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以废弃物为原料制备纤维素气凝胶及其在水处理中的应用研究
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作者 乔娇娇 刘洋 +3 位作者 黄小益 张晶晶 淳杰 张婷 《化工新型材料》 北大核心 2025年第5期265-271,共7页
纤维素气凝胶由于独特的微观结构、大比表面积、高孔隙率、生物相容性、可生物降解性和可再生性,在水处理方面极具应用潜力。发展绿色可再生生物质能源是解决环境污染的有效途径,将废弃物作为纤维素提取的可持续来源,进一步降低纤维素... 纤维素气凝胶由于独特的微观结构、大比表面积、高孔隙率、生物相容性、可生物降解性和可再生性,在水处理方面极具应用潜力。发展绿色可再生生物质能源是解决环境污染的有效途径,将废弃物作为纤维素提取的可持续来源,进一步降低纤维素气凝胶制备成本的同时,解决了因废弃物大量累积和不合理利用可能造成的环境问题。总结了从废弃物原料中提取纤维素及纤维素气凝胶的制备方法,对各类方法步骤的优缺点进行了探讨,综述了各类废弃物基纤维素气凝胶在水处理领域的应用,最后对未来研究方向进行了展望。 展开更多
关键词 废弃物基纤维素 气凝胶 水处理 研究进展
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Superior Au-adsorption performance of aminothiourea-modified waste cellulosic biomass
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作者 WANG Fu-chun ZHAO Jun-mei +1 位作者 WANG Wan-kun LIU Hui-zhou 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第12期2992-3003,共12页
Waste cellulosic biomass obtains various applications due to low-cost and eco-benign characteristics.A general strategy is proposed for waste cellulosic biomass to be modified with dialdehyde functional groups as inte... Waste cellulosic biomass obtains various applications due to low-cost and eco-benign characteristics.A general strategy is proposed for waste cellulosic biomass to be modified with dialdehyde functional groups as intermediates through periodate partial oxidation.Finally,aminothiourea-modified waste cellulosic biomass can be prepared through Schiff reaction.Waste corn stalk,cotton and paper as typical precursors,were used to prepare cellulosic biomass,abbreviated as AT-S,AT-C and AT-P,respectively,and their adsorption behaviors of Au(III)from the hydrochloric acid medium were investigated.The pseudo-second kinetics equation as well as the Langmuir isotherm equation can be used to depict the adsorption process,and the maximum adsorption capacities of Au(III)are21.4,19.0and3.28mol/kg for AT-S,AT-C and AT-P at298K,respectively.The adsorption capacities of Au(III)on aminothiourea modified corn stalk(AT-S)is almost357times greater than that of raw corn stalk.To the best of our knowledge,AT-S has the highest adsorption capacity towards Au(III).AT-S also displays a superior separation selectivity towards Au(III)in the presence of Cu(II),Ni(II),Co(II),Pt(VI),Pd(II)and Rh(III).Furthermore,the characterization analysis of XRD,TG,SEM,TEM and FTIR confirms that AuCl4– has been reduced to elemental Au nanoparticles and deposit onto the surface of the biomass.It shows a prospect for waste corn stalk to be used to adsorb Au(III)from liquid phase and the possible fabrication of gold nanoparticles by a general adsorption process without any reductant. 展开更多
关键词 ADSORPTION reduction-deposition waste cellulosic biomass aminothiourea gold nanoparticles
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