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首页> 外文期刊>Physics and chemistry of minerals >Generation of hydrogen ions and hydrogen gas in quartz–water crushing experiments: an example of chemical processes in active faults
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Generation of hydrogen ions and hydrogen gas in quartz–water crushing experiments: an example of chemical processes in active faults

机译:石英水破碎实验中氢离子和氢气的产生:活动断层中化学过程的一个例子

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To understand the fundamental chemical processes of fluid–rock interaction during the pulverization of quartz grains in fault zones, quartz grains were crushed within pure water. The crushing experiments were performed batch style using a shaking apparatus. The crushing process induced a decrease in pH and an increase in hydrogen gas with increased shaking duration. The amount of hydrogen ions generated was five times larger than that of the hydrogen gas, which was consistent with the amount of Si radicals estimated from electron spin resonance measurements by Hochstrasser and Antonini (1972). This indicates that hydrogen gas was generated by consuming most of the Si radicals. The generation of hydrogen ions was most likely related to the presence of silanols on the newly formed mineral surface, implying a change of proton activities in the fluid after pulverization of quartz.
机译:为了了解断层区石英颗粒粉碎过程中流体与岩石相互作用的基本化学过程,将石英颗粒在纯水中破碎。使用振动装置以间歇方式进行破碎实验。压碎过程会导致pH值降低和氢气含量增加,并伴随振动时间的延长。产生的氢离子量是氢气的五倍,这与根据Hochstrasser和Antonini(1972)的电子自旋共振测量估计的Si自由基的量一致。这表明氢气是通过消耗大部分Si自由基而产生的。氢离子的产生最有可能与新形成的矿物表面上硅烷醇的存在有关,这意味着在石英粉碎后,流体中质子活度的变化。

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