[1] R.-L. Xie, Z.-M. Zong, F.-J. Liu, Y.-G. Wang, H.-L. Yan, Z.-H. Wei, M. Mayyas, X.-Y. Wei, Nitrogen-doped porous carbon foams prepared from mesophase pitch through graphitic carbon nitride nanosheet templates, RSC Adv. 5(57) (2015) 45718-45724. [2] Y. Zheng, H. Niu, D. He, S. Wang, Y. Cai, S. Zhang, Hierarchical mesoporous carbon nanosheets for efficient organic pollutants removal, Microporous Mesoporous Mater. 276(2019) 251-259. [3] H. Li, Q. Deng, H. Chen, X. Cao, J. Zheng, Y. Zhong, P. Zhang, J. Wang, Z. Zeng, S. Deng, Benzenesulfonic acid functionalized hydrophobic mesoporous biochar as an efficient catalyst for the production of biofuel, Appl. Catal. A-Gen. 580(2019) 178-185. [4] Y. Shi, X. Zhang, G. Liu, Activated carbons derived from hydrothermally carbonized sucrose:remarkable adsorbents for adsorptive desulfurization, ACS Sustain. Chem. Eng. 3(9) (2015) 2237-2246. [5] M. Sevilla, G.A. Ferrero, A.B. Fuertes, Beyond KOH activation for the synthesis of superactivated carbons from hydrochar, Carbon 114(2017) 50-58. [6] C. Cheng, H. Liu, P. Dai, X. Shen, J. Zhang, T. Zhao, Z. Zhu, Microwave-assisted preparation and characterization of mesoporous activated carbon from mushroom roots by phytic acid (C6H18O24P6) activation, J. Taiwan. Inst. Chem. E. 67(2016) 532-537. [7] A.B. Fuertes, G.A. Ferrero, N. Diez, M. Sevilla, A green route to high-surface area carbons by chemical activation of biomass-based products with sodium thiosulfate, ACS Sustain. Chem. Eng. 6(12) (2018) 16323-16331. [8] L. Wang, L. Rao, B. Xia, L. Wang, L. Yue, Y. Liang, H. DaCosta, X. Hu, Highly efficient CO2 adsorption by nitrogen-doped porous carbons synthesized with lowtemperature sodium amide activation, Carbon 130(2018) 31-40. [9] Y. Tian, C. Xiao, J. Yin, W. Zhang, J. Bao, H. Lin, H. Lu, Hierarchical porous carbon prepared through sustainable CuCl2 activation of rice husk for high-performance supercapacitors, ChemistrySelect 4(8) (2019) 2314-2319. [10] A. Mittal, M. Teotia, R.K. Soni, J. Mittal, Applications of egg shell and egg shell membrane as adsorbents:A review, J. Mol. Liq. 223(2016) 376-387. [11] Y. Sun, G. Yang, L. Zhang, Hybrid adsorbent prepared from renewable lignin and waste egg shell for SO2 removal:Characterization and process optimization, Ecol. Eng. 115(2018) 139-148. [12] A. Guijarro-Aldaco, V. Hernández-Montoya, A. Bonilla-Petriciolet, M.A. MontesMorán, D.I. Mendoza-Castillo, Improving the adsorption of heavy metals from water using commercial carbons modified with egg shell wastes, Ind. Eng. Chem. Res. 50(15) (2011) 9354-9362. [13] C.O. Tuck, E. Perez, I.T. Horvath, R.A. Sheldon, M. Poliakoff, Valorization of biomass:deriving more value from waste, Science 337(6095) (2012) 695-699. [14] Z. Li, Z. Xu, X. Tan, H. Wang, C.M.B. Holt, T. Stephenson, B.C. Olsen, D. Mitlin, Mesoporous nitrogen-rich carbons derived from protein for ultra-high capacity battery anodes and supercapacitors, Energy Environ. Sci. 6(3) (2013) 871. [15] H. Ma, C. Li, M. Zhang, J.-D. Hong, G. Shi, Graphene oxide induced hydrothermal carbonization of egg proteins for high-performance supercapacitors, J. Mater. Chem. A 5(32) (2017) 17040-17047. [16] Y. Shi, W. Zheng, H. Liu, L. Wang, H. Zhang, Protein-derived nitrogen and sulfur codoped carbon for efficient adsorptive removal of heavy metals, Chin. J. Chem. Eng. 27(10) (2019) 2581-2586. [17] H. Ouyang, Q. Gong, C. Li, J. Huang, Z. Xu, Porphyra derived hierarchical porous carbon with high graphitization for ultra-stable lithium-ion batteries, Mater. Lett. 235(2019) 111-115. [18] V.K. Gupta, S. Agarwal, A.K. Bharti, H. Sadegh, Adsorption mechanism of