北山新场BS34钻孔岩样在不同温度下的水岩作用
TL942.1; 高放废物深地质处置过程中,放射性核素衰变可能产生大量的热量,释放到处置硐室周围环境中将影响深部地质环境局部的水岩作用.为探究温度对新场场址深部地下水化学环境的影响,使用新场场址原状地下水与BS34钻孔深部花岗岩岩样,开展了不同温度下室内水岩作用研究.结果表明:BS34钻孔岩样与原状地下水反应后,水相的pH为6.4~8.5,总溶解固体(TDS)为1653.9~1759.6 mg/L.随着温度的升高,水溶液Na+、K+浓度增大,其中Na+可能来源于钠长石溶解、阳离子交换作用,K+可能来源于钾长石溶解;Ca2+、Mg2+、HCO-3浓度减少,主要以方解石和白云石的形式沉淀析出,反应...
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| Published in | 核化学与放射化学 Vol. 44; no. 3; pp. 386 - 392 |
|---|---|
| Main Authors | , , , , |
| Format | Journal Article |
| Language | Chinese |
| Published |
国家原子能机构高放废物地质处置创新中心,北京 100029
2022
核工业北京地质研究院,北京 100029 |
| Subjects | |
| Online Access | Get full text |
| ISSN | 0253-9950 |
| DOI | 10.7538/hhx.2022.YX.2021112 |
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| Abstract | TL942.1; 高放废物深地质处置过程中,放射性核素衰变可能产生大量的热量,释放到处置硐室周围环境中将影响深部地质环境局部的水岩作用.为探究温度对新场场址深部地下水化学环境的影响,使用新场场址原状地下水与BS34钻孔深部花岗岩岩样,开展了不同温度下室内水岩作用研究.结果表明:BS34钻孔岩样与原状地下水反应后,水相的pH为6.4~8.5,总溶解固体(TDS)为1653.9~1759.6 mg/L.随着温度的升高,水溶液Na+、K+浓度增大,其中Na+可能来源于钠长石溶解、阳离子交换作用,K+可能来源于钾长石溶解;Ca2+、Mg2+、HCO-3浓度减少,主要以方解石和白云石的形式沉淀析出,反应温度越高,沉淀析出越多. |
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| AbstractList | TL942.1; 高放废物深地质处置过程中,放射性核素衰变可能产生大量的热量,释放到处置硐室周围环境中将影响深部地质环境局部的水岩作用.为探究温度对新场场址深部地下水化学环境的影响,使用新场场址原状地下水与BS34钻孔深部花岗岩岩样,开展了不同温度下室内水岩作用研究.结果表明:BS34钻孔岩样与原状地下水反应后,水相的pH为6.4~8.5,总溶解固体(TDS)为1653.9~1759.6 mg/L.随着温度的升高,水溶液Na+、K+浓度增大,其中Na+可能来源于钠长石溶解、阳离子交换作用,K+可能来源于钾长石溶解;Ca2+、Mg2+、HCO-3浓度减少,主要以方解石和白云石的形式沉淀析出,反应温度越高,沉淀析出越多. |
| Author | 苏锐 赵敬波 李亚楠 季瑞利 周志超 |
| AuthorAffiliation | 核工业北京地质研究院,北京 100029;国家原子能机构高放废物地质处置创新中心,北京 100029 |
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| Author_FL | ZHOU Zhi-chao LI Ya-nan JI Rui-li SU Rui ZHAO Jing-bo |
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| DocumentTitle_FL | Water-Rock Interaction of Granite From Borehole BS34 at Different Temperatures |
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| Keywords | 水岩作用 原状地下水 不同温度 高放废物处置 水化学特征 |
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| PublicationTitle | 核化学与放射化学 |
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| Publisher | 国家原子能机构高放废物地质处置创新中心,北京 100029 核工业北京地质研究院,北京 100029 |
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| Title | 北山新场BS34钻孔岩样在不同温度下的水岩作用 |
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