--> Diffusion Process, Diffusion Capacity and Controlling Factors of Shale Gas in the Longmaxi Formation, Southeast of Sichuan Basin, China
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Diffusion Process, Diffusion Capacity and Controlling Factors of Previous HitShaleNext Hit Previous HitGasNext Hit in the Longmaxi Formation, Southeast of Sichuan Basin, China

Abstract

There are multiple sets of marine organic rich Previous HitshaleNext Hit in Sichuan basin and its peripheral regions. However, the enrichment degree of Previous HitshaleNext Hit Previous HitgasNext Hit between in-basin and out-basin has an obvious difference, so it is of great importance to study the Previous HitshaleNext Hit Previous HitgasNext Hit’s preservation conditions and diffusion capacity (DC). To make a deep research in the diffusion process, DC and controlling factors of Previous HitshaleNext Hit Previous HitgasNext Hit, we selected the 25 black mud Previous HitshaleNext Hit core samples of the YQ1 in the Longmaxi formation in the southeast of Sichuan basin, conducted the closed desorption experiments to obtain Previous HitshaleNext Hit Previous HitgasNext Hit content and made the Previous HitgasNext Hit components analysis, finally quantitatively calculated the DC of Previous HitshaleNext Hit Previous HitgasNext Hit. Additionally, total organic carbon (TOC), XRD, SEM and mercury penetration tests were also carried out on the 25 core samples.

The DC of Previous HitshaleNext Hit Previous HitgasNext Hit is influenced by many factors. From the Previous HitshaleNext Hit Previous HitgasNext Hit desorption curves, the diffusion rate is very low at 50 centigrade, but the diffusion rate turns very fast first and then decreases lower slightly when at 98 centigrade, indicating that temperature is the main controlling factor of Previous HitshaleNext Hit Previous HitgasNext Hit DC, the higher the temperature is, the faster the DC is. Through calculating the DC of each sample, there are obvious differences in DC value between the upper and lower section of Longmaxi Formation. The DC is lower than 10 in the lower section, but higher than 10 in the upper section. The methane content in the Previous HitshaleNext Hit Previous HitgasNext Hit is higher in the lower section, with DC increasing, the methane content is reducing, but the nitrogen content is increasing, which seems that the stronger the Previous HitshaleNext Hit’s self-sealing capacity is, the lower the Previous HitshaleNext Hit Previous HitgasNext Hit’s DC is. The DC of Previous HitshaleNext Hit Previous HitgasNext Hit is negatively related to TOC, it indicates that the organic matter (OM) can control Previous HitshaleNext Hit Previous HitgasNext Hit’s DC, which may be associated with the high specific surface area and the strong adsorption ability of OM, additionally OM develops a large amount of organic pores, enhancing the adsorption capacity of methane. Mineral compositions also have a certain effect on the DC of Previous HitshaleNext Hit Previous HitgasNext Hit. The quartz and pyrite content exhibit negative correlations with DC, due to that quartz and pyrite have positive coupling relationships with OM. The content of feldspar is positively related to the DC, mainly because that the feldspar dissolution pores are relatively developed in the Previous HitshaleNext Hit. In a word, the Previous HitshaleNext Hit Previous HitgasNext Hit’s DC is related to the temperature and pressure, the Previous HitshaleNext Hit’s self-sealing capacity and Previous HitshaleTop’s rock properties.