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1.
强化絮凝工艺已在去除有机污染物的水处理工艺中得到较好应用,但其作用机理一直未能得到明晰的结论,而且阳离子聚电解质强化絮凝具有“高效性“和“专属性“的问题也无法回答.近年来由于分子环境科学及先进化学分析手段的应用,基于不同絮凝化学成因的强化絮凝技术研究已成为环境水化学和水污染控制技术领域的研究热点.本文综述了国际上近年提出的专属吸附絮凝、聚电解质络合絮凝和胶束吸附絮凝等强化絮凝技术化学成因的研究现状,并对今后的研究提出了展望.  相似文献   

2.
阳离子聚电解质强化絮凝去除有机污染物的化学成因   总被引:1,自引:0,他引:1  
强化絮凝工艺已在去除有机污染物的水处理工艺中得到较好应用,但其作用机理一直未能得到明晰的结论,而且阳离子聚电解质强化絮凝具有“高效性”和“专属性”的问题也无法回答。近年来由于分子环境科学及先进化学分析手段的应用,基于不同絮凝化学成因的强化絮凝技术研究已成为环境水化学和水污染控制技术领域的研究热点。本文综述了国际上近年提出的专属吸附絮凝、聚电解质络合絮凝和胶束吸附絮凝等强化絮凝技术化学成因的研究现状,并对今后的研究提出了展望。  相似文献   

3.
甲壳素-壳聚糖对皂土悬浮液的絮凝   总被引:3,自引:0,他引:3  
研究了三种摩尔质量大体相同而脱乙酰度分别为93%、78%和62%的甲壳素-壳聚糖在pH=3~6范围内对皂土悬浮液的絮凝性质, 并与非离子型絮凝剂聚丙烯酰胺作了比较, 证明含自由氨基的甲壳素-壳聚糖在酸性溶液中形成阳离子聚电解质后. 对带负电的皂土悬浮颗粒有很好的絮凝能力. 通过对上述三种聚合物的絮凝能力、在皂土颗粒表面的吸附量等测定, 认为絮凝中桥连机制起了主导作用, 但聚合物所带正电荷则有利于被皂土颗粒所吸附, 电中和还降低了颗粒间的静电排斥, 这都对桥连絮凝起了促进作用. 聚丙烯酰胺分子在水中不带电, 故当介质pH升高使皂土颗粒双电层变厚时, 絮凝能力迅速下降.  相似文献   

4.
聚离子液体功能材料研究进展   总被引:6,自引:0,他引:6  
钱文静  袁超  郭江娜  严锋 《化学学报》2015,73(4):310-315
聚离子液体(PILs)材料兼具离子液体和聚合物的性质, 近年来已经在高分子化学、材料科学及能源科学等领域得到初步应用, 并引起了人们广泛关注. 本论文介绍了聚离子液体的合成, 综述其在(准)固态电解质、燃料电池聚电解质膜、刺激响应性功能材料, 以及碳材料等相关领域的研究与应用.  相似文献   

5.
王蕾  梁好均 《化学学报》2011,69(23):2773-2780
采用非局域密度泛函理论计算方法(NLDFT), 我们研究了两种带相反电荷的聚电解质混合物在均匀带电平面上的吸附以及吸附层的电荷反转现象. 我们对表面带电密度和聚电解质链段的价态对吸附的影响做了系统研究, 发现在体系中不含小离子的情况下, 当体系中两种聚电解质链段都为单价时, 和表面带相反电荷的聚电解质链能够吸附在平面上, 而和表面带相同电荷的聚电解质链和表面之间相互排斥, 整个过程就是表面电荷被与之带相反电荷的聚电解质链上所带电荷中和的过程, 没有出现明显的电荷反转现象|当体系中作为反离子存在的聚电解质链段价态为二价时, 和表面带相同电荷的聚电解质链能在表面上吸附, 出现明显的电荷反转现象. 理论研究表明, 以反离子居中为媒介的静电相关效应是聚电解质混合物出现多层吸附的主要驱动力之一.  相似文献   

6.
在非水介质中制备聚电解质静电吸附自组装膜   总被引:1,自引:0,他引:1  
静电吸附自组装是近年来得到广泛研究和应用的一种制备超薄膜的方法,具有操作简单,膜厚可控等很多优点,已经被广泛应用于制备各种功能薄膜材料[1~4].通常情况下,聚电解质的静电吸附自组装都是在水中进行的.一方面,聚电解质在水中可以很容易的实现电离;另一方面,以水做介质可以避免有机溶剂的污染,尤其对模仿各种生物环境非常有利.所以自1991年Decher首先报道该方法以来,绝大多数的聚电解质静电吸附自组装是以水为介质.但是,以水做介质也常常会遇到一些困难,尤其对于疏水性(包括非水溶性)聚电解质来说.在当前研究的许多热点领域中如导电、发…  相似文献   

