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Suitable water-immiscible organic solvents include aromatic hydrocarbons, eg toluene, xylene, naphthalene, tetrahydronaphthalene and methyl naphthalene; chlorinated aromatic hydrocarbons, eg chlorobenzene, fluorobenzene, chloronaphthalene and bromonaphthalene; esters, eg butyl acetate, ethyl acetate, methyl benzoate, ethyl benzoate, benzyl benzoate, butyl benzoate, phenylethyl acetate, butyl lactate, benzyl lactate, diethyleneglycol dipropionate, dimethyl phthalate, diethyl phthalate, dibutyl phthalate, di(2-ethylhexyl) phthalate; alcohols having six or more carbon atoms, eg hexanol, octanol, benzyl alcohol, phenyl ethanol, phenoxy ethanol, phenoxy propanol and phenoxy butanol; ethers having at least 5 carbon atoms, preferably C 5-14 ethers, eg anisole and phenetol; nitrocellulose, cellulose ether, cellulose acetate; low odour petroleum distillates; turpentine; white spirits; naphtha; isopropylbiphenyl; terpene; vegetable oil; mineral oil; essential oil; and natural oil; and mixtures of any two or more thereof.

适用于水互溶的有机溶剂包括芳香族碳氢化合物,如甲苯,二甲苯,萘,四氢萘和甲基萘;氯代芳香族碳氢化合物,如氯苯,氟,氯萘和萘;酯类,如醋酸丁酯,醋酸乙酯,苯甲酸甲酯,苯甲酸乙酯,苄酯,苯甲酸正丁酯,苯,醋酸丁酯乳酸,乳酸苄,二甘醇二丙酸酯,邻苯二甲酸二甲酯,邻苯二甲酸二乙酯,邻苯二甲酸二丁酯,二(2乙基己基)酯;醇有6个或更多碳原子,如己醇,辛醇,苯甲醇,苯乙醇,苯氧基乙醇,丙醇和苯氧基苯氧丁醇;醚至少有5个碳原子,最好荤5-14醚,如苯甲醚和phenetol;硝化棉,纤维素醚,醋酸纤维素,低气味石油蒸馏;松节油;白酒,石脑油isopropylbiphenyl;萜类,植物油,矿物油,挥发油;和天然油,以及任何两个或两个以上其混合物。

Under the catalyst, the polymerization retarder, the including water medicinal preparation existence condition, the methylacrylic acid and the polyethylene glycol single methyl ether (400) direct esterification synthesis methylacrylic acid polyethylene glycol single methyl ether (400) ester, and the influence factors of the catalyst, polymerization retarder, including water medicinal preparation has mellowly carried on the comparison.

摘要在催化剂、阻聚剂、带水剂存在的条件下,由甲基丙烯酸与聚乙二醇单甲醚(400)直接酯化合成甲基丙烯酸聚乙二醇单甲醚(400)酯,并对酸醇比、催化剂、阻聚剂、带水剂等影响因素进行了比较。

For different surface roughness of electrodes and glycol concentration of glycol/water mixture, pressurized water breakdown experiments are carried out. Experimental results suggest that Mirza's formula is valid and independent of surface roughness and glycol concentration, and it is accumulative for surface polish, glycol additive, and pressurization for the capability to improve electrical breakdown strength. Moreover, the increase of electrical breakdown strength of water dielectric for surface polish is explained with bubble breakdown. Especially, highest stress of 235.5kV/cm observed in glycol/water mixture with a glycol concentration of 80% at a hydrostatic pressure of 12atm is about one time greater than that in pure water at constant pressure.

通过改变电极表面光滑程度和乙二醇浓度,分别进行了加压水介质击穿实验,证实了不同电极表面光滑程度和乙二醇浓度下Mirza关系式仍成立,抛光电极表面、添加乙二醇与加压在提高水介质电击穿能力方面具有可叠加性,将抛光电极表面、添加乙二醇与加压分别进行了比较,特别,在静压12atm、乙二醇浓度80%下,得到实测最高击穿场强为235.5kV/cm,其有效时间归一化后的击穿场强比常压下纯水的相应值提高了112.2%,运用气泡击穿模型对抛光提高水介质击穿场强进行了物理解释。

In this paper the emulsion of polyacrylamide was synthesized in the polyglycol solutions, acryl amide and acrylic acid sodium was used as the monomer. In more detail, we investigated the effect of the concentration of the monomers, the ratio of monomer and PEG, the ratio of monomers, temperature, and emulsifier on the stability of the HPAM emulsion and the molecular weight of the HPAM.

