Effect of carbon black particle size in chitin sponges on microplastics adsorption

被引:29
作者
Zhu, Zhiping [1 ]
Wu, Xueyu [1 ]
Wang, Chenhui [1 ]
Meng, Zeyang [1 ]
Sun, Cuizhu [2 ,3 ]
Wang, Zhenggang [1 ]
机构
[1] Changsha Univ Sci & Technol, Sch Chem & Chem Engn, Hunan Prov Key Lab Mat Protect Elect Power & Trans, Changsha 410114, Peoples R China
[2] Ocean Univ China, Inst Coastal Environm Pollut Control, Minist Educ, Qingdao 266100, Peoples R China
[3] Ocean Univ China, Key Lab Marine Environm & Ecol, Minist Educ, Qingdao 266100, Peoples R China
关键词
Chitin sponge; Carbon black; p-p interaction; Microplastics removal; Adsorption;
D O I
10.1016/j.seppur.2023.124321
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Microplastics (MPs) pollution is becoming a serious challenge, but the adsorption efficiency of adsorbents cannot meet the high requirements of environmental protection, and the adsorption mechanism of MPs is not clear at present. To improve the MPs adsorption efficiency of chitin sponges, this work introduced carbon black (CB) with different particle sizes into chitin matrix to prepare Chitin-CB sponge (ChCB) and explored the relationship between embedded adsorbent particle size and its adsorption effects on MPs. With the decrease of CB particle size from 180 to 40 mu m, the removal efficiency of MPs increased from 83.9% to 90.2%. The primary driving force of MPs adsorption was proved to be p- p interaction. Smaller CB provided higher surface energy, enhanced the p- p interactions to MPs and thus showed higher removal efficiency. The results of adsorption kinetics indicated that the MPs adsorption on ChCB fitted with the pseudo-second-order model, indicating that the adsorption process is chemisorption. The results of isotherm at different temperatures and the thermodynamic parameter calculation showed that MPs adsorption conformed to the Freundlich isotherm model, and the adsorption process of MPs is multi-layer spontaneous adsorption. The adsorption intensity value was in the range of 0 similar to 1, suggesting that ChCB was strong adsorbent material. Moreover, the high porous ChCB shows high water adsorption and excellent physical properties, which facilitated to its application on MPs adsorption. These findings provided valuable experience for the study of the adsorption mechanism of MPs and could guide the design of MPs adsorption materials.
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页数:9
相关论文
共 41 条
[1]   Identification, characterisation of microplastic and their effects on aquatic organisms [J].
Alak, Gonca ;
Ucar, Arzu ;
Parlak, Veysel ;
Atamanalp, Muhammed .
CHEMISTRY AND ECOLOGY, 2022, 38 (10) :967-987
[2]   Distribution and importance of microplastics in the marine environment: A review of the sources, fate, effects, and potential solutions [J].
Auta, H. S. ;
Emenike, C. U. ;
Fauziah, S. H. .
ENVIRONMENT INTERNATIONAL, 2017, 102 :165-176
[3]   Nanochitin: Chemistry, Structure, Assembly, and Applications [J].
Bai, Long ;
Liu, Liang ;
Esquivel, Marianelly ;
Tardy, Blaise L. ;
Huan, Siqi ;
Niu, Xun ;
Liu, Shouxin ;
Yang, Guihua ;
Fan, Yimin ;
Rojas, Orlando J. .
CHEMICAL REVIEWS, 2022, 122 (13) :11604-11674
[4]   From plastics to microplastics and organisms [J].
Bajt, Oliver .
FEBS OPEN BIO, 2021, 11 (04) :954-966
[5]   Preparation and application of chitin and its derivatives: a review [J].
Barikani, Mehdi ;
Oliaei, Erfan ;
Seddiqi, Hadi ;
Honarkar, Hengameh .
IRANIAN POLYMER JOURNAL, 2014, 23 (04) :307-326
[6]   How to Build a Microplastics-Free Environment: Strategies for Microplastics Degradation and Plastics Recycling [J].
Chen, Junliang ;
Wu, Jing ;
Sherrell, Peter C. ;
Chen, Jun ;
Wang, Huaping ;
Zhang, Wei-Xian ;
Yang, Jianping .
ADVANCED SCIENCE, 2022, 9 (06)
[7]   Emerging adsorbents for micro/nanoplastics removal from contaminated water: Advances and perspectives [J].
Chen, Zhijie ;
Fang, Ji ;
Wei, Wei ;
Ngo, Huu Hao ;
Guo, Wenshan ;
Ni, Bing-Jie .
JOURNAL OF CLEANER PRODUCTION, 2022, 371
[8]   Electrochemical aptasensing of cadmium (II) on a carbon black-gold nano-platform [J].
Fakude, Colani T. ;
Arotiba, Omotayo A. ;
Mabuba, Nonhlangabezo .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2020, 858
[9]   Biochar-facilitated remediation of nanoplastic contaminated water: Effect of pyrolysis temperature induced surface modifications [J].
Ganie, Zahid Ahmad ;
Khandelwal, Nitin ;
Tiwari, Ekta ;
Singh, Nisha ;
Darbha, Gopala Krishna .
JOURNAL OF HAZARDOUS MATERIALS, 2021, 417 (417)
[10]  
Golmohammadi M, 2023, SEP PURIF TECHNOL, V309, DOI 10.1016/j.seppur.2022.122906