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A laboratory pyrolysis study to investigate the effect of water pressure on hydrocarbon generation and maturation of coals in geological basins

机译:实验室热解研究,研究水压对地质盆地中煤的碳氢化合物生成和成熟的影响

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This study investigates the effect of water pressure on hydrocarbon generation and maturation of coals. Using a 25ml Hastalloy pressure vessel, two high-volatile coals (Longannet, UK 0.75% Ro, and perhydrous Svalbard (Spitsbergen), Norway 0.68% Ro) were pyrolysed under non-hydrous, hydrous at 175bar pressure, and high water pressure hydrous (500bar and 900bar) conditions at 350°C for 24h. The bitumen yield obtained during pyrolysis, together with the Rock-Eval S _2, hydrogen index (HI) and vitrinite reflectance (VR) results from the pyrolysed coal residues indicated that water under relatively low pressure (175bar) hydrous conditions promoted hydrocarbon generation and coal maturation in relation to non-hydrous conditions, consistent with previous work. However, under high water pressure (500 and 900bar) conditions, a combination of the hydrocarbon gas (C _1-C _4) and bitumen yields, Rock-Eval S _2, HI, VR and solid state 13C NMR results demonstrated that the changes in reaction pathways occurring with increasing pressure resulted in both hydrocarbon generation and maturation being retarded. The observed effect of pressure implies that for Type III source rocks, hydrocarbon generation will be retarded in high pressure geological basins, with gas yields being proportionally reduced more than bitumen yields. Source rock maturation (or coalification) is also retarded, with the decreases in vitrinite reflectance and carbon aromaticity being relatively small but significant in terms of explaining retardation in geological basins.
机译:这项研究调查了水压对碳氢化合物生成和煤成熟的影响。使用25ml Hastalloy压力容器,在无水,175bar压力的含水和高水压含水的条件下,将两种高挥发分煤(英国Longannet,0.75%Ro和过水Svalbard(Spitsbergen),挪威0.68%Ro)热解。 500bar和900bar)条件,在350°C下放置24h。热解煤渣的热解过程中获得的沥青收率,Rock-Eval S _2,氢指数(HI)和镜质体反射率(VR)的结果表明,在相对低压(175bar)的含水条件下,水促进了碳氢化合物的产生和煤与无水条件相关的成熟度,与以前的工作一致。但是,在高水压(500和900bar)条件下,烃气(C _1-C _4)和沥青产量,Rock-Eval S _2,HI,VR和固态13C NMR的结果表明,随着压力增加而发生的反应路径导致碳氢化合物的生成和成熟受到阻碍。观测到的压力影响表明,对于III型烃源岩,在高压地质盆地中,碳氢化合物的生成将受到阻碍,天然气的产量比沥青的产量成比例地降低。烃源岩的成熟(或煤化)也受到阻碍,镜质体反射率的降低和碳芳烃的降低相对较小,但在解释地质盆地中的阻滞方面意义重大。

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