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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Novel antifoam for fermentation processes: Fluorocarbon-hydrocarbon hybrid unsymmetrical bolaform surfactant
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Novel antifoam for fermentation processes: Fluorocarbon-hydrocarbon hybrid unsymmetrical bolaform surfactant

机译:用于发酵过程的新型消泡剂:氟碳烃混合不对称硼酸盐表面活性剂

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As foaming appears as a problem in chemical and fermentation processes that inhibits reactor performance, the eminence of a novel fluorocarbon-hydrocarbon unsymmetrical bolaform (FHUB: OH(CH2)(11)N+(C2H4)(2)(CH2)(2)(CF2)(5)CF3 I-) surfactant as an antifoaming agent as well as a foam-reducing agent was investigated and compared with other surfactants and a commercial antifoaming agent. The surface elasticity of FHUB was determined as 4 mN/m, indicating its high potential on thinning of the foam film. The interactions between FHUB and the microoganism were investigated in a model fermentation process related with an enzyme production by recombinant Escherichia coli, in V = 3.0 dm(3) bioreactor systems with V-R = 1.65 dm3 working volume at air inlet rate of Q(o)/V-R = 0.5 dm(3) dm(-3) min(-1) and agitation rate of N = 500 min(-1) oxygen transfer conditions, at T = 37 degrees C, pH(o) = 7.2, and C-FHUB = 0 and 0.1 mM, in a glucose-based defined medium. As FHUB did not influence the metabolism, specific enzyme activity values obtained with and without FHUB were close to each other; however, because of the slight decrease in oxygen transfer coefficient, slightly lower volumetric enzyme activity and cell concentrations were obtained. However, when FHUB is compared with widely used silicon oil based Antifoam A, with the use of the FHUB, higher physical oxygen transfer coefficient (K(L)a) values are obtained. Moreover, as the amount required for the foam control is very low, minute changes in the working volume of the bioreactor were obtained indicating the high potential of the use of FHUB as an antifoaming agent as well as a foam-reducing agent.
机译:由于起泡在化学和发酵过程中成为一个问题,阻碍了反应器的性能,因此出现了一种新型的碳氟化合物-碳氢化合物不对称硼酸酯(FHUB:OH(CH2)(11)N +(C2H4)(2)(CH2)(2)(研究了CF2)(5)CF3 I-)表面活性剂作为消泡剂以及消泡剂,并将其与其他表面活性剂和市售消泡剂进行了比较。 FHUB的表面弹性确定为4mN / m,表明其在使泡沫膜变薄上具有高潜力。在V = 3.0 dm(3)生物反应器系统中,VR = 1.65 dm3工作体积,空气入口速率为Q(o)时,在与重组大肠杆菌生产酶有关的模型发酵过程中研究了FHUB与微生物之间的相互作用。 / VR = 0.5 dm(3)dm(-3)min(-1)和N = 500 min(-1)氧气转移条件的搅拌速度,在T = 37摄氏度,pH(o)= 7.2和C在基于葡萄糖的确定培养基中,-FHUB = 0和0.1 mM。由于FHUB不会影响代谢,因此在使用FHUB和不使用FHUB的情况下,获得的比酶活性值都彼此接近。但是,由于氧气的传输系数略有降低,因此获得的体积酶活性和细胞浓度略低。但是,当将FHUB与广泛使用的硅油基消泡剂A进行比较时,通过使用FHUB,可以获得更高的物理氧传递系数(K(L)a)值。此外,由于泡沫控制所需的量非常低,因此获得了生物反应器工作体积的微小变化,表明使用FHUB作为消泡剂和消泡剂的潜力很大。

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