首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Biomolecules in hydrothermal systems: Calculation of the standard molal thermodynamic properties and nucleotides at elevated of nucleic-acid bases, nucleosides, temperatures and pressures
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Biomolecules in hydrothermal systems: Calculation of the standard molal thermodynamic properties and nucleotides at elevated of nucleic-acid bases, nucleosides, temperatures and pressures

机译:水热系统中的生物分子:计算标准摩尔热力学性质和核酸碱基,核苷,温度和压力升高时的核苷酸

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Calculation of the thermodynamic properties of biomolecules at high temperatures and pressures is fundamental to understanding the biogeochernistry of hydrothermal systems. Ample evidence indicates that hyperthermophilic microbes interact chemically with their mineralogical environment in these systems. Nevertheless, little is known about the thermodynamic properties of the biomolecules involved in such processes. Recent advances in theoretical biogeochemistry make it possible to calculate these properties using the limited experimental data available in the literature, together with correlation and group additivity algorithms, reference model compounds, and the revised HKF equations of state. This approach permits calculation of the standard molal thermodynamic properties of the 120 common protonated and deprotonated nucleotides and their constituent nucleic-acid bases and nucleosides as a function of temperature and pressure. The requisite equations of state parameters can be calculated from experimental standard molal heat capacities, volumes, and compressibilities reported in the literature for nucleic-acid bases and nucleosides. Because no calorimetric or densimetric data are available for the nucleotides, experimental heats of reaction taken from the literature were used together with correlation and group additivity algorithms to generate provisional values of the corresponding equations of state parameters for the nucleotides. The thermodynamic properties and revised HKF equations of state parameters generated in the present study can be used to carry out comprehensive mass transfer and Gibbs energy calculations to describe and quantify the chemical interaction of minerals and microbes in hydrothermal systems. (c) 2006 Elsevier Inc. All rights reserved.
机译:生物分子在高温和高压下的热力学性质的计算是理解水热系统生物地理学的基础。大量证据表明,在这些系统中,嗜热微生物与其矿物环境发生化学反应。然而,关于这种过程中涉及的生物分子的热力学性质知之甚少。理论生物地球化学的最新进展使得可以使用文献中可用的有限实验数据,相关性和基团加和算法,参考模型化合物以及经过修订的HKF状态方程来计算这些性质。该方法允许计算120个常见的质子化和去质子化核苷酸及其组成的核酸碱基和核苷的标准摩尔热力学性质随温度和压力的变化。状态参数的必要方程式可以根据文献中针对核酸碱基和核苷的实验标准摩尔热容量,体积和可压缩性计算得出。由于没有针对核苷酸的量热或密度数据,因此将从文献中获取的实验反应热与相关性和组可加性算法一起使用,以生成核苷酸状态参数的相应方程式的临时值。本研究中产生的热力学性质和状态参数的修正HKF方程可用于进行全面的传质和吉布斯能量计算,以描述和量化水热系统中矿物和微生物的化学相互作用。 (c)2006 Elsevier Inc.保留所有权利。

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