References

  1. B.H. Beakou, K. El Hassani, M.A. Houssaini, M. Belbahloul, E. Oukani, A. Anouar, A novel biochar from Manihot esculenta Crantz waste: application for the removal of Malachite green from wastewater and optimization of the adsorption process, Water Sci. Technol., 76 (2017) 1447–1456.
  2. H. Jiang, Y.J. Dai, Vitamin C modified crayfish shells biochar efficiently remove tetracycline from water: a good medicine for water restoration, Chemosphere, 311 (2023) 136884, doi: 10.1016/j.chemosphere.2022.136884.
  3. W.H. Zou, H.J. Bai, S.P. Gao, Competitive adsorption of Neutral red and Cu2+ onto pyrolytic char: isotherm and kinetic study, J. Chem. Eng. Data, 57 (2012) 2792–2801.
  4. A. Mittal, Adsorption kinetics of removal of a toxic dye, Malachite green, from wastewater by using hen feathers, J. Hazard. Mater., 133 (2006) 196–202.
  5. H. Jiang, X. Li, J. Bai, W. Pan, Z. Luo, Y. Dai, Removal of ciprofloxacin lactate by phosphoric acid activated biochar: urgent consideration of new antibiotics for human health, Chem. Eng. Sci., 283 (2024) 119403, doi: 10.1016/j.ces.2023.119403.
  6. L.J. Zhang, D. Ma, G.Y. Mao, M.M. Zhang, R.P. Han, Adsorption of Neutral red from solution by bio-chars produced from pyrolysis of wheat straw, Adv. Mater. Res., 322 (2011) 72–76.
  7. J. Mittal, Permissible synthetic food dyes in India, Reson. – J. Sci. Educ., 25 (2020) 567–577.
  8. D.H.Y. Yanto, R.M. Chempaka, O.D. Nurhayat, B.D. Argo, T. Watanabe, Y. Wibisono, Y. Hung, Optimization of dyecontaminated wastewater treatment by fungal Mycelial-light expanded clay aggregate composite, Environ. Res., 231 (2023) 116207, doi: 10.1016/j.envres.2023.116207.
  9. J.H. Qu, Y. Xu, X.B. Zhang, M.Z. Sun, Y. Tao, X.M. Zhang, G.S. Zhang, C.J. Ge, Y. Zhang, Ball milling-assisted preparation of N-doped biochar loaded with ferrous sulfide as persulfate activator for phenol degradation: multiple active sites-triggered radical/non-radical mechanism, Appl. Catal., B, 316 (2022) 121639, doi: 10.1016/j.apcatb.2022.121639.
  10. X. Liu, Z.Y. Shao, Y.X. Wang, Y.F. Liu, S.Y. Wang, F. Gao, Y.J. Dai, New use for Lentinus edodes bran biochar for tetracycline removal, Environ. Res., 216 (2023) 114651, doi: 10.1016/j.envres.2022.114651.
  11. J. Wang, L.J. Qin, J.Y. Lin, J.Y. Zhu, Y.T. Zhang, J.D. Liu, B.V. der Bruggen, Enzymatic construction of antibacterial ultrathin membranes for dyes removal, Chem. Eng. J., 323 (2017) 56–63.
  12. W. Monika, Anion exchange resins as effective sorbents for acidic dye removal from aqueous solutions and wastewaters, Solvent Extr. Ion Exch., 30 (2012) 507–523.
  13. Y.J. Dai, Y.F. Liu, Y.L. Wang, W.Y. Fang, Y.M. Chen, Y.Y. Sui, A practice of conservation tillage in the mollisol region in Heilongjiang Province of China: a mini review, Pol. J. Environ. Stud., 32 (2023) 1479–1489.
  14. L. Liu, X.R. Wang, W.Y. Fang, X.H. Li, D.X. Shan, Y.J. Dai, Adsorption of metolachlor by a novel magnetic illite–biochar and recovery from soil, Environ. Res., 204 (2022) 111919, doi: 10.1016/j.envres.2021.111919.
  15. S. Ren, S. Wang, Y. Liu, Y. Wang, F. Gao, Y.J, Dai, A review on current pollution and removal methods of tetracycline in soil, Sep. Sci. Technol., 58 (2023) 2578–2602.
  16. J.H. Qu, Z.R. Li, F.X. Bi, X.B. Zhang, K.G. Li, M.Z. Sun, J. Ma, Y. Zhang, A multiple Kirkendall strategy for converting nanosized zero-valent iron to highly active Fenton-like catalyst for organics degradation, Proc. Natl. Acad. Sci. U.S.A., 120 (2023) e2304552120, doi: 10.1073/pnas.2304552120.
