共查询到20条相似文献,搜索用时 578 毫秒
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沸石类矿物因其具有特殊的离子交换与吸附性能,因而较早尝试性地应用于一些工业技术领域。随着研究逐步深入,沸石矿物物理化学已经成为当今矿物学科中的一个研究热点。然而同有色金属密切共生的红辉沸石的产出及对其矿床矿物学研究的报道在国内外却为数不多。最近作者在新疆东天山三岔口铜矿考察中发现一种橙红色矿物,经扫描电镜、化学成分、差热-热重、X射线衍射物相鉴定等分析,确认系一种富铜红辉沸石,在新疆地区尚未有见报道。其晶体化学式为(Na2,Ca)Al2Si7O18.7H2O。该矿物同前人资料相比,地质产状虽很相似,但含铜量w(CuO)高达1.02%,超出微含量的范围,Na、Mg含量高而Si低。 相似文献
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阐述了广西资源红辉沸石矿的地质特征及该产地红辉沸石的物理性质、化学成分及其差热-热重分析特征。根据该产地红辉沸石的性能,试图开发其在高强建筑材料中的应用。在粘土中加入不同比例该产地红辉沸石后,经高温烧结所形成的固体材料的各种物理性质,如密度、表观密度、孔隙度、吸水率等有所降低,而力学性质如抗压强度、抗折强度等则增大。经过反复试验对比,获得了红辉沸石的添加量对烧成材料性质的影响规律。 相似文献
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文章研究了采用酸、碱、盐改性红辉沸石和加热活化红辉沸石对改性红辉沸石去除水溶液中氨氮的影响效果。实验结果表明:(1)用红辉沸石去除溶液中氨氮的实验条件选择如下:1搅拌时间为30min;2沸石粒度为40~60目;3沸石用量为2g;4氯化氨溶液浓度为40mg/L;5氯化氨溶液用量为80ml。(2)采用高温活化对提高红辉沸石去除氨氮效率的作用不明显。(3)酸和碱改性对提高红辉沸石去除氨氮的效率有一定的作用,其中盐酸改性的红辉沸石去除氨氮效率为16.2%,硫酸改性的红辉沸石去除氨氮效率为13.1%,碱改性的红辉沸石去除氨氮效率为25.6%。(4)盐改性对红辉沸石去除水溶液中氨氮的影响效果巨大:经盐改性后,去除率由9.6%升高至72.6%。 相似文献
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利用广西红辉沸石资源水热制备纳米微孔材料——沸石分子筛,其工艺流程为“红辉沸石”(预处理) 氢氧化钠 铝酸钠 水→水热反应→晶化合成→过滤、洗涤、烘干→沸石分子筛产品。基于大量实验研究,确定了水热制备A型、P型和X型沸石的最佳工艺技术参数,制备出了质量较高的沸石分子筛产品,并综合分析了红辉沸石粒度、石英杂晶、晶化时间以及反应混合物组成对沸石分子筛水热制备的影响,指明了今后研究工作的努力方向。 相似文献
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广西资源车田红辉沸石特征的初步研究 总被引:19,自引:2,他引:19
红辉沸石属斜方晶系,a=1.36,b=1.81,c=1.78nm,V=4.394nm3。化学成分分析结果(%):SiO258.76,Al2O314.13,CaO8.80,K2O0.11,Na2O0.18,Fe2O30.44,H2O 16.87,H2O1.25。计算的化学式为:(K0.017Na0.042Ca1.13)1.189[Al1.997,Si7.05,O18」·6.75H2O。Si/Al=3.53.N。=1.501,Nβ=1.495,Nγ=1.488。D=2.13g/cm3(实测)。钾离子(K )交换量9.34~13·08mg/g,氨离子(NH4 )交换量92.76~130.26mmol/100g。佛石晶体呈透明一半透明,为乳白色、瓷白色。单晶体呈板状、板柱状,集合体呈放射状、束状。单晶体长度可达30cm以上,但通常为5~15cm。红辉沸石呈脉状产出在断裂带中,矿体中沸石含量达95%以上,矿石的白度为91.7。它是一种质量较好、用途较广的极为罕见的沸石矿,也是国内外目前唯一具有工业意义的红辉沸石矿床。 相似文献
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Muriel Rocher Stéphane Baize Stéphane Jaillet Edward Marc Cushing Yannick Lozach Francis Lemeille 《Comptes Rendus Geoscience》2003,335(8):701-708
Calcite samples were extracted both from the rock matrix and the superficial coating of a karstified fault plane of an underground quarry, located in the eastern border of the Paris basin. The karstification is dated as Quaternary. Analysis of mechanical calcite twinning reveals that only the calcite matrix has also undergone a compression trending WNW that can be attributed to the Mio-Pliocene alpine collision. Both coating and matrix have undergone a strike-slip regime with σ1 roughly trending north–south, that could correspond to the regional present-day state of stress, a strike-slip compression rather trending NNW, modified by local phenomena. To cite this article: M. Rocher et al., C. R. Geoscience 335 (2003). 相似文献
