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稀溶液

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A new dehumidification air conditioning was put forward on the research above. The procedures were as follows. Firstly, on the basis of thermocompression air conditioning, liquid dehumidification system was added. Secondly, dehumidification solution was sprayed on the evaporator and condensator directly. The evaporator's cooling was used in dehumidification. The condensator's heat was used in the solution's regeneration. The latent heat charge and sensible heat charge were treated at the same time in this air conditioning process.

通过对上述内容的研究,提出了一种新型除湿空调,在现有蒸气压缩空调系统基础上,加入液体除湿系统,将除湿溶液直接喷淋在蒸发器和冷凝器上,用蒸发器冷量实现带冷却除湿,用冷凝器热量对稀溶液进行再生,实现对空气调节过程中潜热负荷和显热负荷同时进行处理。

The facts that type I compounds could easily undergo deamination reaction to form α-methylene cyclopentanone derivatives and they could react with glutathione to form an adduct provided sufficient evidence for the hypothesis that the compounds acted as masked α-methylenecyclopen- tanones and reacted with biologically important sulfhydry-containing enzymes, and thus produced anticancer activity.

Ⅰ类化合物在稀溶液中极易进行去胺基化反应形成α-亚甲基环戊酮类化合物。并且Ⅰ类化合物于稀溶液中易与谷胱苷肽进行结合,这些事实为Ⅰ类化合物作为隐蔽的α-亚甲基环戊酮与酶进行加成,从而导致酶失活而具有抗癌活性的设想提供了证据。

The results were gained that correspond to different heat load, amount of solution elevation, vapor amount, maximum height of the elevated solution, the minimum submersed depth of solution.

得出了对应于不同的加热负荷,浓溶液的提升量、蒸汽发生量、浓溶液最大提升高度及稀溶液最小浸没高度的关系曲线,为该类型热虹吸泵的设计和运行提供了依据。

This is the tendency for water to pass through a membrane separating a weak solution from a strong one.

渗透是一种水通过膜的运动趋势,膜的两面分别是浓溶液和稀溶液

The relations are built up between the height of solution elevation, the submersed depth of solution, the physical property of solution and the flow property.

研究结果揭示了浓溶液提升高度、稀溶液浸没高度等重要参数跟制冷剂蒸汽、LiBr水溶液的物性参数、流动参数之间的内在关系。

In order to improve their water solubility, 4"-fatty amido-3"-sodium carboxylate azobenzene-4-sodium sulfonates were synthesized. They are azo compounds with two hydrophilic groups of carboxyl and sulfonyl. They decrease the surface tension in dilute solution slowly, and show some surfactivity, but are not surfactants. The probable reason is their relative strong hydrophile. Furthermore, their colors are not fresh and far from our destination.

为了改善其水溶性,改用对氨基苯甲酸为原料合成了4′-脂肪酰氨基-3′-羧酸钠偶氮苯-4-磺酸钠盐,以偶氮结构为主的亲水基团上连有羧酸基和磺酸基两个亲水性较强的基团,但可能由于其亲水性太强,在稀溶液中只能缓慢地降低溶液的表面张力,具有一定的表面活性,但不是表面活性剂,而且颜色不鲜艳,距离我们的目标较远。

The fast gelable CS/GPS solutions at 37℃can be obtained by increasing the concentration of GPS and pH of solutions through dissolved GPS into dilute NaOH solution.

增大甘油磷酸钠的浓度,并将甘油磷酸钠溶于氢氧化钠稀溶液中来提高混合溶液的pH值,可得到在37℃下快速凝胶化的CS/GPS体系。

The diluent solution of glyoxylic acid and oxalic acid was used as the separation object.TOA (in n-octanol) was used as the solvent. The extraction characteristics of single acid and two-acid solution were studied,and the influence of pH and the concentration of complexing agent on the distribution coefficients were measured. The suitable mathematic models were proposed to describe the relationship between TOA and carboxylic acid based on assumed extraction reaction in organic phase.

摘 要:以草酸和乙醛酸的稀溶液为分离对象,采用三辛胺为萃取反应剂、正辛醇为稀释剂,研究了单溶质、双溶质有机酸的萃取分离特性,测定了溶液pH值、萃取反应剂的浓度等因素对双溶质有机酸萃取的影响,提出了萃取的化学反应发生在有机相中的假定,建立了TOA萃取草酸的数学模型。

Based on a simple cluster theory recently proposed for the dilute solution viscosity of monodisperse polymer, the concentration-dependence of dilute solution viscosity of polydisperse polymer was investigated.

依据最近提出的关于单分散高分子的稀溶液粘度的团簇理论,对多分散高分子的稀溶液粘度的浓度依赖性进行了更新的理论分析。

According to the theoretical analysis,the results show that the fresh air dehumidified before mixed with return air is more energy-saving among many kinds of realization shapes.Indoor exhaust used as regeneration air can also reduce the total energy consumption of the system.It may enhance the regeneration property when the recuperator is adopted to absorb energy to preheat the dilute liquid.

对此空调系统进行理论分析,得出如下结论:在溶液除湿蒸发冷却空调系统的多种实现形式中,新风经除湿后与回风混合比新回风混合后再除湿节能;将室内排风返回溶液再生器,进行热湿交换,既可加强对处理空气的预冷,回收排风冷量,又可提高再生器的效率,降低系统能耗;把回热器吸收除湿浓溶液中的部分热量用于溶液再生器的稀溶液预热,可以提高溶液的再生性能。

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