
农业与技术 ›› 2022, Vol. 42 ›› Issue (10): 98-100.DOI: 10.19754/j.nyyjs.20220530024
金小琳
出版日期:2022-06-03
发布日期:2022-05-30
作者简介:金小琳(1998-),女,硕士研究生在读。研究方向:饮用水处理。
基金资助:Online:2022-06-03
Published:2022-05-30
摘要: 黄原胶是一种高分子的微生物胞外多糖,具有优异的理化性质,是一种具有发展潜力的可持续发展材料。为了提高黄原胶的物理化学性质,人们对黄原胶进行了各种各样的改性。本文综合讲述了对黄原胶的不同改性方法及近年来黄原胶在水处理方面的应用。
中图分类号:
. 黄原胶的改性及其在水处理中的应用[J]. 农业与技术, 2022, 42(10): 98-100.
| [1]邱嘉辉,何亚文.微生物胞外多糖黄原胶的应用与研究进展[J].激光生物学报,2019,28(05):10. [2]Bejenariu A,Popa M,Dulong V,et al.Trisodium trimetaphos-phate crosslinked xanthan networks:synthesis,swelling,loadingand releasing behaviour J].Polymer Bulletin,2009,62 (4):525-538. [3]Tra B,Mwi C,Bo J,et al.A review of the enzymatic,physical,and chemical modification techniques of xanthan gum [J].Intera-tional Journal of Biological Macromolecules,2021. [4]Patel J,Maji B,Moorthy N,et al.Xanthan gum derivatives:re-view of synthesis,properties and diverse applications [J].RSCAdvances,2020,10(45):27103-27136. [5]Marcotte M,Hoshahili A,Ramaswamy H S.Rheoloical propertiesof selected hydrocolloids as a function of concentration and tempera-ture J].Food research interational,2001,34 (8):695-703. [6]Yoshida T,Takahashi M,Hatakeyama T,et al.Annealing in-duced gelation of xanthan/water systems J].Polymer,1998,39(5):1119-1122. [7]Li R,Feke D L.Rheological and kinetic study of the ultrasonicdegradation of xanthan gum in aqueous solutions [J].CarbohydratePolymers,2015,172(apr.1):808-813. [8]Yahoum M M,Moulai-Mostefa N,Cerf D L.Synthesis,physico-chemical,structural and rheological characterizations of carboxym-ethyl xanthan derivatives J].Carbohydrate Polymers,2016:267-275. [9]Bhatia M,Ahuja M,Mehta H.Thiol derivatization of Xanthangum and its evaluation as a mucoadhesive polymer J].Carbohy-drate Polymers,2015,131:119-124. [10]Roy A,Comesse S,Grisel M,et al.Hydrophobically modifiedxanthan:an amphiphilic but not associative polymer.J].Bio-macromolecules,2014,15(4):1160-1170. [11]Sara H,Yahoum MM,Lefnaoui S,et al.New alkylated xanthangum as amphiphilic derivatives:Synthesis,physicochemical andrheological studies J].Joural of Molecular Structure,2020,1207:127768. [12]Sharma G,Thakur B,Naushad M,et al.Applications of nano-composite hydrogels for biomedical engineering and environmentalprotection [J].Environmental Chemistry Letters,2018. [13]刘宛宜,王天野,王铖熠,等.聚(丙烯酸酸-c0-丙烯酰胺)水凝胶对阳离子染料亚甲基蓝和孔雀石绿吸附性能的研究[J].分析化学,2019,47(11):9. 14]Sobhy E,Gab-Allah M A,Lee S,et al.Xanthan gum-derivedmaterials for applications in environment and eco-friendly materi-als:A review [J].Journal of Environmental Chemical Engineer-ing,2020. [15]Pandey S,Mishra S B.Graft copolymerization of ethylacrylate ontoxanthan gum,using potassium peroxydisulfate as an initiator [J].Intemnational Joural of Biological Macromolecules,2011,49(4):527-535. [16]殷晓春,吴建军,赵翊,等.高分子改性黄原胶/羟基磷灰石复合水凝胶的制备及其吸附金属离子性能[J].环境科学学报,2017,37(02):9. [17]Pandey S,Mishra S B.Microwave synthesized xanthan gum-g-poly ethylacrylate):An efficient Pb2+ion binder [J].Carbo-hydrate Polymers,2012,90(1):370-379. [18]Zheng M,Lian F,Xiong Y,et al.The synthesis and character-ization of a xanthan gum-acrylamide-trimethylolpropane triglyci-dyl ether hydrogel J ]Food Chemistry,2019,272 (30):574-579. [19]Njuguna D G,Schnherr H.Smart and Regeneratable XanthanGum Hydrogel Adsorbents for Selective Removal of Cationic Dyes[J].Journal of Environmental Chemical Engineering,2022. |
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