首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 123 毫秒
1.
粘土矿物吸附铀主要存在于砂岩型铀矿床中,通过将含粘土矿物较多的矿石和不含或含少量粘土矿物的矿石作对比,发现含粘土矿物较多的矿石含铀量普遍较高。不同的粘土矿物对铀的吸附容量也不同,对蒙脱石,高岭石,伊利石进行研究后得出吸附容量由大到小依次为:蒙脱石-伊利石-高岭石。不同影响因素对粘土矿物吸附铀有不同的影响。结论为在足够的吸附时间下,p H值在适宜范围内,温度越高,粘土矿物量越多,铀初始浓度越大,越有利于粘土矿物对铀的吸附。  相似文献   

2.
鄂尔多斯盆地北部2081铀矿床成矿特征   总被引:4,自引:0,他引:4  
2081铀矿床的矿石以接触式胶结为主,其次为孔隙式胶结,胶结物主要为水云母,其次为方解石、黄铁矿、针铁矿、褐铁矿等。矿石中粘土矿物主要为蒙脱石,平均含量为73.3%,其次为高岭石和伊利石,无伊利石/蒙脱石混层。铀矿物主要是铀石,UO2含量为46.72%~73.4%,其次为钛铀矿,UO2含量为36.01%~49.01%。铀石大多与黄铁矿伴生,有时与硒铅矿、锐钛矿等伴生,这些伴生矿物都不同程度地含铀。铀主要以吸附态形式存在,在矿床的不同部位,吸附态铀以及U 6、U 4所占的比例存在较大差别,这是由于矿石处于不同的地球化学环境造成的。该铀矿床的形成与烃类具有密切关系。  相似文献   

3.
外生铀矿床中,铀在矿石内多以吸附状态存在,粘土矿物和有机质被认为是重要的吸附剂。对蒙脱石粘土矿物吸附铀的研究已有文献报导。本文就我国南方某地寒武系下统黑色页岩中与埃洛石粘土有关的901后生淋积型铀矿床铀的富集作用问题进行初步探讨。一、矿床地质概况:矿区出露有震旦系上统灯影组灰岩、寒武系下统王音铺组、观音堂组黑色页岩。矿床处于 NNE 和 NE 向断裂夹持地带的下寒武地层倒转向斜内。矿区内构造发育,  相似文献   

4.
埃洛石是一种天然的管状粘土矿物,在环境治理方面有广泛的应用。室温条件下通过钛酸丁脂的水解反应在埃洛石上负载了TiO_2。分别在避光条件和紫外光照射下,通过亚甲基蓝溶液的降解研究了埃洛石和负载TiO_2埃洛石的吸附和光催化性能。通过亚甲基蓝被吸附和降解的量,评价了样品的吸附和光催化性能。由于复合了吸附和光催化性能,负载TiO_2埃洛石能迅速降解水中的有机污染物——亚甲基蓝,其降解速度要快于纯埃洛石,因为纯埃洛石只有吸附性能。这是埃洛石应用研究方面的一次新尝试。该研究对大气和水体中各种污染物的去除和降解必然有积极的指…  相似文献   

5.
基于当前发生的抗生素污染环境严峻问题,本文开展高活性粘土矿物蒙脱石吸附水中盐酸四环素(TC)的实验研究。采用批处理吸附实验方法,着重考查溶液初始TC浓度、初始pH值、电解质的阳离子类型及其浓度等对蒙脱石吸附性能的影响。结果显示,蒙脱石对TC的吸附行为可用Freundlich吸附等温线进行描述,并表现出显著的非线性特征;Langmuir方程确定其最大吸附量为625 mg/g;在较强酸性介质条件下(pH=2~4)蒙脱石对TC的吸附能力最强,其次为弱酸性-弱碱性环境(pH=5~9);不同阳离子类型也能显著影响蒙脱石对TC的吸附,表现为阳离子价态越高,对TC吸附的影响程度越明显。蒙脱石可被认为是一种TC的高效吸附剂,应用于盐酸四环素污染废水的处理过程。  相似文献   

6.
苏州高岭土矿主要由高岭石、7埃洛石、10埃洛石及少量绢云母、蒙脱石、明矾石、三水铝石组成。高岭土矿物形成后因外界地化条件改变发生了以下转变:(1)埃洛石脱水向高岭石转化;(2)次生淋滤埃洛石形成;(3)埃洛石和三水铝石之间的互相转化;(4)Ca型蒙脱石形成;(5)高岭土的磷酸盐化作用;(6)次生淋滤明矾石的形成。矿物生成的先后顺序和共生关系可将矿物形成分为主要成矿期和成矿期后演化两个阶段。矿物的后期演化使优质高岭土进一步富集,改造,形成量大质优的高岭土矿。同时,非高岭土矿物的生成又使部分矿石质量变差,降低了矿石的工业价值。  相似文献   

