强电解质

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  • strong electrolytes
强电解质强电解质
  1. 耐盐性吸水树脂具有非常好的吸水和保水能力且在强电解质存在条件下保持较高的吸水能力,这些优点使其具备广泛的应用前景。

    Salt-tolerance of water-absorbent resin has a very good absorbent and water-retention capacity and conditions for the existence of strong electrolytes to maintain a higher water absorption capacity , the advantages to have a wide application prospect .

  2. 凝固点降低法测定强电解质表观电离度的探讨

    Study on the Determination of Apparent Ionization Degree of Strong Electrolytes by the Solidifying Point Reduction Method

  3. SiO2气凝胶为基体,乙醇水溶液为分散介质,三聚磷酸钠为强电解质。

    SiO_2 aerogel used as the base , ethanol / water as the separating medium , and STPP ( sodium tripolyphosphate ) as the strong electrolyte .

  4. 结果表明,虽然碘化氢水溶液是强电解质溶液,利用NRTL方程,并将其参数展开为温度的多项式,仍可满意地关联并准确预测多元系的汽液平衡。

    Our results indicated that although aqueous hydrogen iodide is a strong electrolytic solution , by use of NRTL equation and expanding its parameters into polynomial series of temperature , it was able to predict multicomponent equilibrium from binary data .

  5. 利用优化的方法和实验条件,完成了由强电解质盐酸和氢氧化钠形成的MNRB实验。

    With the introduced method and optimized conditions , the experiments of MNRB were performed with strong reactive electrolytes of hydrochloric acid and sodium hydroxide .

  6. 根据DebyeH櫣ckel理论和Onsager理论,发展了一种强电解质稀溶液电导的预测方法,该方法适宜用于极限摩尔电导已知或未知的条件下电解质溶液摩尔电导的计算。

    Based on Debye H ü ckel and Onsager electrolyte solution theory , a predicting method was proposed for dilute electrolyte solution . It can be used to predict the conductance of electrolyte solutions at 298.15K under the conditions with or without the molar conductance at infinity .

  7. 离子相互作用和强电解质活度系数理论

    Theory of ionic interaction and activity coefficient of strong electrolyte

  8. 强电解质凝胶的溶胀平衡与体积相变

    Swelling Equilibria and Volume Phase Transition of Strong Electrolyte Gels

  9. 淀粉经过阳离子化后接枝丙烯酸(钠)对强电解质溶液的吸收倍率高于原淀粉接枝产品。

    The superabsorbents-starch-grafted-polyacrylate after cationization have better absorbability than the products without cationization .

  10. 挥发性强电解质混合溶剂体系的汽液平衡研究

    Studies on the Vapor Liquid Equilibria for Strong Volatile Electrolyte Mixed Solvent System

  11. 初级的强电解质水溶液热力学模型

    Primary thermodynamic model for strong electrolyte aqueous solutions

  12. 基于微扰理论和平均球近似的强电解质水溶液分子热力学模型

    Molecular thermodynamic model for strong electrolyte aqueous solution based on perturbation theory and mean spherical approximation

  13. 强电解质和弱电解质

    Strong electrolyte and weak electrolyte

  14. 电导率测定表明酒石酸氢2扬州大学硕士论文钠、已二酸四乙酸二钠和乳酸钙纳米微粒在稀溶液中具有强电解质的行为。

    The conductometry indicates sodium hydrogen tartrate , ethylenediaminetetraacetic acid disodium salt , calcium lactate and silver sulfide nanoparticles represent strong electrolyte behavior in dilute solution .

  15. 本文探讨用凝固点降低法测定强电解质表观电离度的实用性及操作规范。

    The practicality and the operational standard of determining the apparent ionization degree of strong electrolytes by means of solidifying point reduction method are researched in this article .

  16. 用比电导法研究两种活性炭自稀水溶液中吸附强电解质硫酸铬和硫酸铜的吸附平衡特性。

    This article reported the study of adsorption balance character of two kinds of activated carbon , by specific conductance method , Which can adsorb strong electrolyte chromium sulfate and copper sulfate from dilute aqueous solution .

