China Geological Environment Monitoring Institute, China Geological Disaster Prevention Engineering Industry AssociationHost
2021 Vol. 32, No. 4
Article Contents

LI Huaming, CAI Lejun, CHEN Nannan, HUANG Ping, LI Fangtao. Experimental analysis on dissolution characteristics of carbonate rocks in Liaoshan tunnel of Emei−Hanyuan expressway in Sichuan Province[J]. The Chinese Journal of Geological Hazard and Control, 2021, 32(4): 73-84. doi: 10.16031/j.cnki.issn.1003-8035.2021.04-10
Citation: LI Huaming, CAI Lejun, CHEN Nannan, HUANG Ping, LI Fangtao. Experimental analysis on dissolution characteristics of carbonate rocks in Liaoshan tunnel of Emei−Hanyuan expressway in Sichuan Province[J]. The Chinese Journal of Geological Hazard and Control, 2021, 32(4): 73-84. doi: 10.16031/j.cnki.issn.1003-8035.2021.04-10

Experimental analysis on dissolution characteristics of carbonate rocks in Liaoshan tunnel of Emei−Hanyuan expressway in Sichuan Province

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  • The Liaoshan tunnel is one of the controlling projects of the E-han expressway, the karst geological conditions in the tunnel site area are complex. In order to deeply study the characteristics of carbonate dissolution in the field, this paper takes the typical dolomitic limestone, limestone and calcareous mudstone samples of the Mesozoic Triassic Middle Leikoupo Formation in the tunnel site area as the research object to carry out the static corrosion simulation experiment. The characteristics of dissolution rate of carbonate rock and related factors are analyzed quantitatively, and the changes of microstructure in the process of sample dissolution under SEM are discussed qualitatively. The results show that: (1) Under the experimental conditions (20 ℃, 1 atm, acetic acid solution, pH≈5.30, static dissolution), the dissolution rate of limestone in Leikoupo Formation is about 3.48 mm/a, that of dolomitic limestone is about 1.57 mm/a, and that of calcareous mudstone is about 0.90 mm/a. (2) The dissolution of carbonate rocks is controlled by the mineral composition and dissolution environment. Under the same dissolution environment, the dissolution rate of carbonate rocks is positively correlated with the content of calcite, and negatively correlated with the content of dolomite and the pH value of the dissolution medium, and generally characterized by limestone>dolomitic limestone>calcareous mudstone. (3) Under the environment of organic acid and inorganic acid, the dissolution rate of limestone has little difference and the general trend is the same, while the neutral salt solution and alkaline environment have different degrees of inhibition on the dissolution of limestone. (4) Carbonate rock has the characteristic of preferential selective dissolution along mineral composition and rock microstructure. The difference of the main mineral content also makes the micro dissolution process of the carbonate rock different.

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  • [1] 金新锋. 宜万铁路沿线岩溶发育规律及其对隧道工程的影响[D]. 中国地质科学院, 2007.

    Google Scholar

    JIN Xinfeng. Regularity of karst development along the Yichang-Wanzhou railway and its influence on tunnel construction[D]. Chinese Academy of Geological Sciences, 2007. (in Chinese with English abstract)

    Google Scholar

    [2] 罗平, 张静, 刘伟, 等. 中国海相碳酸盐岩油气储层基本特征[J]. 地学前缘,2008,15(1):36 − 50. [LUO Ping, ZHANG Jing, LIU Wei, et al. Characteristics of marine carbonate hydrocarbon reservoirs in China[J]. Earth Science Frontiers,2008,15(1):36 − 50. (in Chinese with English abstract) doi: 10.3321/j.issn:1005-2321.2008.01.004

    CrossRef Google Scholar

    [3] 佘敏, 寿建峰, 沈安江, 等. 从表生到深埋藏环境下有机酸对碳酸盐岩溶蚀的试验模拟[J]. 地球化学,2014,43(3):276 − 286. [SHE Min, SHOU Jianfeng, SHEN Anjiang et al. Experimental simulation of dissolution for carbonate rocks in organic acid under the conditions from epigensis to deep burial environments[J]. Geochimica,2014,43(3):276 − 286. (in Chinese with English abstract)