functionalized multi-walled carbon nanotubes for advanced Cu(II) removal, J. Mol. Liq. 230(2017) 667-673. [19] Y.K. Kim, J.H. Park, J.W. Lee, Facile nano-templated CO2 conversion into highly interconnected hierarchical porous carbon for high-performance supercapacitor electrodes, Carbon 126(2018) 215-224. [20] S. Chen, J. Wang, Z. Wu, Q. Deng, W. Tu, G. Dai, Z. Zeng, S. Deng, Enhanced Cr(VI) removal by polyethylenimine- and phosphorus-codoped hierarchical porous carbons, J. Colloid Interface Sci. 523(2018) 110-120. [21] Q. Ji, C. Hu, H. Liu, J. Qu, Development of nitrogen-doped carbon for selective metal ion capture, Chem. Eng. J. 350(2018) 608-615. [22] J. Guo, Y. Song, X. Ji, L. Ji, L. Cai, Y. Wang, H. Zhang, W. Song, Preparation and characterization of nanoporous activated carbon derived from prawn shell and its application for removal of heavy metal ions, Materials 12(2) (2019) 241. [23] M.B. Ahmed, J.L. Zhou, H.H. Ngo, W. Guo, M.A.H. Johir, K. Sornalingam, Single and competitive sorption properties and mechanism of functionalized biochar for removing sulfonamide antibiotics from water, Chem. Eng. J. 311(2017) 348-358. [24] K. Kaewtatip, C. Chiarathanakrit, S.-A. Riyajan, The effects of egg shell and shrimp shell on the properties of baked starch foam, Powder Technol. 335(2018) 354-359. [25] Z. Wang, Y. Xiong, S. Guan, A simple CaCO3-assisted template carbonization method for producing nitrogen doped porous carbons as electrode materials for supercapacitors, Electrochim. Acta 188(2016) 757-766. [26] G. Yang, H. Han, T. Li, C. Du, Synthesis of nitrogen-doped porous graphitic carbons using nano-CaCO3 as template, graphitization catalyst, and activating agent, Carbon 50(10) (2012) 3753-3765. [27] H. Wei, S. Deng, Q. Huang, Y. Nie, B. Wang, J. Huang, G. Yu, Regenerable granular carbon nanotubes/alumina hybrid adsorbents for diclofenac sodium and carbamazepine removal from aqueous solution, Water Res. 47(12) (2013) 4139-4147. [28] P.A. Quinlivan, L. Li, D.R. Knappe, Effects of activated carbon characteristics on the simultaneous adsorption of aqueous organic micropollutants and natural organic matter, Water Res. 39(8) (2005) 1663-1673. [29] J. Pallarés, A. González-Cencerrado, I. Arauzo, Production and characterization of activated carbon from barley straw by physical activation with carbon dioxide and steam, Biomass Bioenergy 115(2018) 64-73. [30] L. Nielsen, T.J. Bandosz, Analysis of sulfamethoxazole and trimethoprim adsorption on sewage sludge and fish waste derived adsorbents, Microporous Mesoporous Mater. 220(2016) 58-72. [31] I. Ahmed, B.N. Bhadra, H.J. Lee, S.H. Jhung, Metal-organic framework-derived carbons:Preparation from ZIF-8 and application in the adsorptive removal of sulfamethoxazole from water, Catal. Today 301(2018) 90-97. [32] H. Chen, B. Gao, H. Li, Removal of sulfamethoxazole and ciprofloxacin from aqueous solutions by graphene oxide, J. Hazard. Mater. 282(2015) 201-207. [33] M. Sarker, H.J. An, D.K. Yoo, S.H. Jhung, Nitrogen-doped porous carbon from ionic liquid@Al-metal-organic framework:A prominent adsorbent for purification of both aqueous and non-aqueous solutions, Chem. Eng. J. 338(2018) 107-116. [34] J. Luo, J. Xiong, Y. Chao, X. Li, H. Li, J. Pang, F. Zhu, W. Zhu, H. Li, Activated boron nitride ultrathin nanosheets for enhanced adsorption desulfurization performance, J. Taiwan. Inst. Chem. E. 93(2018) 245-252. [35] Q. Chen, J. Zheng, J. Xu, Z. Dang, L. Zhang, Insights into sulfamethazine adsorption interfacial interaction mechanism on mesoporous cellulose biochar:Coupling DFT/FOT simulations with experiments, Chem. Eng. J. 356(2019) 341-349. |