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1.
用共振搅拌反应器研究了煤液化过程中溶剂的作用,结果表明,用大分子直链脂肪烃、单环苯系列化合物作溶剂,煤转化率较低。比较不同环数化合物作溶剂对应的煤转化率可得,单环苯系列< 两环萘系列<三环蒽、菲。使用芘溶剂和萘溶剂转化率相近;酚类化合物不适合作煤液化的溶剂;同系列物相比,煤转化率次序为,部分氢化芳香化合物作溶剂>带侧链的芳香化合物作溶剂>芳香化合物作溶剂>完全氢化芳香化合物(环烷烃)作溶剂。气氛对煤转化率的影响与所用溶剂的种类有关,用十氢萘和甲基萘做溶剂时,气氛的影响很小,使用四氢萘时,气氛的影响很大。  相似文献   

2.
刘有成  王玉琨 《化学学报》1985,43(3):232-236
作者测定了有机溶剂-水二元混合溶剂体系中2,2,6,6-四甲基哌啶1-氧自由基(TMPO)的ESRaN 值. 这类混合溶剂体系中aN-m关系可归属有机二元混合溶剂体系的四种典型线关系. 比较了几种溶剂极性经验参数, 说明各种经验极参数-m关系图的差异是特定模型反痘中溶剂分子与溶质分子间相互作用不同的反映. 对二元混合溶剂体系而言, aN-Er(30),aN-Z一般不具有线线性关系, 认为溶剂极性经验参数是溶剂(包括溶剂混合物)对模型化合物溶剂化能力的标度, 给出了在各种溶剂体系中的aN 测定值, 作为溶剂对中性偶极分子相对溶剂化能力的经验标度.  相似文献   

3.
为制备至少一种固体在溶剂中的溶液,该固体贮存于空腔中。其中在溶剂中可溶的固体首先用在该溶剂中不溶的介质所覆盖或包封,以阻止该固体的溶解。接着将溶剂导入空腔,并如此处理在该溶剂中不溶的介质,以使在溶剂和可溶的固体之间进行接触,由此使该固体在溶剂中溶解。可以有利方法制备含两种或多种固体的溶液。  相似文献   

4.
选用ZnCl2为催化剂在高压反应釜中进行加氢液化反应,利用GC-MS和红外光谱技术,研究溶剂极性及供氢能力对木质素磺酸盐液化产率及产物的影响。产率分析表明,极性溶剂有利于木质素液化转化,供氢溶剂有利于提高轻馏分产率,水溶剂条件下木质素液化转化率最高,甲醇溶剂体系条件下轻馏分产率最高,相对最低液化转化率及轻馏分产率的1,4二氧六环溶剂体系分别提高2.0倍和1.9倍。GC-MS分析表明,中等极性溶剂有利于中间产物溶解稳定,供氢溶剂四氢萘通过释放氢自由基结合稳定中间产物。乙醇溶剂条件下中间产物相对含量是48.76%,相对最低含量水溶剂体系提高2.2倍。红外光谱分析表明,醇类溶剂参与反应,焦油产物羟基峰强度增强。  相似文献   

5.
把二元溶液的过剩内能(excess energy)分成溶剂-溶剂、溶剂-溶质及溶质-溶质相互作用部分。利用集团展开方法给出了二元溶液在正则系综的配分函数的表达式,利用该表达式得到了溶质的偏摩尔内能(partial molar energy)和偏摩尔熵(partial molar entropy)的表达式。在无限稀溶液情形,过剩偏摩尔内能的溶剂-溶剂部分又称重组织内能(reorganization energy),它反映了溶质存在时对其周围溶剂分子之间的相互作用能的影响。研究表明,在溶质的粒子数密度相对较大时,溶质分子之间的相互作用将影响过剩偏摩尔内能的溶剂-溶剂部分,对于稀溶液,过剩偏摩尔内能的溶剂-溶剂部分与溶质的摩尔分数成线性关系。对低密度二元溶液,溶质的过剩偏摩尔内能和过剩偏摩尔熵也与溶质的摩尔分数成线性关系。  相似文献   

6.
醇类溶剂溶剂化显色极性的理论分析   总被引:5,自引:0,他引:5  
邹建卫  俞庆森  商志才 《化学学报》2000,58(10):1247-1253
对一系列醇类溶剂分子进行了理论计算,运用多元线性回归分析方法从分子间相互作用的角度对四种溶剂化显色极性参数(E~T^N,π^*,Py和SPP)进行了理论分析。结果表明,对醇类溶剂而言,参数E~T^N和SPP实质上主要反映的是溶剂的氢键酸性性质;参数π^*中虽然包含了溶剂的极性因素,但同时与溶质-溶剂分子间的电荷转移相互作用有着密切的关系;而参数Py则较好地反映了溶剂的极性性质。  相似文献   

