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川东北宣汉地区海相“新型杂卤石钾盐矿”的发现、突破与前景
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作者 张永生 邢恩袁 +17 位作者 郑绵平 苏克露 桂宝玲 仲佳爱 左璠璠 商雯君 牛新生 苏奎 王宁军 慎国强 唐兵 彭渊 纪德宝 张兵 盛德波 刘铸 王建波 葛星 《地质学报》 EI CAS CSCD 北大核心 2024年第10期2823-2846,共24页
全球探明钾盐资源主体为古代海相可溶性固体钾盐矿床(氯化钾、光卤石),仅少量来自现代盐湖卤水钾矿。与国外不同的是,目前我国探明钾盐资源主体为现代陆相盐湖钾矿,古代海相可溶性固体钾盐找矿40余年,未获突破。四川盆地是我国主要大型... 全球探明钾盐资源主体为古代海相可溶性固体钾盐矿床(氯化钾、光卤石),仅少量来自现代盐湖卤水钾矿。与国外不同的是,目前我国探明钾盐资源主体为现代陆相盐湖钾矿,古代海相可溶性固体钾盐找矿40余年,未获突破。四川盆地是我国主要大型海相成钾盆地之一,前人在中—下三叠统发现大量与硬石膏和白云石共伴生或互层的杂卤石,但绝大部分埋深超过2000 m,目前尚难以开发利用。2017年以来,笔者通过对四川盆地东北部宣汉盐盆普光地区卤水探井(恒成2、3井)岩芯复查,发现杂卤石主要与石盐共伴生,大量破碎的杂卤石碎屑颗粒分布于石盐基质中,KCl含量达边界工业品位以上,不同于钾石盐和光卤石,亦不同于前人发现的与硬石膏和白云石共伴生或互层的杂卤石(石膏型杂卤石),将之命名为“新型杂卤石钾盐矿”。小试和中试结果表明,该“新型杂卤石钾盐矿”可以采用对接井注水溶采,是能够得到规模化开发利用的“活矿”,是一种全新的硫酸盐+氯化物复合型海相可溶性固体钾盐矿床新类型。通过成钾条件、成矿规律综合研究,笔者提出了新型杂卤石钾盐矿“双控复合成矿”理论新认识、建立了“三高、两低、一大”综合测井识别新模型,创新理论技术指导设计部署“钾锂兼探”基准井——川宣地1井,探获厚29.46 m、氯化钾(KCl)平均含量12.03%(最高20.5%)的“新型杂卤石钾盐矿”厚层高品位工业矿层。与此同时,采用岩芯样品实测数据和测井解释数据拟合的方法,建立矿石K含量和密度参数的测井定量预测模型,结合“气钾兼探”,利用33口钻井数据,依据古代固体盐类勘查规范(2020),运用“几何法”,初步估算“新型杂卤石钾盐矿”氯化钾(KCl)资源规模:推断资源量2.45亿t(超大型)、潜在资源4.65亿t,合计7.1亿t,奠定了川东北达州市宣汉地区形成中国首个亿吨级海相钾盐基地的资源基础,取得了我国海相可溶性固体钾盐找矿的重大突破。 展开更多
关键词 新型杂卤石钾盐矿 海相 固体钾盐矿床新类型 中—下三叠统 川东北普光地区
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Formation mechanism of reservoir oolitic dolomite in Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China 被引量:5
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作者 陈培元 谭秀成 +5 位作者 刘宏 马腾 罗冰 姜兴福 于洋 靳秀菊 《Journal of Central South University》 SCIE EI CAS 2014年第8期3263-3274,共12页
A series of marine natural gas fields were recently discovered in oolitic dolomites of the Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China. The mechanism forming these reservoir dolom... A series of marine natural gas fields were recently discovered in oolitic dolomites of the Lower Triassic Feixianguan formation, northeastern Sichuan Basin, southwest China. The mechanism forming these reservoir dolomites is debatable, limiting the ability to characterize these reservoir successfully. Based on the investigation of the representative Dukouhe, Luojiazhai, and Puguang areas, this issue was addressed by examining the distribution, petrology, and geochemistry of the dolomites, the most comprehensive study to date was provided. Dolomitization occurred at a very early stage of diagenesis, as shown by the petrological features of the rock fabric. Vadose silt, which is composed primarily of dolomitic clasts, is found in the primary and secondary pores of the oolitic dolomite. This indicates that the overlying strata were subjected to dolomitization when the Feixianguan formation was located in the vadose zone. Therefore, it may be inferred that the dolomitization which occurred before the formation was exposed to meteoric conditions. The spatial distribution and geochemical characteristics of the dolomite indicate that dolomitization occurred as a result of seepage reflux. The degree of dolomitization decreases with increasing distance from the evaporative lagoon. Furthermore, the type and porosity of the dolomite vary in different zones of the upward-shoaling sequence, with the porosity gradually decreasing from the highest layer to the lowest layer. This reflects a close relationship between dolomitization and seawater evaporation during the formation of the dolomite. Geochemical analysis provided further evidence for the relationship between the dolomitization fluid and the coeval seawater. The 87Sr/86Sr and 813C isotopes, as well as the abundances of trace elements, Fe and Mn, indicate that seawater concentrated by evaporation acted as the dolomitization fluid. These results also show that dolomitization most likely occurred in a semi-closed diagenetic environment. Therefore, the main mechanism of oolitic dolomite formation is seepage reflux, which occurred at an early stage of diagenesis. 展开更多
关键词 Lower Triassic Feixianguan formation early exposure seepage reflux DOLOMITIZATION Sichuan Basin northeastern Sichuan
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