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Thermodynamic properties of microorganisms: determination and analysis of enthalpy entropy and Gibbs free energy of biomass cells and colonies of 32 microorganism species

机译:微生物的热力学性质:测定和分析32种微生物的生物质细胞和菌落的焓熵和吉布斯自由能

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摘要

Thermodynamic analysis is an important part of chemical engineering. However, its application in biotechnology has been hampered by lack of data on thermodynamic properties of microorganism biomass. In this paper, a review was made of methods for estimation of thermodynamic properties of biomass, including standard enthalpy of combustion hC⁰, enthalpy of formation hf⁰, entropy s⁰, and Gibbs free energy of formation gf⁰. These parameters were calculated on molar and mass specific basis for 32 microorganism species, including 14 bacteria, 7 yeast and 11 algae species. It was found that hf⁰, s⁰, gf are, respectively, similar for all the analyzed species, due to the fact that all living organisms have a common ancestor and thus a similar chemical composition. Furthermore, all the analyzed microorganisms have negative hf, originating from partial oxidation of all other elements by oxygen and nitrogen. A brief review was given of microorganism endogenous and growth metabolic rates. Finally, based on the determined thermodynamic properties, entropy of individual E. coli and Pseudomonas cells were determined and entropy of a Pseudomonas colony during its lifespan was calculated and analyzed. Three periods can be distinguished in the existence of a microorganism colony: (a) accumulation period when cell number, mass and entropy increase, (b) steady state period when they are approximately constant, and (c) decumulation period when they decrease.
机译:热力学分析是化学工程的重要组成部分。然而,由于缺乏关于微生物生物质的热力学性质的数据,其在生物技术中的应用受到阻碍。本文对生物质热力学性质的估算方法进行了综述,包括标准燃烧焓hC formation,形成焓hf⁰,熵s⁰和形成gf⁰吉布斯自由能。这些参数是根据摩尔和质量比对32种微生物物种(包括14种细菌,7种酵母和11种藻类)计算的。发现所有被分析物种的hf⁰,s⁰,gf 都相似,这是由于所有活生物都具有共同的祖先,因此化学成分相似。此外,所有分析过的微生物均具有负 h f ,其原因是所有其他元素被氧和氮部分氧化。简要回顾了微生物的内源性和生长代谢率。最后,基于确定的热力学性质,单个E的熵。确定大肠杆菌和假单胞菌细胞,计算其寿命期间的熵。微生物菌落的存在可以分为三个时期:(a)细胞数,质量和熵增加的积累时期,(b)近似恒定的稳态时期,和(c)减少的减少时期。

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