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聚乙二醇活性酯的制备
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作者 田芳 韩灵翠 陈恬生 《太原工业大学学报》 1995年第2期91-94,共4页
本文研究了制备聚乙二醇活性酯的方法。首先将聚乙二醇(PEG)转化为羧酸,然后活化成为活性酯,该活性酯用于修饰SOD.此方法所用时间短,条件易掌握,与SOD连接效果较好。
关键词 乙二醇活性 活化 修饰 超氧化物歧化酶
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聚乙二醇改性壳聚糖作为皮革抗菌涂层的制备及表征 被引量:11
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作者 罗泉清 李开军 +2 位作者 刘公岩 彭利华 张宗才 《皮革科学与工程》 CAS 2016年第1期28-32,共5页
本研究利用具有反应活性的聚乙二醇对天然大分子壳聚糖进行化学改性,通过酰化反应合成了聚乙二醇-接枝-壳聚糖聚合物(PEG-g-CS)。采用FT-IR对PEG-g-CS的化学结构进行了分析和表征,结果表明PEG成功地接枝在了壳聚糖上。PEG修饰后的壳聚... 本研究利用具有反应活性的聚乙二醇对天然大分子壳聚糖进行化学改性,通过酰化反应合成了聚乙二醇-接枝-壳聚糖聚合物(PEG-g-CS)。采用FT-IR对PEG-g-CS的化学结构进行了分析和表征,结果表明PEG成功地接枝在了壳聚糖上。PEG修饰后的壳聚糖具有良好的水溶性,可以作为水性涂层对皮革表面进行抗菌整理。通过测定最小抑菌浓度及抑菌圈探索了该接枝共聚物的抗菌性能。抗菌结果表明,PEG接枝的壳聚糖将PEG的抑菌性和壳聚糖的杀菌性有机地协同起来,与单一的壳聚糖涂层对比表现出更优异的抗菌性能。 展开更多
关键词 活性聚乙二醇 抗菌涂层 皮革表面
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Low-temperature collecting performance of a new combined collector on scheelite flotation
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作者 ZHANG Zheng-quan JIAO Fen +4 位作者 YANG Cong-ren QIN Wen-qing WEI Qian WANG Xu LI Wei 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3730-3740,共11页
The reduced ability of fatty acids to dissolve and disperse at low temperatures limits their effectiveness in winter applications.In this study,a green and environment-friendly reagent,polyethylene glycol 2000(PEG-200... The reduced ability of fatty acids to dissolve and disperse at low temperatures limits their effectiveness in winter applications.In this study,a green and environment-friendly reagent,polyethylene glycol 2000(PEG-2000),was used to evaluate its effect on the collecting performance of sodium oleate during scheelite flotation at low temperatures.The effect of PEG-2000 on the flotation of scheelite with the collector sodium oleate(NaOL)was studied by flotation tests,surface tension tests,infrared spectral analysis,and zeta potential measurements.Flotation tests showed that adding PEG-2000 can enhance the collecting ability of NaOL on scheelite at low temperature(5℃).The recovery of scheelite with the mixed collector of PEG-200 and NaOL is 4.39%higher than that with NaOL only.The surface tension tests,infrared spectral analysis and zeta potential measurements revealed that PEG-2000 and OL^(−)are co-adsorbed on the scheelite surface at low temperatures.The presence of PEG-2000 promoted the increase of the adsorption concentration of oleate ions(OL^(−))on the scheelite surface.The reason was that PEG-2000 has a shielding effect on the electrostatic repulsion between the OL^(−)groups,which changes the micellar configuration of OL^(−)in the solution system and makes the OL^(−)gather more tightly on the surface of scheelite,leading to the enhancement of its hydrophobicity.This discovery provides a reference for the development of collecting reagents for efficient flotation recovery of scheelite under low temperature environment. 展开更多
关键词 SCHEELITE FLOTATION low temperature nonionic surfactant polyethylene glycol ADSORPTION
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Influence factors on thermal conductivity of ammonia-water nanofluids 被引量:4
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作者 杨柳 杜垲 张小松 《Journal of Central South University》 SCIE EI CAS 2012年第6期1622-1628,共7页
In order to investigate the mechanism of nanoparticles enhancing the heat and mass transfer of the ammonia-water absorption process,several types of binary nanofluids were prepared by mixing Al2O3 nanoparticles with p... In order to investigate the mechanism of nanoparticles enhancing the heat and mass transfer of the ammonia-water absorption process,several types of binary nanofluids were prepared by mixing Al2O3 nanoparticles with polyacrylic acid(PAA),TiO2 with polyethylene glycol(PEG 1000),and TiN,SiC,hydroxyapatite(noodle-like) with PEG 10000 to ammonia-water solution,respectively.The thermal conductivities were measured by using a KD2 Pro thermal properties analyzer.The influences of surfactant and ammonia on the dispersion stabilities of the binary nanofluids were investigated by the light absorbency ratio index methods.The results show that the type,content and size of nanoparticles,the temperature as well as the dispersion stability are the key parameters that affect the thermal conductivity of nanofluids.For the given nanoparticle material and the base fluid,the thermal conductivity ratio of the nanofluid to the ammonia-water liquid increases as the nanoparticle content and the temperature are increased,and the diameter of nanoparticle is decreased.Furthermore,the thermal conductivity ratio increases significantly by improving the stabilities of nanofluids,which is achieved by adding surfactants or performing the proper ammonia content in the fluid. 展开更多
关键词 binary nanofluids AMMONIA-WATER thermal conductivity size effect dispersion stability
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