7.
蒙脱石/胡敏酸复合体对重金属离子吸附实验研究   总被引:2,自引:0,他引:2       下载免费PDF全文
主要研究了蒙脱石吸附胡敏酸后形成的复合体对Cu2 、Cd2 、Cr3 3种重金属离子的吸附.实验结果表明:用胡敏酸对蒙脱石改性后能提高其对3种重金属离子的吸附性能,胡敏酸浓度越大,吸附性能提高程度越大,3种重金属离子的Langmuir吸附等温线线性相关都能达到0.99以上.蒙脱石/胡敏酸复合体对3种重金属离子的吸附量都随pH值的升高而增加,随离子强度的增加而减小.另外还对其吸附动力学进行了研究,发现可用Elovicb方程和双常数方程对吸附过程进行较好地拟合.  相似文献   

8.
为了进一步深化铀矿物的富集机理.利用α径迹放射性照相、扫描电镜、电子探针等方法对鄂尔多斯盆地北部铀矿床中铀矿物的赋存状态进行了系统研究.发现该区铀矿物主要为铀石,少量沥青铀矿和含铀钛矿物.沉积-成岩期碎屑铀矿物赋存在碎屑颗粒内部,吸附在锐钛矿周围,为铀储层中预富集的铀.成矿期铀矿物大部分赋存在碎屑颗粒填隙部位,与黄铁矿、碳质碎屑相伴生,与石英颗粒及方解石胶结关系密切;部分吸附在包裹碎屑颗粒的蒙脱石薄膜上.另外发现了,沥青铀矿-赤铁矿-黄铁矿的矿物组合,以及硒铅矿(PbSe)和白硒铁矿(FeSe2)与铀矿物相伴生,并伴有REE含量明显升高.分析得出,沥青铀矿形成于成矿早期,氧化酸性流体与还原碱性流体的过渡界面,偏向于氧化酸性一侧;而铀石主要形成于成矿晚期的还原碱性环境.双重铀源供给、丰富的还原介质、多源流体的耦合,局部的热液流体叠加改造,共同造就了鄂尔多斯盆地北部大矿、富矿的形成.   相似文献   

9.
采用电子探针、能谱及背散射分析、扫描电镜、微区X射线荧光等实验方法,详细研究了钱家店铀矿床铀的赋存形式、含铀矿物类型,并对铀矿物相关的矿物组合类型及成因进行探讨。结果表明:(1)钱家店铀矿区铀的赋存形式包括铀矿物、吸附态铀以及含铀矿物三大类。其中,铀矿物类型主要为沥青铀矿,铀石次之,仅在局部可见含钛铀矿物等;吸附铀主要为高岭石吸附和有机质吸附。铀矿物常与黄铁矿、铁白云石、高岭石等密切共生,多呈胶状发育在黄铁矿、铁白云石边缘及裂隙内,也有呈粒状、球粒状独立分布,少数分布在碎屑颗粒内部。(2)研究区至少存在两期铀成矿相关流体:一期中性-弱碱性含铀流体形成的铀矿物围绕黄铁矿边缘发育,形成环边、似环边状,同时形成铁白云石为主的碳酸盐围绕黄铁矿外围发育;另一期含铀流体形成的铀矿物呈脉状充填在黄铁矿内部,无碳酸盐形成。(3)铀矿物(特别是铀石)中含有丰富的磷元素,扫描电镜也发现部分样品中存在富磷元素的微球粒状的铀石集合体,初步认为这是低温流体下微生物参与铀成矿作用的有力证据。  相似文献   

10.
湖南辰溪仙人湾埃洛石的表面吸附性能研究   总被引:1,自引:0,他引:1  
通过N2吸附-解吸附、表面电位测试及透射电镜等手段研究了湖南辰溪仙人湾埃洛石的表面吸附性能。本区埃洛石属中空管体,吸脱附等温线属于Ⅱ类等温线。由BJH方程计算孔径在2.5~200 nm之间均有分布,集中在3~40 nm之间,由HK方程计算微孔集中分布在0.6~1.9 nm之间。天蓝色埃洛石孔隙丰富,以中微孔为主,纯白色埃洛石孔隙发育程度相对较低,以微、中、大孔为主。埃洛石的表面零电点接近pH=2。在pH=5~10之间,Zeta电位趋向稳定在-40 mV左右。本区埃洛石比表面积为35~87 m2/g,平均孔径为16.20~30.12 nm,具有很强的气体吸附能力和离子交换吸附能力。天蓝色埃洛石表面吸附性能最强,是优先考虑的开发对象。  相似文献   

