中国贵州省北部正安区块页岩气水力压裂回流/产出水的地球化学特征

Yunyan Ni , Song Liu , Linzhi Li , Bo Zhang , Limiao Yao , Jianli Sui , Jianping Chen
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引用次数: 0

摘要

中国贵州省拥有丰富的页岩气资源。近年来,毗邻四川盆地的贵州北部正安区块上奥陶统五峰组-下志留统龙马溪组页岩气勘探开发取得重要进展。由于页岩气分布区地质条件复杂,生态环境脆弱,页岩气开采可能存在严重的环境污染风险。因此,本文对正安区块 AY7-4 井页岩气压裂回流/产水进行了元素、氢、氧同位素分析。结果表明,AY7-4 井回流/产水中 K、Na、Ca、Mg 和 NH4+ 的含量很高,平均值分别为 118 mg/L、7616 mg/L、266 mg/L、47 mg/L 和 76 mg/L。Na、Ca 和 Mg 的含量与威远页岩气回流/产水相似,但低于长宁和涪陵页岩气回流/产水。NH4+含量与长宁相似,但远高于威远。Cl 的平均含量为 11605 mg/L,与威远相似,但低于长宁和涪陵。平均 Br 含量为 48 mg/L,略低于威远,约为长宁和涪陵的一半。相应地,AY7-4 井的 Br/Cl 值最低,反映出其 Br 含量相对较低。Li、B和Sr的平均含量分别为17 mg/L、10 mg/L和45 mg/L,与威远、长宁和涪陵页岩气田相似。Li和Sr的分布模式与Cl、Br和Na相似,但AY7-4井的B含量和B/Cl值最低。AY7-4井的回流/产水、水力压裂淡水和水力压裂注入液的Br和Cl含量之间以及δD和δ18O之间的线性关系表明,AY7-4井的回流/产水主要是低盐度注入压裂液与页岩层中保留的高盐度盐水的混合产物。随着时间的推移,氢、氧同位素组成逐渐变重,表明高盐地层盐水在回流水/产水中的比例在增加。AY7-4井回流/产水中的Cl、Br、Na和NH4+含量远高于允许排放值,存在潜在的环境污染风险,不能直接排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geochemical characteristics of shale gas hydraulic fracturing flowback/produced water in Zheng’an block, northern Guizhou Province, China

Guizhou Province of China is rich in shale gas resources. In recent years, important progress has been made in the exploration and development of shale gas in the Upper Ordovician Wufeng Formation-Lower Silurian Longmaxi Formation in Zheng'an block in northern Guizhou, adjacent to Sichuan Basin. Due to the complex geological conditions and fragile ecological environment in the shale gas distribution area, serious environmental pollution risks may exist in shale gas exploitation. Therefore, this paper conducted element, hydrogen and oxygen isotope analyses for shale gas fracturing flowback/produced water of Well AY7-4 in Zheng'an block. The results showed that the contents of K, Na, Ca, Mg and NH4+ in the flowback/produced water of Well AY7-4 were very high, with an average of 118 mg/L, 7616 mg/L, 266 mg/L, 47 mg/L and 76 mg/L, respectively. The content of Na, Ca and Mg is similar to that of shale gas flowback/produced water in Weiyuan, but lower than that in Changning and Fuling. NH4+ content was similar to that in Changning, but much higher than that in Weiyuan. The average Cl content was 11605 mg/L, which was similar to that in Weiyuan, but lower than that in Changning and Fuling. The average Br content is 48 mg/L, slightly lower than that of Weiyuan, and about half of that of Changning and Fuling. Correspondingly, the Br/Cl value of Well AY7-4 is the lowest, reflecting its relatively low Br content. The average content of Li, B and Sr is 17 mg/L, 10 mg/L and 45 mg/L, respectively, which is similar to that of the Weiyuan, Changning and Fuling shale gas fields. The distribution model of Li and Sr is similar to that of Cl, Br and Na, but the B content and B/Cl value of Well AY7-4 are the lowest. The linear relationship between Br and Cl contents and between δD and δ18O of flowback/produced water of Well AY7-4, freshwater used for hydraulic fracturing and hydraulic fracturing injected fluid indicates that flowback/produced water of Well AY7-4 is mainly the mixed product between low salinity injected fracturing fluid and high salinity brine retained in shale formation. The hydrogen and oxygen isotopic compositions gradually become heavier over time, indicating that the proportion of high salt end formation brine in flowback/produced water is increasing. The contents of Cl, Br, Na and NH4+ in the flowback/produced water of Well AY7-4 are far higher than the allowable discharge value, which is a potential environmental pollution risk and cannot be discharged directly.

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