  17. H. Jiang, X. Li, Y. Dai, Phosphoric acid activation of cow dung biochar for adsorbing enrofloxacin in water: icing on the cake, Environ. Pollut., 341 (2024) 122887.
  18. J.H. Qu, R. Liu, X. Bi, Z. Li, K. Li, Q. Hu, X. Zhang, G. Zhang, S. Ma, Y. Zhang, Remediation of atrazine contaminated soil by microwave activated persulfate system: performance, mechanism and DFT calculation, J. Cleaner Prod., 399 (2023) 136546, doi: 10.1016/j.jclepro.2023.136546.
  19. S. Wong, H.H. Tumari, N. Ngadi, N.B. Mohamed, O. Hassan, R. Mat, N.A.S. Amin, Adsorption of anionic dyes on spent tea leaves modified with polyethyleneimine (PEI-STL), J. Cleaner Prod., 206 (2019) 394–406.
  20. A. Ates, T. Oymak, Characterization of persimmon fruit peel and its biochar for removal of MB from aqueous solutions: thermodynamic, kinetic and isotherm studies, Int. J. Phytorem., 22 (2020) 607–616.
  21. J. Mittal, R. Ahmad, A. Mariyam, V.K. Gupta, A. Mittal, Expeditious and enhanced sequestration of heavy metal ions from aqueous environment by papaya peel carbon: a green and low-cost adsorbent, Desal. Water Treat., 210 (2021) 365–376.
  22. Y.J. Dai, J.J. Shi, N.X. Zhang, Z.L. Pan, C.M. Xing, X. Chen, Current research trends on microplastics pollution and impacts on agro-ecosystems: a short review, Sep. Sci. Technol., 57 (2022) 656–669.
  23. Z.G. Jia, Z.Y. Li, T. Ni, S.B. Li, Adsorption of low-cost absorption materials based on biomass (Cortaderia selloana flower spikes) for dye removal: kinetics, isotherms and thermodynamic studies, J. Mol. Liq., 229 (2017) 285–292.
  24. T.S. Chandra, S.N. Mudliar, S. Vidyashankar, S. Mukherji, R. Sarada, K. Krishnamurthi, V.S. Chauhan, Defatted algal biomass as a non-conventional low-cost adsorbent: surface characterization and MB adsorption characteristics, Bioresour. Technol., 184 (2015) 395–404.
  25. J.H. Qu, Q.J. Meng, W. Peng, J.J. Shi, Z.H. Dong, Z.R. Li, Q. Hu, G.S. Zhang, L. Wang, S.Y. Ma, Y. Zhang, Application of functionalized biochar for adsorption of organic pollutants from environmental media: synthesis strategies, removal mechanisms and outlook, J. Cleaner Prod., 423 (2023) 138690, doi: 10.1016/j.jclepro.2023.138690.
  26. W. Fu, X.Y. Zhang, J. Zhao, S.L. Du, R. Horton, M.T. Hou, Artificial warming-mediated soil freezing and thawing processes can regulate soybean production in Northeast China, Agric. For. Meteorol., 262 (2018) 249–257.
  27. B.Y.Z. Hiew, L.Y. Lee, X.J. Lee, S. Thangalazhy-Gopakumar, S.Y. Gan, Utilisation of environmentally friendly okara-based biosorbent for cadmium(II) removal, Environ. Sci. Pollut. Res., 28 (2021) 40608–40622.
  28. J.H. Qu, X.B. Zhang, S.Q. Liu, X.J. Li, S.Y. Wang, Z.H. Feng, Z.H. Wu, L. Wang, Z. Jiang, Y. Zhang, One-step preparation of Fe/N co-doped porous biochar for chromium(VI) and bisphenol a decontamination in water: insights to co-activation and adsorption mechanisms, Bioresour. Technol., 361 (2022) 127718, doi: 10.1016/j.biortech.2022.127718.
  29. C. Arora, P. Kumar, S. Soni, J. Mittal, B. Singh, Efficient removal of Malachite green dye from aqueous solution using Curcuma caesia based activated carbon, Desal. Water Treat., 195 (2020) 341–352.
  30. J. Shah, M.R. Jan, M. Zeeshan, M. Imran, Kinetic, equilibrium and thermodynamic studies for sorption of
    2,4-dichlorophenol onto surfactant modified fuller’s earth, Appl. Clay Sci., 143 (2017) 227–233.
  31. H. Li, X. Dong, S.E.B. Da L.M. Oliveira, Y. Chen, L.Q. Ma, Mechanisms of metal sorption by biochars: biochar characteristics and modifications, Chemosphere, 178 (2017) 466–478.