7.
表面活性剂可以与污泥表面的胞外聚合物(EPS)吸附形成胶束,释放出自由水和结合水,从而达到改善污泥脱水性能的目的.本文采用粗粒化的分子动力学模拟方法,研究了Gemini表面活性剂与EPS形成复合物的过程和结构.聚电解质链的亲疏水性对吸附过程有显著影响,亲水聚电解质链与Gemini表面活性剂吸附的主要驱动力为静电吸引,Gemini表面活性剂头基吸附在链上,尾链朝向溶剂;疏水聚电解质链与Gemini表面活性剂吸附过程由静电作用与疏水作用共同促进,Gemini表面活性剂以平行于聚电解质链的构型存在.Gemini表面活性剂联结基团长度对吸附过程的影响甚微;聚电解质链的电荷密度对亲水聚电解质链的吸附产生协同作用,对疏水聚电解质链的吸附不产生作用.  相似文献   

8.
黄艳琴  范曲立  黄维 《化学进展》2008,20(4):574-585
水溶性共轭聚电解质主要是指含离子型官能团侧链的共轭聚合物,可在水或其它极性有机溶剂中能够溶解。这类化合物把传统共轭聚合物的光电性质和聚电解质的水溶性特点结合在一起,显示出的一些独特性质,可在新一代光电器件制作和化学生物荧光传感器中获得多样的应用。本文总结了近10年来报道的水溶性共轭聚电解质的结构特点和合成方法,以及对不同化学或物理条件下光物理性质的研究,归纳了它们在新一代光电器件制作和荧光传感中的应用,并在此基础上提出了水溶性共轭聚电解质研究中尚待解决的问题,并展望了水溶性共轭聚电解质的应用前景。  相似文献   

9.
侧链型偶氮聚电解质自组装和膜结构研究   总被引:5,自引:1,他引:4  
研究了4种侧链型偶氮聚电解质的自组装过程及其对自组装膜结构的影响.用聚电解质上的偶氮基团作为“探针”,研究了自组装过程中出现的生色团取向、解吸附和非线性增长等现象.这些侧链型偶氮聚电解质均具有较好的自组装性,但其自组装行为有很大差异.在不同的pH条件下,聚电解质的电离程度不同,导致吸附过程和自组装膜结构亦明显不同.自组装膜的增长和结构取决于体系中吸附和解吸的平衡.偶氮生色团端基的亲水或疏水性对自组装膜的增长有明显的影响.偶氮聚电解质自组装过程不同阶段出现的非线性增长现象,分别反映了基底、溶液性质和聚电解质结构等因素的影响.  相似文献   

10.
介绍了中子反射在相反电荷聚电解质/表面活性剂体系的界面行为研究中的基本原理.在阐述经典的弱相互作用体系的界面吸附行为和表面张力曲线的基础上,分析了聚合物浓度、电解质、表面活性剂疏水基链长对相反电荷聚电解质/表面活性剂体系表面张力曲线的影响,并结合中子反射实验结果,根据相反电荷聚电解质/表面活性剂体系的表面张力曲线是否出现突跃峰,将其界面吸附行为分为两类并提出了两种类型表面张力曲线对应的理论模型.  相似文献   

11.
The spectral-polarization characteristics of absorption and phosphorescence of molecules of the initial form of nitro-substituted indolinospirobenzothiopyran were studied in oriented polyethylene films and in solutions with different polarity. An oscillator model of the electron transitions responsible for the formation of absorption and luminescence spectra was suggested. It was established that the principal differences in the spectral and photophysical properties of the compound studied and its oxygen-containing analog are associated with the fact that the electronegativity of the S atom is lower than that of the O atom. Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 6, pp. 1143–1146, June, 1997.  相似文献   

12.
Two vanilloids, (5E)-8-(4-hydroxy-3-methoxyphenyl)oct-5-en-4-one (1) and 4-[3-hydroxydecyl]-2-methoxyphenol (2), isolated from the dried seeds of Grains of Paradise (Aframomum melegueta), were synthesized; the latter compound was made as the S-enantiomer and the material derived from the seeds was found to be a 1:1.7 mixture of the R and S isomers. The synthetic route used should allow the preparation of analogs having extended alkyl chains and consequently different lipophilicity, and 3, a homolog of 2, was also prepared.  相似文献   

