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Modelling Biochemical Processes in Rocks: Analysis and exploratory simulations of competition of different processes important for ferrous mineral oxidation and oxygen depletion

机译:岩石中的生化过程建模:对黑色矿物氧化和氧气耗尽的不同工艺竞争的分析与探索性模拟

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There are several oxygen consuming processes occurring in deep subsurface fractured rocks. The importance of each process depends on the prevailing conditions and what function it has in the overall oxygen scavenging process. In the present work, some of these processes are studied. The aim is to build a frame of maximum rates for each parallel process. Therefore, several rate-limiting factors are not included. Rate expressions were obtained from the literature and compared for different cases to address under which conditions each process is important. Some of the processes may be considered parallel and independent while others occur in series. The main reactions accounted for are abiotic and biotic pyrite and ferrous iron oxidation and the non-oxidative dissolution of matrix ferrous minerals. In addition, transport processes of oxygen and other substrates within the rock matrix are considered. The main conclusions are that initially, when the diffusion resistance in the matrix is nonexistent or small, reaction kinetics are important. However, in a longer time perspective, diffusion processes limit the oxygen scavenging process.
机译:深层地下骨折岩石中存在几种氧气消耗过程。每个过程的重要性取决于普遍的条件以及整个氧气清除过程中的功能。在目前的工作中,研究了一些这些过程。目的是为每个并行过程构建最大速率的帧。因此,不包括若干速率限制因素。从文献中获得率表达,并比较不同案例,以解决每个过程的条件重要性。一些过程可以被视为并行和独立,而其他过程则串联出现。主要反应占是非生物和生物硫铁矿和铁氧化的亚铁氧化和基质金属矿物的非氧化溶解。另外,考虑岩石基质内的氧气和其他基板的运输过程。主要结论是最初,当基质中的扩散抗性不存在或小时,反应动力学很重要。然而,在更长的时间的角度下,扩散过程限制了氧气清除过程。

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