    Google Scholar

    [4] 张正红, 乔占峰, 潘文庆, 等. 碳酸盐岩礁滩储层的形成和发育规律—溶蚀模拟试验[J]. 海相油气地质,2017,22(3):57 − 66. [ZHANG Zhenghong, QIAO Zhanfeng, PAN Wenqing et al. Formation and development of reef-shoal reservoir: Extending knowledge from the dissolution experiment[J]. Marine Origin Petroleum Geology,2017,22(3):57 − 66. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-9854.2017.03.007

    CrossRef Google Scholar

    [5] 李苍松, 吴丰收, 赵岩杰, 等. 基于溶蚀试验的微观岩溶形态分形特征和水化学动力学特征研究[J]. 现代隧道技术,2018,55(2):110 − 120. [LI Cangsong, WU Fengshou, ZHAO Yanjie, et al. Fractal and hydro-chemical characteristics of microscopic karst morphology based on dissolution experiments[J]. Modern Tunnelling Technology,2018,55(2):110 − 120. (in Chinese with English abstract)

    Google Scholar

    [6] 聂跃平. 黔南地区碳酸盐岩的溶蚀试验初探[J]. 中国岩溶,1984(1):41 − 47. [NIE Yueping. A preliminary study and test on the dissolution of carbonate rocks in south Guizhou Province[J]. Carsologica Sinica,1984(1):41 − 47. (in Chinese with English abstract)

    Google Scholar

    [7] 韩宝平. 雾迷山喀斯特微观机理的研究[J]. 中国矿业学院学报,1986(4):80 − 84. [HAN Baoping. Study on micro-corrosion mechanism of sinian system Wuminshan formation[J]. Journal of China University of Mining & Technology,1986(4):80 − 84. (in Chinese with English abstract)

    Google Scholar

    [8] 刘琦, 卢耀如, 张凤娥, 等. 动水压力作用下碳酸盐岩溶蚀作用模拟试验研究[J]. 岩土力学,2010,31(增刊1):96 − 101. [LIU Qi, LU Yaoru, ZHANG Fenge, et al. Study of simulation experiment for carbonate rocks dissolution under hydrodynamic pressure[J]. Rock and Soil Mechanics,2010,31(Sup1):96 − 101. (in Chinese with English abstract)

    Google Scholar

    [9] 张良喜, 赵其华, 胡相波, 等. 某地区白云岩室内溶蚀试验及微观溶蚀机理研究[J]. 工程地质学报,2012,20(4):576 − 584. [ZHANG Liangxi, ZHAO Qihua, HU Xiangbo, et al. Laboratory dissolution test on dolomite and its micro-dissolution mechanism[J]. Journal of Engineering Geology,2012,20(4):576 − 584. (in Chinese with English abstract) doi: 10.3969/j.issn.1004-9665.2012.04.014

    CrossRef Google Scholar

    [10] 佘敏, 寿建峰, 贺训云, 等. 碳酸盐岩溶蚀机制的试验探讨: 表面溶蚀与内部溶蚀对比[J]. 海相油气地质,2013,18(3):55 − 61. [SHE Min, SHOU Jianfeng, HE Xunyun, et al. Experiment of dissolution mechanism of carbonate rocks: surface dissolution and internal dissolution[J]. Marine Origin Petroleum Geology,2013,18(3):55 − 61. (in Chinese with English abstract) doi: 10.3969/j.issn.1672-9854.2013.03.007

    CrossRef Google Scholar

    [11] 佘敏, 寿建峰, 沈安江, 等. 埋藏有机酸性流体对白云岩储层溶蚀作用的模拟试验[J]. 中国石油大学学报(自然科学版),2014,38(3):10 − 17. [SHE Min, SHOU Jianfeng, SHEN Anjiang, et al. Experimental simulation of dissolution and alteration of buried organic acid fluid on dolomite reservoir[J]. Journal of China University of Petroleum(Edition of Natural Science),2014,38(3):10 − 17. (in Chinese with English abstract)