7.
作者测定了有机溶剂-水二元混合溶剂体系中2,2,6,6-四甲基哌啶-1-氧自由基(TMPO)的ESRa_N 值.这类混合溶剂体系中 a_N-m 关系可归属有机二元混合溶剂体系的四种典型线型关系.比较了几种溶剂极性经验参数,说明各种经验极性参数-m 关系图的差异是特定模型反应中溶剂分子与溶质分子间相互作用不同的反映.对二元混合溶剂体系而言,a_N-E_T(30),a_N-Z 一般不具有线性关系,认为溶剂极性经验参数是溶剂(包括溶剂混合物)对模型化合物溶剂化能力的标度,给出了在各种溶剂体系中的 a_N 测定值,作为溶剂对中性偶极分子相对溶剂化能力的经验标度.  相似文献   

8.
以2,2,6,6-四甲基哌啶-1-氧自由基为模型化合物, 测定了32种二元混合溶剂体系在溶剂摩尔比变化时氮氧蝠由基的电子蝠旋共振谱. 发现对不同的溶剂体系, 各向同性超精细分裂常数An 随溶剂摩尔数变化的规律变化时氮氧蝠由基的电子蝠旋共振谱. 发现对不同的溶剂体系, 各向同性超精细分裂常数An 随溶剂摩尔数变化的规律性偶极顺磁性分在混合溶剂中也存在着优先溶剂化现象, 对这些现象进行了极步讨论.  相似文献   

9.
离子溶剂化热力学的理论研究是一项令人感兴趣的工作.在Born理论的基础上人们先后提出了多种较详细的计算离子溶剂化热力学量的模型或公式,并对离子在不同溶剂中的溶剂化自由能进行了理论计算.本文从离子-溶剂间的相互作用力出发,分别考虑了离子溶剂化过程中造腔作用、静电吸引、静电排斥及非静电相互作用对离子溶剂化焓的贡献,得到了一个具有一定意义的、计算离子溶剂化焓的理论公式。  相似文献   

10.
溶剂气浮法去除水中的刚果红的研究   总被引:3,自引:0,他引:3  
以十六烷基三甲基溴化铵为表面活性剂, 与阴离子型染料刚果红形成缔合物, 对该缔合物的溶剂气浮过程进行研究. 研究多种参数对溶剂气浮过程的影响, 如气浮速率、共存溶质的量、pH等参数对溶剂气浮去除率的影响. 研究表明表面活性剂与染料的物质的量之比为2∶1, 约24 min水中刚果红的去除率可达97%;NaCl会大大降低溶剂气浮的去除率;溶剂气浮的速率随着气流速率的增加而增加, 但高速率反而降低溶剂的去除率;共存溶质乙醇存在会使去溶剂去除率降低, 有机溶剂的量对溶剂气浮影响较小;pH中性去除率最佳;考察了不同温度下溶剂气浮的热力学及动力学, 研究表明, 溶剂气浮过程遵从一级动力学, 计算了该过程中的气浮表观活化能为7.48 kJ/mol.  相似文献   

11.
Summary Phase soaking is a solvent effect which tends to reconcentrate peaks eluted after and to broaden peaks eluted before the solvent. The principles of the phase soaking effect on peaks eluted before the solvent are discussed. The broadening effect is distinguished from the broadening effect occurring in the flooded column inlet by partial solvent trapping. It was found that in most cases broadening by partial solvent trapping strongly predominated over broadening by phase soaking. Phase soaking was noticeable only in the neighbourhood of the solvent peak.Phase soaking does not broaden peaks eluted before the solvent as much as it re-concentrates those eluted after it. The two phase soaking effects on the front and the rear of the solvent band (that is, of the soaked zone) differ strongly from each other.Peak broadening by phase soaking is negligible for non-trapped components, because such solutes start their chromatography before a significant quantity of solvent enters the column. Phase soaking only broadens solute bands which were retained by the solvent in the column inlet, that is, bands already broadened by partial solvent trapping.  相似文献   

12.
Results of molecular dynamics simulations are presented for the pair distribution function between nanoparticles in an explicit solvent as a function of nanoparticle diameter and interaction strength between the nanoparticle and solvent. The effect of including the solvent explicitly is demonstrated by comparing the pair distribution function of nanoparticles to that in an implicit solvent. The nanoparticles are modeled as a uniform distribution of Lennard-Jones particles, while the solvent is represented by standard Lennard-Jones particles. The diameter of the nanoparticle is varied from 10 to 25 times that of the solvent for a range of nanoparticle volume fractions. As the strength of the interactions between nanoparticles and the solvent increases, the solvent layer surrounding the nanoparticle is formed which increases the effective radii of the nanoparticles. The pair distribution functions are inverted using the Ornstein-Zernike integral equation to determine an effective pair potential between the nanoparticles mediated by the introduction of an explicit solvent.  相似文献   

13.
溶剂浮选分离富集麻黄草中有效成分   总被引:18,自引:1,他引:17  
董慧茹  王士辉 《分析化学》2004,32(4):503-506
采用溶剂浮选法分离富集麻黄草中的有效成分。考察了浮选溶剂、氮气流速、试液pH、浮选时间及电解质NaCl等因素对浮选效率的影响,优选出最佳浮选条件;对最佳条件下的浮选结果进行了评价,并与溶剂萃取法进行了对照;对麻黄草有效成分的浮选过程进行了初步探讨,浮选过程符合一级动力学方程。  相似文献   

