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1)  resin of chitosan microspheres
球状壳聚糖树脂
1.
The resin of chitosan microspheres(RCM) was prepared by using reverse phase suspension cross-linking polymerization.
以壳聚糖为原料采用反相悬浮交联法制备了球状壳聚糖树脂(RCM),通过静态吸附实验研究了RCM对柠檬酸的吸附热力学和动力学特性。
2)  chitosan resin
壳聚糖树脂
1.
The complexes cross-linkswith EGBE as cross-linking agent under microwave irradiation,Zn 2+ being removed with dilute acid,a new cross-linked chitosan resin with Zn(Ⅱ) cavtitycan be synthesized.
该配合物与乙醇双环氧丙基醚在微波辐射下进行交联反应 ,用稀酸除去Zn2 + ,合成了具有Zn2 + 孔穴的交联壳聚糖树脂。
2.
In comparison with the cross_linked chitosan resin prepared by conventional heating, it has a better adsorption capacity for Cu 2+ , and shows very good stability and reusability unde.
微波辐射下 ,用壳聚糖在稀醋酸介质中与Cu2 +制得壳聚糖Cu2 +络合物 ,然后使壳聚糖铜络合物与戊二醛进行交联 ,用稀酸洗去Cu2 +,制得具有Cu2 +模板离子孔穴的交联壳聚糖树脂 ,考察了该树脂对Cu2 +的吸附性能 。
3.
Using Cu(Ⅱ) ion as template, a series of chitosan resins, with varied contents of template ion, were prepared by reacting chitosan(CTS) with crosslinking agent ethylene glycol bisglycidyl ether(EGBE), and their static adsorption properties such as adsorption capacities, kinetic and isotherm for Cu 2+ , Ni 2+ , Co 2+ were studi that.
以铜(Ⅱ)离子为模板剂,合成了一系列模板离子含量不同的乙二醇双缩水甘油醚交联的壳聚糖树脂,并研究了该类吸附剂对几种过渡金属离子的静态吸附性能。
3)  Crosslinking chitosan resins
壳聚糖交联树脂
4)  crosslinked chitosan resin
交联壳聚糖树脂
1.
With the salt effect theory, the influence of external- added salts (Lid, NaCl, KCl, LiBr, NaBr, KBr, MgCl2, CaCl2, SrCl2) concentration on adsorption rate of benzoic acid by crosslinked chitosan resin in trinal system (acid + water + salt) is discussed.
利用电位法,跟踪观察交联壳聚糖树脂在不同环境体系吸附低浓度苯甲酸的行为,结合盐效应理论讨论了在三元体系(酸+水+盐)中,LiCl、NaCl、KCl、LiBr、NaBr、KBr、MgCl2、CaCl2、SrCl2 9种外加盐对交联壳聚糖树脂吸附苯甲酸吸附速率的影响。
2.
Our aim is to develop a novel type crosslinked chitosan resin (AECTS) withgood properties in this paper.
本研究旨在开发一种性能良好的新型交联壳聚糖树脂(AECTS)。
5)  Aminated chitosan resin
胺基壳聚糖树脂
6)  chitosan-macroporous resin
壳聚糖-大孔树脂
补充资料:壳聚糖膜
分子式:
CAS号:

性质:壳聚糖所制备成有分离功能的膜。壳聚糖可单独在甲酸中制备渗透汽化膜,对乙醇和水有较好的分离性能。为了减少其溶胀性能,也可以用二醛交联成膜,或与其他聚合物如聚乙烯醇、纤维素等共混,或以聚砜、聚丙烯腈为底膜制成壳聚糖复合膜,以改善醇水分离因素。

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