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正20141756 Chen Ruige(Mathematical College,China University of Geosciences,Beijing100083,China);Zhou Xun Numerical Simulation of Groundwater Level Fluctuation in a Coastal Confined Aquifer with Sloping Initial Groundwater Level Induced by the Tide(Geological Bulletin of China,ISSN1671-2552,CN11-4648/P,32(7),2013,p.1099-1104,6 illus.,16 refs.) Key words:confined water,groundwater level 相似文献
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正20141408 Cai Jia(Institute of Geology,Chinese Academy of Geological Sciences,Beijing100037,China);Liu Fulai Petrogenesis and Metamorphic P-T Conditions of Garnet-Spinel-Biotitebearing Paragneiss in Danangou Area,Daqingshan-Wulashan Metamorphic Complex Belt(Acta Petrologica Sinica,ISSN1000-0569,CN11-1922/P,29(7), 相似文献
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正20142386An Guoying(China Aero Geophysical Survey and Remote Sensing Center for Land and Resources,Beijing 100083,China)Application of Satellite Remote Sensing in Regional Hydrogeological Investigation:Taking Cenozoic Strata in Wenquan Sheet(1∶250 000)of Karakoram Range as an Example(Geosci- 相似文献
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正20141016An Chengbang(Key Laboratory of Western China’s Environmental Systems,Ministry of Education,Lanzhou University,Lanzhou 730000,China);Zhao Yongtao Lake Records during the Last Glacial Maximum from Xinjiang,NW China and Their Climatic Impli- 相似文献
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正20141538 Cao Qing(School of Earth Sciences and Engineering,Xi’an Petroleum University,Xi’an 710065,China);Zhao Jingzhou Characteristics and Significance of Fluid Inclusions from Majiagou Formation,Yichuan Huangling Area,Ordos Basin(Advances in Earth Science,ISSN1001-8166,CN62-1091/P,28(7),2013,p.819-828,7 illus.,3 tables,43 refs.) 相似文献
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正20142002 Wei Hualing(Institute of Geophysical and Geochemical Exploration,Chinese Academy of Geological Sciences,Langfang065000,China);Zhou Guohua Element Content and Mineral Compositions in Different Sizes of Soil in Tongling Area,Anhui Province(Geological Bulletin of China,ISSN1671-2552,CN11-4648/P,32(11),2013,p.1861 相似文献
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正20141768 An Shaopeng(Institute of Rock and Soil Mechannics,Chinese Academy of Sciences,Wuhan 430071,China);Wei Lide Experimental Study on Mechanical Behavior of Xigeda Formation Siltstone and Structure Interface(Journal of Engineering Geology,ISSN1004-9665,CN11-3249/P,21(5),2013,p.702-708,9illus.,1 table,16 refs.) 相似文献
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正20140985Chen Liang(Post-Doctoral Research Station of Mining Engineering,School of Nuclear Resources and Nuclear Fuel Engineering,University of South China,Heng-yang 421001,China);Huang Wei Composition of Major and Correlated Elements with Organic Matters and Paleoclimatic Implication for Lower Paleogene Sediments in Sanshui Basin 相似文献