器中传质的影响。与曝气搅拌釜式反应器的特性及比较。

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

作者信息

Weber Sebastian, Schaepe Sebastian, Freyer Stephan, Kopf Michael-Helmut, Dietzsch Christian

机构信息

Chemical and Process Engineering - Ind. Biotechnology BASF SE Ludwigshafen Germany.

Department of Biochemistry/Biotechnology Martin-Luther-University Halle-Wittenberg Halle/Saale Germany.

出版信息

Eng Life Sci. 2018 Apr 30;18(8):579-588. doi: 10.1002/elsc.201800008. eCollection 2018 Aug.

DOI:10.1002/elsc.201800008
PMID:32624938
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6999319/
Abstract

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 ka [h] and the energetic oxygen transfer efficiency E [kgO kW h]. 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 ka 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 h) 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.

摘要

传质对生产力的影响可能成为大宗化学品发酵生产中的一个关键因素。对于需氧程度高的生物过程,氧传递速率(OTR)和生产力是相互关联的。可实现的时空产率通常与相应生物反应器的传质性能相关。从体积氧传质系数ka [h]和能量氧传递效率E [kgO / kW h]的角度讨论了喷射曝气环流反应器的氧传质能力。将喷射曝气环流反应器(JLR)与经常使用的曝气搅拌釜式反应器进行了比较。与曝气搅拌釜式反应器相比,在喷射曝气反应器中,混合区的局部功率密度较高,从而允许更高的传质速率。当两个反应器以相同的体积功率输入和曝气速率运行时,JLR的局部ka值可能高出1.5倍。即使向喷嘴供应加压气体,JLR也能保持高分散效率。对于增加的氧气需求(高于120 mmol / L h),与使用Rushton涡轮机运行的曝气搅拌釜式反应器相比,JLR的能量氧传递效率提高了100%。