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1.
25~75℃酸性NaCl溶液中方铅矿的溶解动力学   总被引:4,自引:0,他引:4  
在25~75℃、pH=0.43~2.45的1mol/LNaCl溶液中进行了方铅矿的溶解动力学实验。发现在远平衡条件下,方铅矿的溶解速率r与氢离子活度犤H+犦呈线性关系,溶解速率方程(速率定律)为:r=k犤H+犦,即对H+而言,溶解反应为一级。其中速率常数k为2.344×10-7mol/m2·s(25℃)、1.380×10-6mol/m2·s(50℃)、7.079×10-6mol/m2·s(75℃)。溶解反应的活化能为43.54kJ/mol,方铅矿的溶解机理为表面化学反应,速率决定步骤为表面配合物的离解。  相似文献   

2.
矿物溶解的表面化学动力学机理   总被引:13,自引:0,他引:13  
谭凯旋  张哲儒 《矿物学报》1994,14(3):207-214
本文应用表面化学理论分析了矿物在水溶液中的溶解反应动力学机理。表面化学的催化作用使矿物溶解反应的活化能显著降低。矿物溶解速率受表面吸附、表面交换反应和解吸反应等表面化学过程的控制并与溶液的pH值有关,正比于溶液αH+值的nθ次幂。受表面吸附控制时,nθ=1,溶解速率随pH增大而减小;受表面交换反应控制时,nθ=0,溶解速率与pH无关;受解吸反应控制时,酸性条件下nθ为0~1内的正小数,碱性条件下nθ为-1~0之内的负小数。大多数矿物的溶解作用在酸性条件下受表面吸附和/或表面交换反应控制,在碱性条件下受解吸反应的控制。  相似文献   

3.
通过白云岩化鲕粒灰岩与0.1 mol/L乙酸的旋转盘溶解动力学实验,研究了深埋藏中有机质热演化过程中伴生的有机酸对鲕粒灰岩储层的改造作用机理.结果显示,白云岩化鲕粒灰岩溶解反应的速率在3.26×10-7~6.66×10-7 mol/(cm2·s)之间,并且溶蚀速率随温度和转速的增加而增大.反应前后样品表面的扫描电子显微...  相似文献   

4.
用化学分析和红外光谱研究了XSD-296树脂吸附和解吸铼的性能及机理。结果表明,树脂对Re(Ⅶ)的吸附在pH=3.2的HAc-NaAc缓冲溶液中最佳,静态饱和吸附容量为330.4 mg/g树脂,等温吸附服从Freun-dlich经验式,吸附速率常数k298=3.83×10-4/s。用2.0 mol/L硫氰酸铵溶液或2.0 mol/L高氯酸溶液作解吸剂能定量洗脱。吸附机理表明,树脂功能基与Re(Ⅶ)发生了配位键合。  相似文献   

5.
D301R树脂吸附金(Ⅲ)的实验   总被引:4,自引:2,他引:4  
研究了D301R树脂对金(Ⅲ)的吸附性能及其机理,测得在HAc-NaAc体系中pH=3.47时为最佳吸附条件。在298 K的温度下,pH=3.47的HAc-NaAc缓冲体系中树脂对金(Ⅲ)的静态饱和吸附容量为828.36 mg/g;测得吸附热力学参数分别为:ΔH=16.77 kJ/mol,ΔS=59.36J/mol K,ΔG298=-919.28 J/mol;吸附速率常数k298=2.17×10-5s-1,吸附活化能Ea=9.43 kJ/mol;用20%硫脲的丙酮溶液和6 mol/L的HCl溶液以1∶1混合洗脱,洗脱率达到95%以上;等温吸附曲线能很好地遵循Freundlich曲线;树脂的功能基与金(Ⅲ)的配位比接近1∶1。  相似文献   

