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The analysis shows that the molecule chain coupling is the common feature of the two systems.

结果表明:一定条件下聚合物凝胶和疏水缔造合聚合物溶液具有相似的溶液结构和流动特性;胶态分散凝胶在多孔介质中的流动存在转变压力,2组流动实验中疏水缔合聚合物溶液也表现出类似的转变压力,分析认为聚合物凝胶分子链间的联结是化学交联,而疏水缔合聚合物为物理缔合,类似的分子链间联结方式是两种体系有相似流动特性的内在原因。

Based on electro-characteristic and double electric layers models, directional mechanisms of soy protein molecular are analyzed for the first time on DC heating condition. After the main factors which effect soy protein gels transparency and strength being studied on DC heating condition, the different affects on soy protein gels transparency and strength by DC heating and water bath heating are analyzed and compared, and the transparent mechanisms of soy protein gels are further explored. In addition to temperature action as water bath heating, DC heating is added as electric field directional action. As a results, heating rate is increased. Directional range degrees of soy protein molecules are raised. These advantage the increase of soy protein gels transparency and strength. Microstructures of soy protein gels forming on DC heating condition are observed by SEM and the results showed that ordered structure of transparent soy protein gels on DC heating condition is more ordered than that of transparent soy protein gels on water bath heating condition.

首次从大豆蛋白的电特性和双电层模型上分析了直流电加热条件下,大豆蛋白分子定向的机理;通过对直流电加热条件下影响大豆蛋白凝胶透明性和强度主要因素的研究,分析和比较了直流电加热与水浴加热对大豆蛋白凝胶透明性和凝胶强度的不同影响,又进一步探讨了大豆蛋白凝胶透明的机理;直流电加热除了水浴加热中的温度作用以外,又增加了直流电场的定向作用,提高了加热速率,提高了大豆蛋白分子定向排列的程度,有利于蛋白质凝胶透明性和强度的提高;利用SEM对电场下大豆蛋白凝胶微观结构的观察,进一步证明了直流电加热比水浴加热形成的透明大豆蛋白凝胶微观结构具有更高的有序性。

Results Ketoprofen calcium pectinate gel beads and calcium alginate gel beads showed excellent drug release pattern and mucoadhesiveness. Ketoprofen released from calcium pectinate beads mainly through diffusion behaviors, whereas the release of ketoprofen from calcium alginate gel beads was ruled by corrosion of carrier material.

结果 酮洛芬果胶钙凝胶小球和酮洛芬海藻酸钙凝胶小球均具有良好的生物黏附性能,果胶钙凝胶小球主要通过溶胀作用缓慢释药,而海藻酸钙凝胶小球的释药与凝胶小球慢慢吸水后骨架溶蚀有关。

Fixation of direct dyes with silica gel ;2. Taking advantage of proof salt and high hydrophilic property of the silica gel and the carboxymethyl cellulose inarch polysalt of the super water-absorbent resin recombination,this paper made use of the water-absorbent composite form the inorganic polymer, sequentially advanced water-absorbent velocity and capacity of polymer water-absorbent resin in the brine.

利用具有良好耐盐和高亲水性能的硅凝胶与羧甲基纤维素接枝聚丙烯酸盐的高吸水树脂进行复合,制备出无机高分子的硅凝胶-羧甲基纤维素接枝聚丙烯酸盐耐盐高吸水复合材料,从而提高了高分子吸水树脂在盐水中的吸收能力及吸收速度,研究了复合材料的吸盐水性能,通过扫描电子显微镜观察了复合材料表面的微观结构,初步探讨了硅凝胶-羧甲基纤维素接枝聚丙烯酸盐耐盐高吸水复合材料的吸盐水机理。