13.
非那雄胺能抑制5α-还原酶的活性,明显降低二氢睾酮水平,是一种治疗良性前列腺增生的有效药品。该合成工艺以甾烯酮酸为原料,将其与氯化亚砜反应,无须分离即与叔丁胺反应得17β-酰胺化合物,再氧化开环,环合,氢化,脱氢合成了非那雄胺。经元素分析、IR、1HNMR、13CNMR、MS分析表征了其结构。该法无须使用昂贵的2,2-二吡啶二硫化物和剧毒药品苯亚硒酸酐,且以乙酸铵代替氨气,降低了对设备的要求和腐蚀,更适用于工业生产。  相似文献   

14.
Main hydration products of two cement pastes, i.e. CSH-gel, portlandite (P) (and specific surface S) were studied by static heating, and by SEM, TEM and XRD, as a function of cement strength (C-33 and C-43) hydration time (th) and subsequent hydration in water vapour.Total change in mass on hydration and air drying, Mo, increased with strength of cement paste and with hydration time. Content of water escaping at 110 to 220°C, defined as water bound with low energy, mainly interlayer and hydrate water, was independent on cement strength but its content increased with (th). Content of chemically bound (zeolitic) water in CSH-gel, escaping at 220-400°C, was slightly dependent on strength and increased with (th). It was possibly derived from the dehydroxylation of CSH-gel and AFm phase. Portlandite water, escaping at 400-500°C, was independent on cement strength and was higher on longer hydration. Large P crystals were formed in the weaker cement paste C-33. Smaller crystals were formed in C-43 but they increased with (th). Carbonate formated on contact with air (calcite, vaterite and aragonite), decomposed in cement at 600-700oC. It was high in pastes C-33(1 month) and C-43(1 month), i.e. 5.7 and 3.3%, respectively; it was less than 1% after 6 hydration months (low sensitivity to carbonation) in agreement with the XRD study showing carbonates in the air dry paste (1month), and its absence on prolonged hydration (6 months) and on acetone treatment. Water vapour treatment of (6 months) pastes or wetting-drying increased this sensitivity.Nanosized P-crystals, detected by TEM, could contribute to the cement strength; carbonate was observed on the rims of gel clusters.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   

15.
16.

The heats of detonation of 20 simple high explosives and explosive mixtures were determined by means of an adiabatic detonation calorimeter designed by the authors. The results indicated that the performance of the instrument was reliable and the experimental data were very accurate. For explosive mixtures, there was a linear accumulative relationship between the heats of detonation of the explosive mixture and its components. Accordingly, the heats of detonation of explosive mixtures could be calculated directly from the heats of detonation of simple explosives and the characteristic heats of other components. The experiments showed that the gold or brass shell of the cylindrical charge could be substituted by a thick-walled porcelain shell, which had the advantage of cheapness.

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17.
针对恶臭测试的环境影响问题,提出了解决的实例方案,并对方案的要点及优缺点进行讨论,此方案在实际操作中具有较好的效果。  相似文献   

18.
The kinetics of the interaction between lithium carbonate and silica with various degrees of dispersion was investigated by TG and DTA methods. It was found that the utilization of pyrogenic silica with a specific surface area of about 300 m2g-1 instead of aerosil with one of 175 m2g-1 leads to an increase of the reaction rate between lithium carbonate and silica, which depends on the formation and growth of lithium orthosilicate crystals in the first stage, and is conditioned by the diffusion of lithium and oxygen ions through the lithium orthosilicate layer formed at temperatures above 800 K. This supposition is supported by the kinetic analysis results obtained with the use of the different models. The optimal regime of heating is recommended. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

19.
小环化合物中饱和碳质子化学位移的计算   总被引:3,自引:0,他引:3  
小环化合物由于其张力、构型、构象和各向异性效应等原因,环碳上质子化学位移缺乏规律性,难以预测,对此作者曾提出一种近似算法。本文根据303种小环化合物中饱和碳质子的化学位移实验数据,将适于计算这类质子化学位移的公式表述为:  相似文献   

20.
袁丽秋 《化学教育》2006,27(5):8-10
面对日益枯竭的能源危机,氢能是一种洁净、最有前景的替代能源。目前在各种制氢的方法中光催化分解水制氢的研究最多,光解水过程中催化剂最关键,本文对利用太阳能光解水的途径、提高光催化反应效率以及光催化剂的开发研究进行了综述。  相似文献   

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