宋雅然
  • 硕士生导师
  • 职 称 : 副教授
  • 学 科 :
    环境工程
  • 单 位 : 环境与化学工程学院
学位 : 博士学位
学历 : 博士研究生毕业
出生年月 : 1990-11
入职时间 : 2020-10-15
毕业院校 : 中国科学院大学
当前位置: 中文主页 >> 科学研究 >> 论文成果
标题:
Efficient heavy metal sequestration from water by Mussel-inspired polystyrene conjugated with polyethyleneimine (PEI)
点击数:
作者:
宋雅然,彭秋明,焦体峰,张庆瑞
所属单位:
310
发表时间:
2022-02-01
论文类型:
期刊论文
Issn号:
1385-8947
是否译文:
项目来源:
国家自然科学基金项目
个人简介

宋雅然,近几年主要围绕环境功能复合吸附剂研制及水中污染物深度净化开展研究工作,以第一作者/通讯作者发表多篇SCI论文。主要论文如下:

     

[1] Y. Song, X. Song, Q. Sun, S. Wang, T. Jiao, Q. Peng, Q. Zhang*, Efficient and sustainable phosphate removal from water by small-sized Al(OH)3 nanocrystals confined in discarded Artemia Cyst-shell: Ultrahigh sorption capacity and rapid sequestration, The Science of the total environment 803 (2021) 150087-150087.

[2] W. Gao, M.R. Razanajatovo, Y. Song*, X. Zhao, Z. Zhao, Q. Peng, T. Jiao, X. Liu, Q. Zhang*, Efficient heavy metal sequestration from water by Mussel-inspired polystyrene conjugated with polyethyleneimine (PEI), Chemical Engineering Journal 429 (2022).

[3] X. Zhao, Y. Song*, Z. Zhao, W. Gao, Q. Peng, Q. Zhang*, Efficient fluoride removal from water by amino Acid-enriched Artemia Cyst motivated Sub-10 nm La (OH) 3 confined inside superporous skeleton, Separation and Purification Technology 283 (2022) 120205.

[4] H. Chen, J. Sun, Y. Song*, Z. Zhao, Q. Sun, F. Ye, Q. Peng, Q. Zhang*, New insight into the bioinspired sub-10nm Sn(HPO4)2 confinement for efficient heavy metal remediation in wastewater, Journal of colloid and interface science 609 (1800) 676-685.

[5] M.R. Razanajatovo, W. Gao, Y. Song*, X. Zhao, Q. Sun, Q. Zhang*, Selective adsorption of phosphate in water using lanthanum-based nanomaterials: A critical review, Chinese Chemical Letters 32(9) (2021) 2637-2647.

[6] Y. Song, P. Yuan*, P. Du, L. Deng, Y. Wei, D. Liu, X. Zhong, J. Zhou, A novel halloysite-CeOx nanohybrid for efficient arsenic removal, Applied Clay Science 186 (2020).

[7] Y. Song, P. Yuan*, Y. Wei, D. Liu, Q. Tian, J. Zhou, P. Du, L. Deng, F. Chen, H. Wu, Constructing Hierarchically Porous Nestlike Al2O3-MnO2@Diatomite Composite with High Specific Surface Area for Efficient Phosphate Removal, Industrial & Engineering Chemistry Research 58(51) (2019) 23166-23174.


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