6.
长石溶解模拟实验研究综述   总被引:2,自引:0,他引:2  
在综合分析前人研究成果基础上,对长石溶解模拟实验研究进行了综述.研究表明,长石溶解与其成分、结构、反应的温压条件以及流体性质等有关.在相同的温压条件下,3种长石的稳定性依次为:钾长石>钠长石>钙长石,且温度升高可加强长石的溶解能力,促进长石的溶解,而压力的变化对长石的溶解影响不大.长石的溶解速率在酸性区域随pH值增大而减小、在中性区域溶解速率低且受影响小、在碱性区域随pH值增大而增大.有机酸通过提供H+、络合金属元素来提高长石的溶解度.长石的溶蚀速率与颗粒的总表面积大小以及颗粒表面粗糙度有关,总表面积越大,表面越粗糙,则反应速率越快,而且溶液的矿化度越低越有利于长石的溶解.长石的溶解过程由表面反应和扩散反应所控制,描述长石溶蚀机理的模型主要包括:表面反应模型和淋滤层扩散模型.  相似文献   

7.
中地壳的地球化学动力学和矿石成因   总被引:7,自引:0,他引:7  
笔者重点进行了大于300℃——在近临界区至超临界区条件下的硅酸盐矿物与水反应动力学实验。矿物(钠长石Ab、透辉石Di、阳起石Act和磁铁矿Mt)的溶解反应动力学实验是使用流体通过叠层反应器的开放体系在25~400℃和22MPa下完成的。实验发现矿物在300℃至400℃范围,在跨越水临界点时出现反应速率的涨落。各种多金属氧化物硅酸盐与水反应时,各个元素溶解到溶液里的释放速率一般不一样,常称为一致溶解作用。但是,在近300℃变为一致溶解作用。实验发现在22MPa时硅酸盐矿物的最大溶解反应速率多是在300℃,如硅的最大释放速率是在300℃。其余元素如Na、K、Mg、Ca、Fe、Al等释放速率在<300℃22MPa时都高于硅的释放速率,在>300℃时硅的释放速率要高于其它元素的释放速率。确切地说,金属与氧之间的键的性质决定了它们(金属氧化物)与水之间反应速率。在一般情况下,Na-Obr,Ca-Obr,Mg-Obr,Al-Obr和Si-Obr的键桥(br),它们之间相对地由具有离子键性质逐步变为具有极性键的性质。由常温常压到亚临界区(300~374℃22MPa),再到大于临界点374℃、22MPa进入超临界区,水的性质随温度、压力变化。水由容易溶解离子键逐渐变为容易打破极性键。笔者还研究了黑钨矿、锡石(玄武岩、花岗闪长岩)与水在250~400℃条件下的反应动力学过程,得出了相同的结果。实验均发现在跨越水临界点时矿物(或岩石)与水反应的动力学涨落。这些实验结果可以用于说明中地壳上部的水/岩相互作用的特征。发生于中地壳的水、岩相互作用大多是在300~450℃和20~50MPa条件下进行的。各地区的地壳厚度不一,中地壳温度压力并不完全相同。模拟中地壳条件下水/岩相互作用实验,目的主要是研究矿物(或岩石)在300~450℃条件下反应动力学过程。已有热液矿床矿物流体包体数据表明:有一批矿床的主要矿石形成于300~500℃,低于NaCl H2O溶液临界线的条件。中地壳的流体处于由亚临界态跨越临界态,进入超临界流体太的演化过程。这种流体的性质变化会引起水/岩相互作用的反应动力学涨落和矿石大量沉淀。  相似文献   

8.
氨基膦酸树脂对镥(Ⅲ)的吸附性能   总被引:2,自引:0,他引:2  
考查介质pH、温度、吸附时间、树脂量等因素对吸附过程的影响。实验结果表明:氨基膦酸树脂(APAR)对镥(Ⅲ)的吸附在pH=5.64的HAc-NaAc的缓冲溶液中为最佳。25℃时静态饱和吸附量为330.5 mg/g(树脂)。用0.5 mol/L的HC l溶液作为解析剂,解析率为95.4%;氨基膦酸树脂对镥(Ⅲ)的表观吸附活化能Ea=37.3 kJ/mol,表观吸附速率常数k298=2.47×10-5-s1,测得热力学参数分别为ΔH=7.86 kJ/mol,ΔG=-4.42 kJ/mol,ΔS=42.5 Jmo-l1K-1,等温吸附服从Freundlich经验式。树脂功能基与镥(Ⅲ)的配位比约为2∶1。  相似文献   