    Google Scholar

    [12] 朱文慧, 曲希玉, 邱隆伟, 等. 盐酸及乙酸介质中的碳酸盐岩溶蚀表面特征及机理—以南堡凹陷为例[J]. 矿物岩石地球化学通报,2015,34(3):619 − 625. [ZHU Wenhui, QU Xiyu, QIU Longwei, et al. Characteristics and erosion mechanism of carbonate in acetic acid and hydrochloride solutions: An example from the Nanpu depression[J]. Bulletin of Mineralogy, Petrology and Geochemistry,2015,34(3):619 − 625. (in Chinese with English abstract) doi: 10.3969/j.issn.1007-2802.2015.03.018

    CrossRef Google Scholar

    [13] 田雯. 桩海地区下古生界碳酸盐岩表生条件下溶蚀过程模拟试验[J]. 矿物学报,2019,39(1):108 − 116. [TIAN Wen. Experimental simulation of dissolution process of the Lower Paleozoic carbonate rocks in Zhuanghai Area under supergene conditions[J]. Acta Mineralogica Sinica,2019,39(1):108 − 116. (in Chinese with English abstract)

    Google Scholar

    [14] 翁金桃. 方解石和白云石的差异溶蚀作用[J]. 中国岩溶,1984,3(1):29 − 38. [WENG Jintao. The different corrosion of calcites and dolomites[J]. Carsologica Sinica,1984,3(1):29 − 38. (in Chinese with English abstract)

    Google Scholar

    [15] 杨俊杰, 黄思静, 张文正, 等. 表生和埋藏成岩作用的温压条件下不同组成碳酸盐岩溶蚀成岩过程的试验模拟[J]. 沉积学报,1995,13(4):49 − 54. [YANG Junjie, HUANG Sijing, ZHANG Wernzheng, et al. Experimental simulation of dissolution for carbonate with different composition under the conditions from epigenesist to burial diagenesis environment[J]. Acta Sedimentologica Sinica,1995,13(4):49 − 54. (in Chinese with English abstract)

    Google Scholar

    [16] 王炜, 黄康俊, 鲍征宇, 等. 不同类型鲕粒灰岩储集层溶解动力学特征[J]. 石油勘探与开发,2011,38(4):495 − 502. [WANG Wei, HUANG Kangjun, BAO Zhengyu, et al. Dissolution kinetics of different types of oolitic limestones in northeastern Sichuan Basin[J]. Petroleum Exploration and Development,2011,38(4):495 − 502. (in Chinese with English abstract)

    Google Scholar

    [17] 邹成杰. 水利水电岩溶工程地质[M]. 北京: 水利电力出版社, 1994.

    Google Scholar

    ZOU Chengjie. Karst engineering geology of water conservancy and hydropower[M]. Beijing: Water Resources and Electric Power Press, 1994. (in Chinese)

    Google Scholar

    [18] BAI Y E, LIU Q, GU Z F, et al. The dissolution mechanism and karst development of carbonate rocks in karst rocky desertification area of Zhenfeng Guanling Huajiang County, Guizhou, China[J]. Carbonates and Evaporites,2019,34(1):45 − 51. doi: 10.1007/s13146-017-0386-x

    CrossRef Google Scholar

    [19] 韩宝平. 喀斯特微观溶蚀机理研究[J]. 中国岩溶,1993(2):4 − 9. [HAN Baoping. Extraction and analysis of generalized karst geological information in global changes[J]. Carsologica Sinica,1993(2):4 − 9. (in Chinese with English abstract)

    Google Scholar

    [20] 何婷, 张覃. 磷矿石中白云石晶体化学特性研究[J]. 矿冶工程,2012,32(5):41 − 43. [ZHANG Ting, ZHANG Tan. Study on crystal chemistry characteristics of dolomite in phosphate ores[J]. Mining and Metallurgical Engineering,2012,32(5):41 − 43. (in Chinese with English abstract)

    Google Scholar

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