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煤中微量元素和矿物富集的同沉积火山灰与海底喷流复合成因 被引量:18
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作者 代世峰 任德贻 +4 位作者 周义平 Chen-Lin Chou 王西勃 赵蕾 朱兴伟 《科学通报》 EI CAS CSCD 北大核心 2008年第24期3120-3126,共7页
煤中常量、微量元素和矿物的富集往往是多种地质因素共同作用的结果.运用低温灰化、X射线衍射分析、带能谱仪的扫描电子显微镜、逐级化学提取、电离耦合等离子体质谱等方法对云南砚山晚二叠世煤的矿物学和地球化学特征进行了研究,提出... 煤中常量、微量元素和矿物的富集往往是多种地质因素共同作用的结果.运用低温灰化、X射线衍射分析、带能谱仪的扫描电子显微镜、逐级化学提取、电离耦合等离子体质谱等方法对云南砚山晚二叠世煤的矿物学和地球化学特征进行了研究,提出了煤中微量元素和矿物富集的同沉积火山灰与海底喷流复合模式(或成因类型).研究发现,砚山矿区M9煤层硫分含量很高(St,d=10.65%),属于超高有机硫煤(So,d=9.51%).矿物组成主要有β-石英副像、透长石、钠长石、白云母、伊利石、黄铁矿以及少量的高岭石、斜长石、钙镁黄长石、金红石和片钠铝石.煤中高度富集的微量元素有F(841μg/g),V(567μg/g),Cr(329μg/g),Ni(74μg/g),Mo(204μg/g)和U(153μg/g).该煤中的矿物质主要有3个来源:(1)高温石英、透长石、白云母和伊利石等是泥炭聚积期间酸性火山灰降落到泥炭沼泽后的产物;(2)钠长石和片钠铝石以及以上超常富集的微量元素是在泥炭聚积期间,基性-超基性海底喷流侵入到闭塞缺氧的泥炭沼泽中所致;(3)稀土元素,Nb,Y,Zr和TiO2等亲石元素来源于盆地南部的越北古陆.除了物源供给以外,砚山矿区煤的矿物学和地球化学异常是同沉积酸性火山灰和基性-超基性海底喷流共同作用的结果. 展开更多
关键词 矿物 微量元素 酸性火山灰 海底喷流 成因模式
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Properties prediction of fly ash blended concrete using hydration model 被引量:1
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作者 WANG XiaoYong 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第9期2317-2325,共9页
Fly ash is an industrial by-product from coal combustion and has been widely used as mineral admixture in normal and high strength concretes. Owing to the pozzolanic reaction between calcium hydroxide and fly ash, com... Fly ash is an industrial by-product from coal combustion and has been widely used as mineral admixture in normal and high strength concretes. Owing to the pozzolanic reaction between calcium hydroxide and fly ash, compared with Portland cement, the hydration of concrete containing fly ash is much more complex. In this paper, by considering the production of calcium hydroxide in cement hydration and its consumption in the pozzolanic reaction, a numerical model is proposed to simulate the hydration of concrete containing fly ash. Similar to the hydration reaction of cement, fly ash activity is divided into three processes: an initial dormant period, a phase-boundary reaction process and a diffusion process. The mutual interactions between the cement hydration and fly ash reaction are considered through the available calcium hydroxide amount and available capillary water amount in the system. The properties of hardening fly ash blended concrete, such as the reaction degree of fly ash, chemically bound water, calcium hydroxide, and compressive strength, are determined from the contributions of cement hydration and fly ash pozzolanic reaction. The evaluated results show good accordance with the experimental results. 展开更多
关键词 CEMENT fly ash HYDRATION MODEL
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