9.
矿山开采活动影响下辉锑矿的氧化溶解是影响岩-土-水环境介质中锑的迁移转化及其环境效应的重要过程。目前对于辉锑矿溶解的研究主要关注动力学特征,对于它氧化溶解的途径、环境因素的影响、锑的释放规律等重要问题的认识还不明确。为探究碳酸盐岩矿区地下水中锑释放过程,选取重要环境因素pH值和Fe(Ⅲ),采用单因素控制条件下的批实验方法,精细刻画避光条件下辉锑矿(Sb_2S_3)氧化溶解速率及Sb和S氧化产物的组成特征。研究结果表明,Sb_2S_3的氧化溶解是一个产酸的过程,Sb和S的释放速率、途径和产物特征受pH值和Fe(Ⅲ)的显著影响。Sb_2S_3的氧化溶解速率由快变慢后趋于平衡,初始反应速率的量级为10~(-8) mol/(m~2·s),平衡反应速率的量级为10~(-10) mol/(m~2·s)。Sb的释放氧化速率随pH值的增加而增加,强碱条件下最有利于Sb的释放和氧化。强酸条件下,H_2S、SO_2气体逸出和S(0)的沉淀促进了Sb_2S_3的溶解,Sb(Ⅲ)和S(0)为主要产物。中性条件下,溶解形成的HS~-经逐步氧化生成SO~(2-)_4和少量S_2O~(2-)_3,Sb(Ⅲ)和Sb(V)含量相近。强碱条件下,SbS~(3-)_3和S~-_x的生成显著提升了Sb_2S_3的氧化溶解速率,Sb(V)和S_2O~(2-)_3是主要产物。Fe(Ⅲ)单独氧化作用时,Sb(V)和S(0)是主要产物,锑释放的表观速率无显著提升,可能与SbOCl和S(0)的生成有关。研究表明,O_2能够协同Fe(Ⅲ)氧化Sb_2S_3,但以Fe(Ⅲ)的作用为主导。本研究揭示了Sb_2S_3在不同pH值及氧化剂条件下氧化溶解的产物组成特征,提出了不同环境因素影响下的氧化溶解途径,证明碳酸盐岩天然缓冲地层更有利于锑的释放与氧化,岩溶地下水中锑诱发的环境效应会更为严重。  相似文献   

10.
表生水条件下毒砂溶解作用动力学实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
毒砂氧化溶解和释放的砷将对周围水体造成污染.本文用混合流流动反应器研究了毒砂在温度为15、25、35和45℃的FeCl3酸性地表水作用下的氧化溶解过程.结果显示在温度为15~35℃内,毒砂的氧化随FeCl3溶液浓度增加和反应温度升高而加速,而45℃时毒砂的反应速率反而降低;毒砂在与氧化剂FeCl3酸性溶液(浓度小于1×10-4 mol·  相似文献   

11.
章西焕 《地球学报》2017,38(2):223-228
矿物晶体收藏近年来成为一大热点,雄黄晶体艳丽,是地质类博物馆和矿物收藏家收藏的矿物种类之一,然而光照下雄黄不稳定,雄黄与光的反应倍受关注。因硫砷化合物的光化学灵敏度,硫砷化合物是一种重要的光学材料,国外开展了雄黄与光作用的反应产物和机理研究工作,雄黄与光的反应产物有副雄黄、砷华和χ-物相,在光照下雄黄通过As_4S_5分子间接地转变为副雄黄。作为药用矿物,As_2O_3是药用雄黄的组成部分,又是毒性成分,As_2O_3的来源与受到的高热和光照等有关,国内中医药界加强了对雄黄的物质成分的研究,还需加强光照对药用雄黄成分影响的研究。  相似文献   

12.
黄兴万 《矿物岩石》1995,15(3):76-81
本文简单了极化曲线反应极限电流强度确定矿体表面积的基本原理,阐述了单矿体和多矿物极化曲线反应极限电流强度确定矿体表面积的实验研究方法和结果,并说明极化曲线反应极限电流强度确定矿体表面积是有可能的。  相似文献   

13.
黄兴万 《矿物岩石》1994,14(4):92-97
本文用非接触极化曲线视反应电位差区分矿体矿物成分和确定矿体边界的基本原理,着重阐述矿物非接触极化曲线视反应电位差特征的实验研究方法和结果,并指出非接触极化曲线视反应电位差区分矿体矿物成分和确定矿体边界是有可能的。  相似文献   