Trans-Blot Cells and Systems 170-3825 Trans-Blot Cell With Wire Electrodes and PowerPac HC Power Supply, 100120/220240 V, includes 2 gel holder cassettes, buffer tank, lid with power cables, 4 fiber pads, 1 pack precut blot absorbent filter paper (15 x 20 cm), power supply, power cord, instructions 170-3850 Trans-Blot System With Plate Electrodes and PowerPac HC Power Supply, 100120/220240 V 170-3853 Trans-Blot System With Plate Electrodes, Super Cooling Coil, and PowerPac HC Power Supply, 100120/220240 V, includes 2 gel holder cassettes, buffer tank, lid with power cables, 4 fiber pads, 1 pack precut blot absorbent filter paper (15 x 20 cm), power supply, power cord, instructions 170-3910 Trans-Blot Cell With Wire Electrodes, includes 2 gel holder cassettes, buffer tank, lid with power cables, 4 fiber pads, 1 pack precut blot absorbent filter paper (15 x 20 cm) 170-3939 Trans-Blot Cell With Plate Electrodes and Super Cooling Coil, includes 2 gel holder cassettes, buffer tank, lid with power cables, 4 fiber pads, 1 pack precut blot absorbent filter paper (15 x 20 cm) 170-3946 Trans-Blot Cell With Plate Electrodes, includes 2 gel holder cassettes, buffer tank, lid with power cables, 4 fiber pads, 1 pack precut blot absorbent filter paper (15 x 20 cm) Trans-Blot Cell Accessories 170-3912 Super Cooling Coil, required for all high-intensity transfers 170-3913 Gel Holder Cassette, includes 2 fiber pads 170-3914 Fiber Pads, 15.5 x 20.5 cm, 6 170-3920 Trans-Blot Standard Wire Electrode Card, cathode 170-3921 Trans-Blot Standard Wire Electrode Card, anode 170-3922 Trans-Blot Cell Buffer Tank 170-3923 Trans-Blot Cell Lid With Power Cables 170-3943 Trans-Blot Platinum Anode Plate Electrode 170-3944 Trans-Blot Stainless-Steel Cathode Plate Electrode 170-3945 Trans-Blot Plate Electrode Pair, platinum anode and stainless-steel cathode 16 规格:说明: Trans-Blot Plus

电泳转印槽组件 1。缓冲液槽及带有电缆的盖 2。凝胶支架转印夹 3。纤维衬垫 4。电极丝 5。电极板 6。特级冷却芯 Trans-Blot 转印槽是功能灵活的转印设备,可理想地用于多种转印应用。Trans-Blot 转印槽特点包括:*能进行多胶转印,可容纳3 块PROTEAN I xi 凝胶、6块Criterion 凝胶、12块Mini-PROTEAN 3 或Ready Gel 预制胶*多组参数灵活可设,可调节的电压设置(从30 V 的过夜转印到200 V 的1 小时快速实验)*电极间距设置为8 cm 用于标准印迹杂交,或设置为4cm 用于高强度印迹杂交*可选择板式电极:涂有铂金的钛作为正极,不锈钢为负极,能提供高强度电场和比其它电极更高的电流密度。或选择较经济的铂金电极丝*通过特级冷却芯和水循环仪来调节温度―是天然酶(4°C)或高强度转印的理想选择,随着转印时间增加(多达24 小时),不会引起缓冲液耗竭(在高强度转印中必须使用冷却芯,也推荐用于所有板式电极的应用)*带铰链的凝胶支架转印夹能避免滑动,确保凝胶与印迹膜间的紧密接触;每个转印夹都有颜色标记以保证在转印槽中的正确定位 Trans-Blot 转印槽的锁闭凝胶支架转印夹系统。转印夹(1)支撑凝胶(2)印迹膜(3)两侧有纤维衬垫和滤纸(4)确保凝胶三明治内的完全接触。凝胶夹垂直插入缓冲液槽中(5)。

In chapter 5, we report the preparation and characterization of semi-IPN PNIPA/xanthan gum hydrogels.

提高PNIPA水凝胶的响应速率已经引起了研究者的广泛关注。

The cloud-point curve of the temperature sensitive hydrogels is also measured for the first time.

特别是首次测定了温度敏感性水凝胶的浊点线。

The swelling properties of epoxy vinyl ester resin/2-hydroxyethyl methacrylate copolymeric hydrogels were investigated.

该文研究了酚醛环氧型乙烯基酯树脂/甲基丙烯酸-β-羟乙酯共聚水凝胶的溶胀性质。

A series of hydrogels based on macromonomer novolac epoxy vinyl ester resin and hydrophilic-2-hydroxyethyl methacrylate were synthesized by bulk copolymerization.

采用大分子单体酚醛环氧型乙烯基酯树脂与亲水性单体甲基丙烯酸-β-羟乙酯为原料,以本体聚合方法制备了一系列新型水凝胶

Objective To essay the safety and density of expandable hydrogel spring coil for intracranial aneurysms.

目的 分析可膨胀水凝胶弹簧圈栓塞治疗颅内动脉瘤的安全性及栓塞的致密程度。

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