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超临界水作用下富有机质页岩热解及转化特性的实验研究

Experimental Investigation on the Pyrolysis and Conversion Characteristics of Organic-Rich Shale by Supercritical Water.

作者信息

Yao Chuanjin, Meng Fanyi, Zhang Hexing, Di Tianyuan, Zhou Yiran, Du Xinge

机构信息

Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China)), Ministry of Education, Qingdao 266580, P. R. China.

School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, P. R. China.

出版信息

ACS Omega. 2023 Dec 12;8(51):49046-49056. doi: 10.1021/acsomega.3c06654. eCollection 2023 Dec 26.

Abstract

Organic-rich shale oil reservoirs with low-medium maturity have attracted increasing attention because of their enormous oil and gas potential. In this work, a series of experiments on pyrolysis of the particle and core samples were carried out in a self-made supercritical water pyrolysis apparatus to evaluate the feasibility and benefits of supercritical water in promoting the transformation efficiency and oil yield of the low-medium maturity organic-rich shale. Core samples had a mass loss of 8.4% under supercritical water pyrolysis, and many microcracks were generated, which increased the pyrolysis efficiency substantially. The oil yield of shale pyrolysis could reach 72.40% under supercritical water conditions at 23 MPa and 400 °C, which was 53.02% higher than that under anhydrous conditions. In supercritical water conditions, oxygen-containing compounds are less abundant than in anhydrous conditions, suggesting that supercritical water can inhibit their formation. Also, supercritical water conditions produced higher yields for light fraction, medium fraction, and heavy fraction shale oil than those under anhydrous conditions. These results indicate that supercritical water pyrolysis is feasible and has excellent advantages for low-medium maturity organic-rich shale.

摘要

中低成熟度的富含有机质页岩油藏因其巨大的油气潜力而受到越来越多的关注。在这项工作中,在自制的超临界水热解装置中对颗粒和岩心样品进行了一系列热解实验,以评估超临界水在提高中低成熟度富含有机质页岩的转化效率和产油率方面的可行性和优势。岩心样品在超临界水热解条件下质量损失为8.4%,并产生了许多微裂缝,这大大提高了热解效率。在23MPa和400℃的超临界水条件下,页岩热解的产油率可达72.40%,比无水条件下高出53.02%。在超临界水条件下,含氧化合物比无水条件下少,这表明超临界水可以抑制它们的形成。此外,超临界水条件下轻质馏分、中质馏分和重质馏分页岩油的产率均高于无水条件下。这些结果表明,超临界水热解对于中低成熟度富含有机质页岩是可行的,并且具有优异的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6ad/10753720/8d6c50e74d0d/ao3c06654_0001.jpg

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