为了提高聚丙烯酰胺相对分子质量,以丙烯酰胺与丙烯酸钠为原料,在聚乙二醇水溶液中合成了聚丙烯酰胺水包水乳液,考察了初始单体质量分数、共聚单体与聚乙二醇摩尔比、共聚单体摩尔比、聚合反应温度、乳化剂种类及其浓度对HPAM水包水乳液稳定性及相对分子质量的影响,所得共聚产物相对分子质量可达1.5×10^7。

The components were calculated with normalization method and compared with the references. Result: 68 compounds have been identified; comparing with the water decoction, the amount of fatty acids was decreased while the amount of terpenes was increased; at the mean while, carene and pinene which were abundant in single herb were not detected.

结果:从YL2000醇提制剂中初步分离鉴定了68个成分;同水煎剂相比,醇提制剂提高了挥发油的得率,去除了大量脂肪酸类成分,但保留了水煎剂中的88%的萜类成分,并将其含量提高了约6倍;同单味药材相比,醇提制剂和水煎剂均富集了萜类成分而大大降低了蒎烯和蒈烯类成分的含量。

IT is thought the skin have so much member ,but the water's contain to 70% and for the skin leading in physiology ,so that forn he's water principle theory——he thought ,the skin not better absorb for the effect component and illness or senescence whether it from the skin and the body's others but common qround is the same for the run short of the water in the cell and conjunctive tissue .in his manufacture in 1998 the new name came out and was named ——TORSION .for the technology he make use of the cosmetic ordinary 's drink aqua and lock the water capability when you use it , not only can keeping the skin have plenitudinous moisture,so that the skin deeply suck then using the ordinary cosmetic drink component hillpear mellow molecule deriive 's than hillpear mellowdrink's capability high 1~2 times for β- hillpear mellow.

他认为虽然皮肤有多种成分,但水分却占到了70%,对皮肤的生理肯定起着主导性作用,基于此形成了他的Water principle研究理论。认为皮肤对有效成分的吸收不彻底,以及疾病或衰老,无论它来自皮肤还是身体的其他部位,其共同点都是一样的,那就是在细胞和结缔组织中缺少了水。在他的精心研制下,利用化妆品常用的吸水剂山梨醇分子衍生出比山梨醇吸水剂吸水能力高出1-2倍的β—山梨醇,大大提高了皮肤的补水和锁水能力,使皮肤保持充足的水分,从而使肌肤对化妆品有效成分的吸收更为彻底。通过上万例的化妆品配方应用试验后,此技术于1998年在雅邦国际化妆品研究机构得到了推广,并利用Makinsdi.Dr的研究办公室作为新品的命名—TORSION。

IT is thought the skin have so much member ,but the water's contain to 70% and for the skin leading in physiology ,so that forn he's water principle theory——he thought ,the skin not better absorb for the effect component and illness or senescence whether it from the skin and the body's others but common qround is the same for the run short of the water in the cell and conjunctive tissue .in his manufacture in 1998 the new name come out and naming ——TORSION .for the technology he make use of the cosmetic ordinary 's drink aqua and lock the water capability when you use it ,ont only can keeping the skin have plenitudinous moisture,so that the skin deeply suck then using the ordinary cosmetic drink component hillpear mellow molecule deriive 's than hillpear mellowdrink's capability high 1~2 times for β- hillpear mellow.

他认为虽然皮肤有多种成分,但水分却占到了70%,对皮肤的生理肯定起着主导性作用,基于此形成了他的Water principle研究理论。认为皮肤对有效成分的吸收不彻底,以及疾病或衰老,无论它来自皮肤还是身体的其他部位,其共同点都是一样的,那就是在细胞和结缔组织中缺少了水。在他的精心研制下,利用化妆品常用的吸水剂山梨醇分子衍生出比山梨醇吸水剂吸水能力高出1-2倍的β—山梨醇,大大提高了皮肤的补水和锁水能力,使皮肤保持充足的水分,从而使肌肤对化妆品有效成分的吸收更为彻底。通过上万例的化妆品配方应用试验后,此技术于1998年在法国雅邦国际化妆品研究机构得到了推广,并利用Makinsdi.Dr的研究办公室作为新品的命名—TORSION。

