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首页> 外文期刊>Geochemical Journal >Thermochemical reduction of magnesium sulfate by natural gas: Insights from an experimental study
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Thermochemical reduction of magnesium sulfate by natural gas: Insights from an experimental study

机译:天然气热化学还原硫酸镁的实验研究

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Thermochemical reduction of MgSO_4 by natural gas was carried out in the presence of water. Chemical and carbon isotopic variations were characterized with microcoulometry, gas chromatography, FT-IR, XRD and GC-C-IRMS. It was found that natural gas reacted with MgSO_4 to produce H_2S, CO_2, MgO and solid bitumen as the main products of thermochemical sulfate reduction (TSR). Gas dryness, gas souring index and the extent of reaction parameter positively correlated with temperature. The extent of acidulation and oxidation of natural gas were intensified as TSR proceeded. TSR has induced an evident carbon isotope fractionation in natural gas. Based on the experimental results, the reaction mechanism was tentatively investigated. It was found that the catalytic role of a metallic ion in the TSR process may be controlled by at least three factors: the charges and the radius of a metallic ion and the number of Lewis acid centers scatted on the surface of the sulfates. The last factor is largely determined by the amount of water in a TSR system. A small amount of water and metallic ions with more charges and short radius may effectively initiate the TSR.
机译:在水的存在下用天然气对MgSO 4进行热化学还原。化学和碳同位素变化通过微库仑法,气相色谱,FT-IR,XRD和GC-C-IRMS进行表征。发现天然气与MgSO_4反应生成H_2S,CO_2,MgO和固体沥青,这是热化学硫酸盐还原(TSR)的主要产物。气体干燥度,气体酸化指数和反应参数的程度与温度呈正相关。随着TSR的进行,天然气的酸化和氧化程度增强。 TSR诱导了天然气中明显的碳同位素分馏。根据实验结果,初步研究了反应机理。已经发现,金属离子在TSR过程中的催化作用可以通过至少三个因素来控制:金属离子的电荷和半径以及在硫酸盐表面上散布的路易斯酸中心的数量。最后一个因素很大程度上取决于TSR系统中的水量。少量带有更多电荷且半径较小的水和金属离子可能会有效引发TSR。

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