不同升温速率下方解石与二氧化碳水溶液作用实验
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张文博(1992—),男,河南开封人,在读硕士研究生,从事成岩作用及储层评价方面的研究。联系电话:18353240504,E-mail: 1461400631@qq.com。

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国家科技重大专项“渤海湾盆地深层油气地质与增储方向”(2016ZX05006-007)。


Experiment of interaction between calcite and fluid saturated with CO2 under different heating rates
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    摘要:

    二氧化碳水溶液是常见的酸性流体,碳酸盐矿物中的方解石在酸性条件下溶解常产生次生粒间孔隙,是次生孔隙产生的重要来源。为此,利用设计的成岩模拟实验装置,采取快速升温和慢速升温2种升温方法,将温度由50 ℃升至120 ℃,通过4次水—岩实验和1次水热增压实验,研究不同升温速率下方解石在二氧化碳水溶液中的溶解作用,进而研究碳酸盐次生孔隙的产生机理。通过分析实验前后方解石质量变化数据和镜下观察图像可知:方解石的溶解速率很大,其溶解量受温度、二氧化碳分压的共同控制,具体表现为温度降低及二氧化碳分压升高有助于方解石的溶解;升温速率越大,方解石的溶解量也越大;封闭体系下方解石溶解一段时间后,当溶液中的离子浓度过高时,将抑制方解石的溶解;随着方解石的不断溶解,其表面发生溶蚀变化,依次呈现溶蚀微孔、溶蚀带、溶蚀锯齿和溶蚀晶锥4种溶蚀形貌特征。

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    Fluid saturated with CO2 is common acid one. Carbonate mineral may be solved in the acid condition and secondary intergranular pores may be produced,which is the important origin of secondary pores. Experimental installation for diagenetic simulation was designed. Two ways of fast heating and slow heating were adopted with a temperature range from 50 ℃ to 120 ℃. Four water-rock experiments and one hydrothermal experiment were made to research the dissolution of calcite under different heating rates and the formation mechanism of the secondary pores of the carbonate. At the beginning and end of the experiments,all the calcites were weighed,and the dissolution topography of the calcite for observation were observed under the optical microscope and scanning electron microscope. It shows that dissolution rate of the calcite is fast and the dissolution was controlled by temperature and CO2 partial pressure( pco2). The fall of the temperature and rising of pco2 is beneficial to the dissolution of calcite. The faster the temperature rose,the more the calcite would be dissolved. In the sealed system,after the calcite was dissolved for quite a time,the dissolution of the calcite will be inhibited by the high concentration of ion. Along with the dissolution of the calcite,the dissolution topography of the calcite experienced 4 stages:dissolution micropore,dissolution belt,dissolution sawtooth and dissolution crystalline cone.

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张文博,操应长,远光辉.不同升温速率下方解石与二氧化碳水溶液作用实验[J].油气地质与采收率,2017,24(3):57~65

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  • 在线发布日期: 2017-03-29