  32. K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
  33. K.L. Tan, B.H. Hameed, Insight into the adsorption kinetics models for the removal of contaminants from aqueous solutions, J. Taiwan Inst. Chem. Eng., 74 (2017) 25–48.
  34. M.E. González-López, C.M. Laureano-Anzaldo, A.A. Pérez-Fonseca, M. Arellano, J.R. Robledo-Ortíz, A critical overview of adsorption models linearization: methodological and statistical inconsistencies, Sep. Purif. Rev., 51 (2021) 358–372.
  35. A.H. Jawad, R.R. Abd, M.A.M. Ishak, L.D. Wilson, Adsorption of methylene blue onto activated carbon developed from biomass waste by H2SO4 activation: kinetic, equilibrium and thermodynamic studies, Desal. Water Treat., 57 (2016) 25194–25206.
  36. Q.F. Zheng, Y.H. Wang, Y.G. Sun, H.H. Niu, J.R. Zhou, Z.M. Wang, J. Zhao, FTIR study of the structural properties of biochar prepared from different materials and carbonisation methods, Spectrosc. Spectral Anal., 34 (2014) 962–966.
  37. Z. Reddad, C. Gerente, Y. Andres, P. Le Cloirec, Adsorption of several metal ions onto a low-cost biosorbent: kinetic and equilibrium studies, Environ. Sci. Technol., 36 (2002) 2067–2073.
  38. M.Z. Sun, J.H. Qu, T.Y. Han, J.Q. Xue, K.G. Li, Z. Jiang, G.S. Zhang, H. Yu, Y. Zhang, Resource utilization of bovine bone to prepare biochar as persulfate activator for phenol degradation, J. Cleaner Prod., 383 (2023) 135415, doi: 10.1016/j.jclepro.2022.135415.
  39. N. Ghasemi, M. Ghasemi, S. Moazeni, P. Ghasemi, N.S. Alharbi, V.K. Gupta, S. Agarwal, I.V. Burakova, A.G. Tkachev, Zn(II) removal by amino-functionalized magnetic nanoparticles: kinetics, isotherm, and thermodynamic aspects of adsorption, J. Ind. Eng. Chem., 62 (2018) 302–310.
  40. S.H. Ho, Y.D. Chen, Z.K. Yang, D. Nagarajan, J.S. Chang, N.Q. Ren, High-efficiency removal of lead from wastewater by biochar derived from anaerobic digestion sludge, Bioresour. Technol., 246 (2017) 142–149.
  41. S. Mohebali, D. Bastani, H. Shayesteh, Equilibrium, kinetic and thermodynamic studies of a low-cost biosorbent for the removal of Congo red dye: acid and CTAB-acid modified celery (Apium graveo lens), J. Mol. Struct., 1176 (2019) 181–193.
  42. H. Ma, J.B. Li, W.W. Liu, M. Miao, B.J. Cheng, S.W. Zhu, Novel synthesis of a versatile magnetic adsorbent derived from corncob for dye removal, Bioresour. Technol., 190 (2015) 13–20.
  43. W.Y. Qu, T. Yuan, G.J. Yin, S.A. Xu, Q. Zhang, H.J. Su, Effect of properties of activated carbon on Malachite green adsorption, Fuel, 249 (2019) 45–53.
  44. L.C. Dai, W.K. Zhu, L. He, F.R. Tan, N.M. Zhu, Q. Zhou, M.X. He, G.Q. Hu, Calcium-rich biochar from crab shell: an unexpected super adsorbent for dye removal, Bioresour. Technol., 267 (2018) 510–516.
  45. J. Wang, Z.M. Chen, B.L. Chen, Adsorption of polycyclic aromatic hydrocarbons by graphene and graphene oxide nanosheets, Environ. Sci. Technol., 48 (2014) 4817–4825.
  46. H.N. Tran, S.J. You, H.P. Chao, Insight into adsorption mechanism of cationic dye onto agricultural residues-derived hydrochars: negligible role of pi-pi interaction, Korean J. Chem. Eng., 34 (2017) 1708–1720.
  47. L.C. Dai, F.R. Tan, H. Li, N.M. Zhu, M.X. He, Q.L. Zhu, G.Q. Hu, L. Wang, J. Zhao, Calcium-rich biochar from the pyrolysis of crab shell for phosphorus removal, J. Environ. Manage., 198 (2017) 70–74.
  48. B. Zhu, T.X. Fan, D. Zhang, Adsorption of copper ions from aqueous solution by citric acid modified soybean straw, J. Hazard. Mater., 153 (2008) 300–308.