14.
Abstract New occurrences of crossite and jadeitic pyroxene are described from a thick metabasite unit within the upper levels of the Peripheral Schieferhülle in the Tauern Window, Austria. Unusual textures are preserved which provide evidence for the reactions and mechanisms involved in the breakdown of crossite and jadeitic pyroxene. Zones of albite and chlorite, produced by reaction between crossite and paragonite, have been preserved due to sluggish reaction kinetics during decompression from the blueschist to the greenschist facies. The zonal sequence is interpreted in terms of chemical potential gradients in Na, Mg and Al, which have been established by overstepping the equilibrium boundary. Breakdown textures of jadeite-acmite pyroxene to a symplectite of albite + hematite + actinolite, and of crossite to talc and actinolite are also described.
The occurrence of crossite and jadeitic pyroxene at high levels within the Peripheral Schieferhülle implies that even upper levels of the structural sequence have undergone blueschist facies metamorphism with pressures in excess of 8 kbar during the Alpine collisional event.  相似文献   

15.
Seal or cap-rock integrity is a safety issue during geological carbon dioxide capture and storage (CCS). Industrial impurities such as SO2, O2, and NOx, may be present in CO2 streams from coal combustion sources. SO2 and O2 have been shown recently to influence rock reactivity when dissolved in formation water. Buoyant water-saturated supercritical CO2 fluid may also come into contact with the base of cap-rock after CO2 injection. Supercritical fluid-rock reactions have the potential to result in corrosion of reactive minerals in rock, with impurity gases additionally present there is the potential for enhanced reactivity but also favourable mineral precipitation.The first observation of mineral dissolution and precipitation on phyllosilicates and CO2 storage cap-rock (siliciclastic reservoir) core during water-saturated supercritical CO2 reactions with industrial impurities SO2 and O2 at simulated reservoir conditions is presented. Phyllosilicates (biotite, phlogopite and muscovite) were reacted in contact with a water-saturated supercritical CO2 containing SO2, or SO2 and O2, and were also immersed in the gas-saturated bulk water. Secondary precipitated sulfate minerals were formed on mineral surfaces concentrated at sheet edges. SO2 dissolution and oxidation resulted in solution pH decreasing to 0.74 through sulfuric acid formation. Phyllosilicate dissolution released elements to solution with ∼50% Fe mobilized. Geochemical modelling was in good agreement with experimental water chemistry. New minerals nontronite (smectite), hematite, jarosite and goethite were saturated in models. A cap-rock core siltstone sample from the Surat Basin, Australia, was also reacted in water-saturated supercritical CO2 containing SO2 or in pure supercritical CO2. In the presence of SO2, siderite and ankerite were corroded, and Fe-chlorite altered by the leaching of mainly Fe and Al. Corrosion of micas in the cap-rock was however not observed as the pH was buffered by carbonate dissolution. Ca-sulfate, and Fe-bearing precipitates were observed post SO2-CO2 reaction, mainly centered on surface cracks and an illite rich illite-smectite precipitate quantified. Water saturated impure supercritical CO2 was observed to have reactivity to rock-forming biotite, muscovite and phlogopite mineral separates. In the cap-rock core however carbonates and chlorite were the main reacting minerals showing the importance of assessing actual whole core.  相似文献   

16.
本工作首次在实验室条件下对浅生区紫硫镍矿(Ni,Fe)3S4交代镍黄铁矿(Ni,Fe)9S8水热反应的机理及动力学进行了研究。起始反应矿物采用高纯自然镍黄铁矿,合成纯镍黄铁矿或合成镍黄铁矿-磁黄铁矿集合体。反应pH值采用0.2M醋酸-醋酸纳缓冲溶液控制在3~5的范围内。反应进程由X-射线衍射物相定量分析及扫描电镜观察进行跟踪。结果表明,当反应温度恒定在80℃时,交代20(4)%的镍黄铁矿需792h。相同条件下加入少量H2S可将反应速率提高一倍。当反应在125℃饱和蒸汽压水热环境下进行时,完全交代纯镍黄铁矿需约168h。此过程由于磁黄铁矿的存在而被催化,交代集合体中的镍黄铁矿仅需68h,进一步反应磁黄铁矿被交代成白铁矿。磁黄铁矿的催化作用可能源于溶解产生的微裂纹加速了流体的传质过程。当反应温度升高至145℃时,速率反而下降,不遵循Arrhenius经验规律。动力学分析得80℃速率常数介于5.8×10-8~3.0×10-7/s之间,125℃及145℃速率常数分别介于2.8×10-6~2.08×10-5/s及1×10-6~5.1×10-6/s之间,远高于同温度下固相扩散反应的速率常数,表明该反应在地质时标上为一快速反应。此外,用背散射电子显微技术对矿物表面形貌进行了分析,发现交代产物紫硫镍矿具有颗粒细小及存在微裂纹等特征,与自然界浅生矿床中的紫硫镍矿非常相似;电镜实验还表明该交代作用是一个典型的耦合溶解-再沉淀反应。其耦合机制的驱动力可能与反应界面处微空隙对流体饱和度的控制有关。  相似文献   