14.
We present a theoretical study of the quantum solvation of the HF molecule by a small number of parahydrogen molecules, having n = 1-13 solvent particles. The minimum-energy cluster structures determined for n = 1-12 have all of the H(2) molecules in the first solvent shell. The first solvent shell closes at n = 12 and its geometry is icosahedral, with the HF molecule at the center. The quantum-mechanical ground-state properties of the clusters are calculated exactly using the diffusion Monte Carlo method. The zero-point energy of (p-H(2))(n)HF clusters is unusually large, amounting to 86% of the potential well depth for n > 7. The radial probability distribution functions (PDFs) confirm that the first solvent shell is complete for n = 12, and that the 13th p-H(2) molecule begins to fill the second solvent shell. The p-H(2) molecules execute large-amplitude motions and are highly mobile, making the solvent cage exceptionally fluxional. The anisotropy of the solvent, very pronounced for small clusters, decreases rapidly with increasing n, so that for n approximately 8-9 the solvent environment is practically isotropic. The analysis of the pair angular PDF reveals that for a given n, the parahydrogen solvent density around the HF is modulated in a pattern which clearly reflects the lowest-energy cluster configuration. The rigidity of the solvent clusters displays an interesting size dependence, increasing from n = 6 to 9, becoming floppier for n = 10, and increasing again up to n = 12, as the solvent shell is filled. The rigidity of the solvent cage appears to reach its maximum for n = 12, the point at which the first solvent shell is closed.  相似文献   

15.
Self-assembly structures investigated by using scanning tunneling microscopy (STM) at liquid/solid interface have been a topic of broad interest in surface science, molecular materials, molecular electronics. The delicate balance among the adsorbate–solvent, adsorbate–adsorbate, solvent–solvent interactions would give rise to the coadsorption or competitive deposition of solvent with adsorbate. The solvents at the interface enable dynamic absorption and desorption of the adsorbates leading to the controlled assembly of the molecular architectures. The solvent-induced polymorphism, coadsorption effect, as well as solvent effects on chirality and electronic structures are discussed in this report in view of the polarity, solubility and viscosity of the solvent, the hydrogen bonding formation between solute and solvent, and the solvophobic and solvophilic effects. The systematic studies on the solvent effects would shed light on better control of assembly structures for design of new molecular materials and molecular electronics.  相似文献   

16.
The conformation of a polymer chain in solution is intrinsically coupled to the thermodynamic and structural properties of the solvent. Here we study such solvent effects in a system consisting of a flexible interaction-site n-mer chain immersed in a monomeric solvent. Chain conformation is described with a set of intramolecular site-site probability functions. We derive an exact density expansion for these intramolecular probability functions and give a diagrammatic representation of the terms contributing at each order of the expansion. The expansion is tested for a short hard-sphere chain (n=3 or 4) with site diameter sigma in a hard-sphere solvent with solvent diameter D. In comparison with Monte Carlo simulation results for 0.2< or =D/sigma< or =100, the expansion (taken to second order) is found to be quantitatively accurate for low to moderate solvent volume fractions for all size ratios. Average chain dimensions are predicted accurately up to liquidlike solvent densities. The hard-sphere chains are compressed with both increasing solvent density and decreasing solvent size. For small solvent (D相似文献   

17.
溶剂浮选法分离富集茶叶中茶多酚的研究   总被引:5,自引:0,他引:5  
采用溶剂浮选法分离富集了茶叶中的茶多酚。考察了浮选溶剂、氮气流速、试液pH及浮选时间等因素对浮选效率的影响,优选出最佳浮选条件;对最佳条件下的浮选效果进行了评价,并与溶剂萃取法进行了比对,前者明显优于后者。  相似文献   

18.
The mechanism of decoloration of thermally degraded poly(vinyl chloride (PVC)) by solvents has been investigated systematically. The main results obtained are as follows. Good solvents for PVC, especially tetrahydrofuran, methyl ethyl ketone, and dioxane are effective for decoloration. The solvent peroxide which is formed by autoxidation of solvent contributes to decoloration. The number of double bonds in degraded PVC decreases as the decoloration proceeds and at the same time the solvent peroxide existing in solvent is consumed. Moreover, the existence of solvent fragments in decolored PVC is recognized. From these results, it is most reasonable to conclude that the decoloration mechanism is as follows: the solvent partially is changed to a solvent peroxide by autoxidation, and the solvent peroxide reacts with polyene double bonds of degraded PVC and breaks down conjugated double bonds, and consequently degraded PVC is decolored.  相似文献   

19.
采用溶剂浮选法分离富集葛根中的大豆甙元。考察了浮选溶剂、氮气流速、试液pH、浮选时间及电解质(KC1)等因素对浮选效率的影响,优选出最佳浮选条件;对最佳条件下的浮选效果进行了评价,并与溶剂萃取法进行了对照,前者明显优于后者。  相似文献   

20.
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