  17. 通常认为,弱电解质溶液无限稀时的摩尔电导∧0不能直接测定,它只能通过相关强电解质溶液无限稀时的摩尔电导及离子独立移动定律计算得出。

    It is commonly considered that molar conductance of infinitely dilute weak electrolyte solution Λ 0 can not be measured directly , but by calculation with the molar conductance of strong electrolyte solution and law of independent ionic movement .

  18. 用平均球近似处理离子-离子间的静电相互作用,用微扰理论处理电解质溶液中各种粒子间的其他相互作用,建立了一个强电解质水溶液的分子热力学模型。

    A molecular thermodynamic model for the calculation of ionic mean activity coefficients in electrolyte aqueous solution is developed by treating the ion - ion electrostatic interactions with mean spherical approximation ( MSA ) of all particles in the solution and other interactions with perturbation theory , respectively .

  19. 长江口航道淤积的主要成因是河流从上游带来的大量粘性细颗粒泥沙,在河口盐、淡水交汇处遇强电解质海水,产生絮凝形成絮团而加速沉降形成的。

    The main factors causing sediment deposition on the waterway at the Yangtze River Estuary are the flocculation of large amounts of cohesive fine grain sediment from the upper reaches , induced by strong electrolyte seawater at the border of seawater and freshwater , and the quick settling of flocs .

  20. 在本论文第四章,研究了含有间隔基团的强聚电解质PAMPS的界面吸附性质。

    In Chapter 4 , the SMFS of a strong polyelectrolyte ( PAMPS ) is studied , in terms of desorption and elongation .

  21. 相反电荷强聚电解质复合物盐溶液的粘度研究

    Viscosity of the Oppositely - charged Strong Polyelectrolyte Complex in Brine

  22. 荧光标记磺酸基强聚电解质的合成

    Syntheses of Pyrenyl and Dansyl Labeled Strong Polyelectrolytes with Sulfonate Groups

  23. 强聚电解质在DMSO/THF中溶剂化状态的变化

    Changes in Solvation State of Strong Polyelectrolytes in DMSO / THF Mixtures

  24. 强聚电解质对离子型芘衍生物探针的键合

    Binding of Ionic Derivative of Pyrene to Strong Polyelectrolyte

  25. 强反应电解质形成的移动化学反应界面:实验分析

    Moving chemical reaction boundary formed by strong reaction electrolytes : analyses of experimental data

  26. 目的:体外观察比较强酸性电解质水与其他3类冲洗剂及方法在根管冲洗中的清洁效果和牙本质显微硬度。

    PURPOSE : To evaluate and compare the cleaning effectiveness of strong acid electrolytic water ( SAEW ) with other three kinds of irrigation methods and irrigants in root canal treatment in vitro .

  27. 超细磨助磨剂是能在矿物表面吸附的强亲水性电解质,其吸附能力越强,亲水性越好和带电荷越多,则其分散和助磨作用越好。

    Ultrafine grinding aids are a kind of strongly hydrophilic electrolyte which may be adsorbed on minerals , the stronger its adsorption ability and hydrophilicity and more its charge , the better its dispersion and grinding promotion activity .

  28. 采用自由基溶液聚合方法,将KOH嵌入由聚丙烯酸/聚丙烯酰胺(PAA/PAAM)构成的固体凝胶中,制成具有较高机械强度的强碱性固体凝胶电解质。

    When KOH was embedded in PAA / PAAM gel by the way of radical solution polymerization , a strong alkaline gel electrolyte with reasonable mechanical strength was made . It was found that the conductivity of the gel electrolyte at ambient temperature was similar to that of KOH solution ;

  29. 强碱性固体凝胶电解质电性能研究

    Study on conductivities of strong alkaline gel electrolyte

  30. 研究了强酸性低熔点电解质熔液中铝在钨丝电极上的沉积和溶解损失。

    The aluminium deposition and dissolution loss in low melting point electrolyte melts have been studied .