Waste oil category: Waste oil, waste hydraulic oil, waste oil, waste oil injection, waste kerosene, waste of white mineral oil, white waste oil, waste oil sparks, the repeal of toluene, waste cutting oil, gear oil, lubricants, batteries oil, spindle oil, zorra, oil, turpentine oil, solvent oil, gear oil, oil rails; waste chemical categories: one, the repeal of toluene, xylene waste, spent 2 pure benzene, acetone waste, waste Ding ketone, cyclohexanone 3 waste, waste dichloromethane, dichloroethane waste, waste Dichloropropane 4, solvent categories: soluble oil 6 #, 120 # dissolving agents, dissolving agents 200 # 5, trichloro ethylene, dichloromethane, trichloroethane; tetrachlorethylene, trichloromethane 6, the repeal of methanol, ethanol, waste, waste alcohol, isopropyl alcohol waste 7, the repeal of ethylene glycol, diethylene glycol waste, spent three 8 glycol, waste butyl acetate, ethyl acetate wastewater, waste acetate 9, the repeal of ethyl ether, acetonitrile waste, waste petroleum ether 10, cleaning categories: cleaning agent, washing machine water, days that water; wash board water,×oil wastewater liquid 11, the supply of tires category: special supply of fuel oil, non-standard oil, burner oil, waste oil and other refined crude oil.

废油类:废机油,废液压油,废柴油,废注塑机油,废煤油,废白矿油,废白电油,废火花机油,废甲苯,废切削油,齿轮油,润滑油,废电池机油,锭子油,索拉油,松节油,溶剂油,齿轮油,导轨油等;废化工类:1、废甲苯、废二甲苯、废纯苯2、废丙酮、废丁酮、废环已酮3、废二氯甲烷、废二氯乙烷、废二氯丙烷4、溶剂类: 6#溶油剂, 120#溶油剂, 200#溶油剂5、三氯乙烯,二氯甲烷,三氯乙烷;四氯乙烯,三氯甲烷6、废甲醇、废乙醇、废丁醇、废异丙醇7、废乙二醇、废二甘醇、废三甘醇8、废醋酸丁酯、废醋酸乙酯、废醋酸甲酯9、废乙醚、废乙腈、废石油醚10、清洗类:清洗剂,洗机水,天那水;洗板水,去渍油等废液废水11、废轮胎类供应:特价供应燃料油,非标油,烧火油,废油提练的原油等。

Based on the changes in the spectrum characters of guest molecules producedthrough inclusion complex formation with cyclodextrins, we have carried out two aspects of investigation:First, the mechanisms for the host-guest recognition reactions have been studied, such as the interactions between 3-CD and curcumin, the main constituent of the rhizomes of the plant Curcuma longa, the recognition of p-CD towards rubidate, the effective component of the Chinese traditional medicine madder, and the reactions of p-CD towards the antileprotic drug dapsone and the antiinflammatory drug nabumetone: The formation of supramolecular complex between P-CD and guest molecule has been discussed and verified in virtue of multitudinous means such asultraviolet-visible absorption, fluorescence emission, infrared spectrogram and so on. The influence of addition of linear alcohols on the supramolecular system has been studied and the reason why the noncovalent interactions in the three-component system could result in a decrease in the apparent association constant of the inclusion complex has been revealed.

本论文基于环糊精对被包结客体光谱性质的改变,开展了两大方面的研究:β-环糊精对姜黄属植物根茎主要成分—姜黄素、中药茜草有效成分—茜草双酯、抗麻风药物氨苯砜及抗炎药物萘丁美酮的主-客体识别反应机制研究:借助超分子包合物的紫外吸收光谱、荧光光谱或红外吸收光谱等手段,通过多种方法探讨并验证了超分子包合物的形成;研究了直链醇的加入对超分子体系的影响,揭示了三元体系中非共价相互作用导致超分子包合物表观结合常数降低的原因:对超分子包结反应进行了热动力学研究,探讨了各热动力学参数的变化趋势并从熵焓互补的角度考察了超分子包结过程;通过荧光猝灭实验进一步揭示了水相中β-环糊精增敏客体荧光的本质原因,从而为超分子化学提供新的理论和研究方法。

Densities of glycine in glucose-water and sucrose-water mixed solvents have been measured to 298.15 K by an oscillating-tube densimeter. Apparent molar volumes, limiting partial molar volumes and number of hydration of glycine have been calculated. The transfer volumes from water to sugar-water mixtures have been obtained and discussed in terms of the structural hydration interaction model.

利用精密数字密度计测定了甘氨酸与不同组成葡萄糖-水、蔗糖、水混合溶剂构成的三元系溶液的密度,计算了甘氨酸的表观摩尔体积、极限偏摩尔体积和理论水化数,根据结构水合作用模型讨论了迁移偏摩尔体积的变化规律,并与乙二醇-水和丙三醇-水等多羟基体系作了比较。

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