Eco-friendly and acid-resistant magnetic porous carbon derived from ZIF-67 and corn stalk waste for effective removal of imidacloprid and thiamethoxam from water

被引:105
作者
Yang, Yong [1 ]
Ma, Xinxin [1 ]
Yang, Chunhong [1 ]
Wang, Yanru [1 ]
Cheng, Jingli [2 ]
Zhao, Jinhao [2 ]
Dong, Xiaowu [3 ,4 ]
Zhang, Qingming [1 ]
机构
[1] Qingdao Agr Univ, Coll Plant Hlth & Med, Key Lab Integrated Crop Pest Management Shandong, Qingdao 266109, Shandong, Peoples R China
[2] Zhejiang Univ, Inst Pesticide & Environm Toxicol, Key Lab Mol Biol Crop Pathogens & Inse, Minist Agr, Hangzhou 310058, Peoples R China
[3] Zhejiang Univ, Hangzhou Inst Innovat Med, Inst Drug Discovery & Design, Coll Pharmaceut Sci, Hangzhou 310058, Peoples R China
[4] Zhejiang Univ, Innovat Inst Artificial Intelligence Med, Hangzhou 310018, Peoples R China
关键词
Adsorption; Magnetic porous carbon; ZIF-67; Corn stalk; Imidacloprid; Thiamethoxam; NEONICOTINOID INSECTICIDES; AQUEOUS-SOLUTIONS; ADSORPTION; SORPTION; PESTICIDES; FRAMEWORKS; KINETICS;
D O I
10.1016/j.cej.2021.132999
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Neonicotinoids, extensively present in water environment, can adversely affect the ecological safety and human health. Herein, a low-cost magnetic porous carbon ZIF-67/CS@C derived from ZIF-67 and agricultural waste corn stalk (CS) is designed and applied for adsorptive removal of imidacloprid and thiamethoxam from water. The adsorbent is fabricated by carbonizing ZIF-67/CS hybrid pre-prepared through an in-situ decoration of ZIF67 on the surface of CS, and then acid picking to elute the unstable constituents. In the carbonization, Co2+ ions are reduced to magnetic Co0 nanoparticles, with the result that ZIF-67/CS@C shows a strong magnetic response (saturation magnetization intensity is 12.25 emu 1) and can be easily magnetically separated. Meanwhile, Co nanoparticles are protectively encapsulated in well-developed graphitized wall, which endows ZIF-67/CS@C with good acid resistance (only 0.23% of Co is leached out at pH 1.0). More importantly, reasonable pore size distribution (most pore sizes match or are 3-6 times that of imidacloprid and thiamethoxam) and high external surface area (280 m21) are obtained, which makes ZIF-67/CS@C super adsorbent. The adsorption capacities for imidacloprid and thiamethoxam can reach as high as 189 and 133 mgreespectively. Moreover, after six consecutive recycling processes, the adsorption efficiencies are still above 95%, which reveals excellent reusability of ZIF-67/CS@C. Mechanism analysis affirms that pore-filling, H-bond, and pi-pi EDA interaction are mainly responsible for driving imidacloprid and thiamethoxam adsorption. Finally, ZIF-67/CS@C with a great security towards Daphnia carinata survival and wheat growth is eco-friendly. This study can be easily adapted to different biomass wastes and MOFs, thus potentially enabling the preparation of more novel adsorbents.
引用
收藏
页数:14
相关论文
共 84 条
[1]   Insight into the co-pyrolysis of different blended feedstocks to biochar for the adsorption of organic and inorganic pollutants: A review [J].
Ahmed, M. J. ;
Hameed, B. H. .
JOURNAL OF CLEANER PRODUCTION, 2020, 265
[2]   Exploiting π-π Interactions to Design an Efficient Sorbent for Atrazine Removal from Water [J].
Akpinar, Isil ;
Drout, Riki J. ;
Islamoglu, Timur ;
Kato, Satoshi ;
Lyu, Jiafei ;
Farha, Omar K. .
ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (06) :6097-6103
[3]   Architecting neonicotinoid-scavenging nanocomposite hydrogels for environmental remediation [J].
Alammar, Abdulaziz ;
Park, Sang-Hee ;
Ibrahim, Izwaharyanie ;
Arun, Deepak ;
Holtzl, Tibor ;
Dumee, Ludovic F. ;
Lim, Hong Ngee ;
Szekely, Gyorgy .
APPLIED MATERIALS TODAY, 2020, 21 (21)
[4]   Efficient Co-N/PC@CNT bifunctional electrocatalytic materials for oxygen reduction and oxygen evolution reactions based on metal-organic frameworks [J].
Ban, Jinjin ;
Xu, Guancheng ;
Zhang, Li ;
Xu, Gui ;
Yang, Lijuan ;
Sun, Zhipeng ;
Jia, Dianzeng .
NANOSCALE, 2018, 10 (19) :9077-9086
[5]   High-throughput synthesis of zeolitic imidazolate frameworks and application to CO2 capture [J].
Banerjee, Rahul ;
Phan, Anh ;
Wang, Bo ;
Knobler, Carolyn ;
Furukawa, Hiroyasu ;
O'Keeffe, Michael ;
Yaghi, Omar M. .
SCIENCE, 2008, 319 (5865) :939-943
[6]   Neonicotinoid Insecticides in Surface Water, Groundwater, and Wastewater Across Land-Use Gradients and Potential Effects [J].
Berens, Matthew J. ;
Capel, Paul D. ;
Arnold, William A. .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2021, 40 (04) :1017-1033
[7]   MOF-derived carbonaceous materials enriched with nitrogen: Preparation and applications in adsorption and catalysis [J].
Bhadra, Biswa Nath ;
Vinu, Ajayan ;
Serre, Christian ;
Jhung, Sung Hwa .
MATERIALS TODAY, 2019, 25 :88-111
[8]   Determination of neonicotinoids and butenolide residues in avian and insect pollinators and their ambient environment in Western Canada (2017,2018) [J].
Bishop, Christine A. ;
Woundneh, Million B. ;
Maisonneuve, France ;
Common, Julia ;
Elliott, John E. ;
Moran, Alison J. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 737
[9]   Biosorption of Co (II) from aqueous solution using algal biochar: Kinetics and isotherm studies [J].
Bordoloi, Neonjyoti ;
Goswami, Ritusmita ;
Kumar, Manish ;
Kataki, Rupam .
BIORESOURCE TECHNOLOGY, 2017, 244 :1465-1469
[10]   Carbon Thin-Layer-Protected Active Sites for ZIF-8-Derived Nitrogen-Enriched Carbon Frameworks/Expanded Graphite as Metal-Free Catalysts for Oxygen Reduction in Acidic Media [J].
Chen, Hun ;
You, Shijie ;
Ma, Yuanyuan ;
Zhang, Chunyue ;
Jing, Baojian ;
Cai, Zhuang ;
Tang, Bo ;
Ren, Nanqi ;
Zou, Jinlong .
CHEMISTRY OF MATERIALS, 2018, 30 (17) :6014-6025