11.
铀与某些粘土矿物之间关系的初步研究   总被引:1,自引:0,他引:1  
张淑苓  束秀琴 《沉积学报》1983,1(1):129-136
60年代初苏联的研究了蒙脱石、高岭石、蛭石、铝土矿、钠长石等对铀的吸附作用及这些矿物吸附铀与作用时间、温度、氢离子、溶液铀浓度之间的关系。认为粘土吸附铀与这些矿物的离子交换性能密切相关,且其吸附容量从蒙脱石向钠长石逐渐减少。  相似文献   

12.
黄土剖面系由相互叠复的黄土-古土壤层组成。黄土地层的研究结果表明,一个完整的黄土剖面包括有早更新世的午城黄土、中更新世的离石黄土上部和下部、晚更新世的马兰黄土,最近研究表明,在马兰黄土之上还有全新世黄土存在。  相似文献   

13.
粘土沉积物XRD定量分析方法   总被引:1,自引:0,他引:1  
邓学能 《沉积学报》1993,11(4):99-104
从理论上推导了无序混合层粘土矿物混层比f与XRD视面网间距d之间的近似函数关系,制定出I/S混层矿物的d-f换算表;通过对济阳拗陷泥质岩石的研究,从一种新的途径求出了粘土矿物的强度因子,提出混层矿物XRD强度因子与混层比的线性关系式。根据不同的制样方法,利用微机运算,可以对粘土沉积物中的6种或10种矿物进行大量快速的定量分析。  相似文献   

14.
贵州碳酸盐岩红土中的粘土矿物及其形成机理   总被引:13,自引:2,他引:13  
朱立军  傅平秋 《矿物学报》1996,16(3):290-297,T001
本文运用X射线衍射、红外光谱、差热、透射电镜和扫描电镜等方法对贵州碳酸盐岩红土中的粘土矿物进行了系统研究。高岭石和0.7nm埃洛石是碳酸盐岩红土中的主要粘土矿物,其次为伊利石、蛭石、绿泥石、绿泥石/蛭石混层矿物,水铝英石和三水铝石等。  相似文献   

15.
腾冲地热区出露有众多热泉泉群,地热活动频繁,岩石发生强烈蚀变,形成的主要蚀变矿物包括高岭石、绢云母、蒙脱石、I/M间层矿物、石英和蛋白石。主要蚀变矿物的种类和含量受蚀变母岩性质的控制,花岗质砂砾岩和花岗岩形成高岭石,玄武岩形成伊利石和蒙托石,安山岩中发育硅化作用。泥化作用增强的趋势是安山岩→花岗岩→玄武岩→花岗质砂砾岩。由于花岗质砂砾岩在热区内广泛分布,通过蚀变作用形成了有经济价值的高岭土矿床。  相似文献   

16.
Uranium accumulation in organic-rich sediments can be closely modelled by assuming that the dominant effect of the uranium-organic matter interaction is the direct or indirect reduction of uranyl compounds to form U(IV) minerals, especially uraninite-pitchblende. Application of this model to the Needle's Eye (Scotland) site where uranium is actively accumulating in Quaternary sediments demonstrates that uranium accumulation is both effective and rapid in environments involving shallow, organic-rich, reducing horizons. The period of uranium deposit formation at Needle's Eye is estimated to be as short as 5000 years. The transport of uranium to the site of deposition by oxidizing groundwaters and the channelling of these oxidizing uraniferous groundwaters are identified as important factors involved in the rapid accumulation of uranium. The regional hydrogeological model indicates that a fault in the area appears to act as a hydraulic screen for the uraniferous groundwaters. On one side of the fault the Quaternary sediments are well drained whilst on the other the flow of groundwater seeps out creating a major flux just at the bottom of the organic-rich layers. The local hydrogeological model shows that the groundwater flow is vertical in this area. A third significant factor in the development of these uranium accumulations is the presence of a significant nearby source of leachable primary uranium. In the case of the Needle's Eye site this is in the form of some thirty 185 ±20 Ma, pitchblende-bearing veins.  相似文献   