17.
18.
胡斌  江祖成 《岩矿测试》1991,10(1):50-55
本文对近年来国内外关于直流电弧放电中的高温化学反应的应用进展进行了综述。附参考文献72篇。  相似文献   

19.
Petrological consequences of variations in metamorphic reaction affinity   总被引:3,自引:0,他引:3  
The extent to which kinetic barriers to nucleation and growth delay the onset of prograde metamorphic reaction, commonly known as overstepping, is related to the macroscopic driving force for reaction, termed reaction affinity. Reaction affinity is defined in the context of overstepping as the Gibbs free‐energy difference between the thermodynamically stable, but not‐yet‐crystallized, products and the metastable reactants. Mineral reactions which release large quantities of H2O, such as chlorite‐consuming reactions, have a higher entropy/volume change, and therefore a higher reaction affinity per unit of temperature/pressure overstep, than those which release little or no H2O. The former are expected to be overstepped in temperature or pressure less than the latter. Different methods of calculating reaction affinity are discussed. Reaction affinity ‘maps’ are calculated that graphically portray variations in reaction affinity on equilibrium phase diagrams, allowing predictions to be made about expected degrees of overstepping. Petrological consequences of variations in reaction affinity include: (i) metamorphic reaction intervals may be discrete rather than continuous, especially in broad multivariant domains across which reaction affinity builds slowly; (ii) reaction intervals may not correspond in a simple way to reaction boundaries and domains in an equilibrium phase diagram, and may involve metastable reactions; (iii) overstepping can lead to a ‘cascade effect’, in which several stable and metastable reactions involving the same reactant phases proceed simultaneously; (iv) fluid generation, and possibly fluid presence in general, may be episodic rather than continuous, corresponding to discrete intervals of reaction; (v) overstepping related to slowly building reaction affinity in multivariant reaction intervals may account for the commonly abrupt development in the field of certain index mineral isograds; and (vi) P–T estimation based on combined use of phase diagram sections and mineral modes/compositions on the one hand, and classical thermobarometry methods on the other, may not agree even if the same thermodynamic data are used. Natural examples of the above, both contact and regional, are provided. The success of the metamorphic facies principle suggests that these kinetic effects are second‐order features that operate within a broadly equilibrium approach to metamorphism. However, it may be that the close approach to equilibrium occurs primarily at the boundaries between the metamorphic facies, corresponding to discrete intervals of high entropy, dehydration reaction involving consumption of hydrous phases like chlorite (greenschist–amphibolite facies boundary) and mica (amphibolite–granulite facies boundary), and less so within the facies themselves. The results of this study suggest that it is important to consider the possibility of reactions removed from equilibrium when inferring the P–T–t evolution of metamorphic rocks.  相似文献   

20.
Determining whether a reaction can be written between a set of minerals within error is an example of the more general problem of determining whether a set of compositions are coplanar within error. Generally if the compositions are of minerals, ‘within error’ should allow the minerals to maintain stoichiometry. The problem is addressed via the addition of a ‘bogus’ composition to the set, and calculating the reaction coefficients for a reaction between the compositions in this augmented set. A reaction can be written if a confidence interval on the reaction coefficient of ‘bogus’ includes zero. The reaction coefficients can be solved for directly when the problem is posed in terms of least squares with equality constraints. The confidence interval is determined with a bootstrap method, allowing the result to depend on the scatter of the data around the solution of the least squares problem, not on the data uncertainties  相似文献   

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