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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Mathematical modelling and simulation of microbial carbonate precipitation: the urea hydrolysis reaction
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Mathematical modelling and simulation of microbial carbonate precipitation: the urea hydrolysis reaction

机译:微生物碳酸盐沉淀的数学建模与模拟:尿素水解反应

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摘要

Microbial carbonate precipitation is expected to play a major role in next-generation soil improvement technologies. To date, research into this method has relied on experimental and/or observational approaches. However, in order to understand the long-term effects of microbial carbonate precipitation and apply these to real environments, it is necessary to employ a predictive approach to determine the future state of the soil when using this soil improvement method. In this work, a mathematical model and numerical simulations based on the reaction-diffusion system for the microbial urea hydrolysis reaction are proposed. These techniques may be used to provide the spatiotemporal precipitation patterns of carbonates between soil particles and the particle surfaces. The simulation results revealed that the characteristic precipitation patterns depend on the diffusion of carbonates caused by the microbial urea hydrolysis reaction, and there was a significant shift in the amount of carbonate from a dissipated state into an equilibrium state.
机译:预计微生物碳酸盐沉淀将在下一代土壤改进技术中发挥重要作用。迄今为止,对该方法的研究依赖于实验和/或观察方法。然而,为了了解微生物碳酸盐沉淀的长期效果并将其应用于真实环境,有必要采用预测方法,以确定使用这种土壤改善方法时的未来土壤状态。在这项工作中,提出了一种基于用于微生物尿素水解反应的反应扩散系统的数学模型和数值模拟。这些技术可用于提供土壤颗粒与颗粒表面之间的碳酸盐的时空沉淀图案。模拟结果表明,特征沉淀图案取决于由微生物尿素水解反应引起的碳酸盐的扩散,并且在散析状态下碳酸盐量的显着变化成平衡状态。

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