17.
Clay minerals associated with intra-volcanic bole horizons of varied colours and thicknesses contain montmorillonite, halloysite and kaolinite, show distinct microstructures and microaggregates. In kaolinite, Fe3+ ions substitute for Al3+ at octahedral sites. Most of these clays are dioctahedral type, show balance between net layer and interlayer charges. The interstratified illite — smectite (I/S) mixed layers containing variable proportions of montmorillonite. Illite contains sheet-like, well oriented microaggregates. The parallel stacks of chlorite sheets show chlorite/smectite (C/S) mixed layers. Progressive enrichment of Fe and depletion of Al ions with the advancement of kaolinization process is observed. High order of structural and compositional maturity observed in these bole clays, indicate long hiatus between the two volcanic episodes.  相似文献   

18.
Batch experiments were conducted to study the sorption of uranium on selected clay minerals (KGa-1b and KGa-2 reference kaolinite, SWy-2 and STx-1b reference montmorillonite, and IBECO natural bentonite) as a function of pH (4–9) and 0.001, 0.01, and 0.025 M NaCl in equilibrium with the CO2 partial pressure of the atmosphere. Uranium concentrations were kept below 100 μg L−1 to avoid precipitation of amorphous Uranium-hydroxides. Solely PTFE containers and materials were used, because experiments showed significant sorption at higher pH on glass ware. All batch experiments were performed over a period of 24 h, since kinetic experiments proved that the common 10 or 15 min are in many cases by far not sufficient to reach equilibrium. Kaolinite showed much greater uranium sorption than the other clay minerals due to the more aluminol sites available. Sorption on the poorly crystallized KGa-2 was higher than on the well-crystallized KGa-1b. Uranium sorption on STx-1b and IBECO exhibited parabolic behavior with a sorption maximum around pH 6.5. Sorption of uranium on montmorillonites showed a distinct dependency on sodium concentrations because of the effective competition between uranyl and sodium ions, whereas less significant differences in sorption were found for kaolinite. The presence of anatase as impurity in kaolinite enhanced the binding of uranyl-carbonate complexes with surface sites. The kinetic of uranium sorption behavior was primarily dependent on the clay minerals and pH. A multisite surface complexation model without assuming exchange is based on the binding of the most dominant uranium species to aluminol and silanol edge sites of montmorillonite, respectively to aluminol and titanol surface sites of kaolinite. For eight surface species, the log_k was determined from the experimental data using the parameter estimation code PEST together with PHREEQC.  相似文献   

19.
江西龙南花岗岩稀土风化壳中粘土矿物的研究   总被引:8,自引:0,他引:8       下载免费PDF全文
本区燕山早期花岗岩发育的风化壳中的粘土矿物以高岭石和埃洛石(7Å)为主;蒙脱石、三水铝石及其它为新查明矿物。据粘土矿物组合特征,自风化剖面深部到地表分为三个带:含蒙脱石带,高岭石和埃洛石(7Å)带,含三水铝石带。本文探讨了矿物在风化过程中的生成演化顺序,并进行了热力学的解释。据各带粘土物质的阳离子交换量与稀土含量变化的不一致关系认为,稀土在C带中的富集是化学风化的结果,与粘土矿物组合无关。  相似文献   

20.
Presence of Early Tertiary pyroclastic material (tephra) has been documented petrographically, for the first time, in the Mandi-Bilaspur Sector from Tileli area, Dharamsala basin of Himachal Pradesh. The tephra is reported from the red shale, identified as tuffaceous siltstone belonging to lower Dharamsala Formation that lies above the uraniferous sandstone body and occurs as thin layers of over 300m along the strike, close to the contact of lower and upper Dharamsala formations. The tuffaceous material shows crude but preferred orientation of minerals like biotite, muscovite, chlorite, clay, hematite and specularite. Various features indicating presence of tephra are, glass shards altered to clay but retaining ‘U’ shaped outline, spindle-shaped hematite with preferred orientation, spherical to sub-spherical clay and altered Feoxide rich balls, clay groundmass with flow pattern, flaky minerals in association with clast depicting asymmetrical ramp structure. A zone of approximately 300 m length containing tuffaceous material has been established at Tileli overlying the uraniferous sandstone body. Identification of tephra at Tileli has significant implications as it enabled in demarcating the boundary between the upper and lower Dharamsala formations in central part of the basin in Bilaspur-Mandi Sector of HP Himalaya and also in guiding the uranium exploration programme in the lower Dharamsala Formation.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号