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酸化作用下构造煤孔隙结构演化对瓦斯解吸的影响

Influences of Evolution of Pore Structures in Tectonic Coal under Acidization on Methane Desorption.

作者信息

Xie Honggao, Li Xijian, Xue Feng, Sui Hao, Zhao Jiajia, Cai Junjie, Feng Cong

机构信息

College of Mining, Guizhou University, Guiyang 550025, China.

Guizhou Engineering Center for Safe Mining Technology, Guiyang 550025, China.

出版信息

ACS Omega. 2023 Sep 7;8(37):34059-34076. doi: 10.1021/acsomega.3c05059. eCollection 2023 Sep 19.

Abstract

Experiments on corrosion reactions of pulverized coal with monomeric and polymeric (mixed) acid solutions reveal that monomeric acids are listed in a descending order as HF, HCl, and CHCOOH according to their corrosion effects on tectonic coal collected in Faer Coal Mine (Liupanshui City, Guizhou Province, China). In addition, the optimal mixing ratio of mixed acids is 6% HCl + 6% HF + 3% CHCOOH + 2% KCl. The mineral grains filled in pores in coal samples treated with mixed acid solutions are dissolved, so the porosity increases. The volumes of transition pores and mesopores are obviously affected by acidization, and some transition pores are transformed into mesopores and macropores to form dissolved pores. At the same time, inkbottle-shaped pores reduce, while slit pores or open pores increase. The coal samples after acidization show a higher aromatization degree and an increased relative content of oxygen-containing functional groups, with a generally lower hydroxyl content, so the methane (CH) adsorption capacity of coal declines, which promotes CH desorption. The control effect of pore structures after acidization reactions on CH desorption was revealed from perspectives of the diffusion coefficient (), adsorption volume (ω), average pore-throat ratio (), and average sinuosity (τ). That is, CH molecules in tectonic coal after acidization turn from Knudsen diffusion to transitional diffusion, the adsorption volume of CH molecules shrinks, the average pore-throat ratio decreases, and the average sinuosity reduces, which promotes CH desorption from tectonic coal.

摘要

对煤粉与单体酸和聚合酸(混合)溶液的腐蚀反应进行的实验表明,就对中国贵州省六盘水市发耳煤矿采集的构造煤的腐蚀作用而言,单体酸按腐蚀效果从大到小依次为氢氟酸、盐酸和醋酸。此外,混合酸的最佳混合比例为6%盐酸 + 6%氢氟酸 + 3%醋酸 + 2%氯化钾。用混合酸溶液处理后的煤样孔隙中填充的矿物颗粒被溶解,因此孔隙率增加。过渡孔和中孔的体积明显受酸化影响,一些过渡孔转变为中孔和大孔形成溶解孔。同时,墨水瓶状孔减少,而狭缝孔或开放孔增加。酸化后的煤样芳构化程度更高,含氧官能团的相对含量增加,羟基含量总体降低,因此煤对甲烷(CH₄)的吸附能力下降,促进了CH₄解吸。从扩散系数(D)、吸附量(ω)、平均孔喉比(δ)和平均迂曲度(τ)的角度揭示了酸化反应后孔隙结构对CH₄解吸的控制作用。即酸化后构造煤中的CH₄分子从克努森扩散转变为过渡扩散,CH₄分子的吸附量减小,平均孔喉比降低,平均迂曲度减小,这促进了构造煤中CH₄的解吸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1be/10515607/1ee22cfd2917/ao3c05059_0002.jpg

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