References

  1. H.I. Kelle, Mopping of crude oil and some refined petroleum products from the environment using sawmill factory waste: adsorption isotherm and kinetic studies, J. Appl. Sci. Environ. Manage., 22 (2018) 34–40.
  2. Q. Hao, Y. Song, Z. Mo, S. Mishra, J. Pang, Y. Liu, J. Lian, J. Wu, S. Yuan, H. Xu, Highly efficient adsorption of oils and pollutants by porous ultrathin oxygen-modified BCN nanosheets, ACS Sustainable Chem. Eng., 7 (2019) 3234–3242.
  3. E.T. Nwankwere, C.E. Gimba, G.I. Ndukwe, A.K. Isuwa, Modeling of the kinetic and equilibrium sorption behavior of crude oil on HDTMAB modified nigerian nanoclays, Int. J. Sci. Technol. Res., 4 (2015) 106–114.
  4. G. Ju, J. Liu, D. Li, M. Cheng, F. Shi, Chemical and equipmentfree strategy to fabricate water/oil separating materials for emergent oil spill accidents, Langmuir, 33 (2017) 2664–2670.
  5. O. Carmody, R. Frost, Y. Xi, K. Serge, Adsorption of hydrocarbons on organo-clays-implications for oil spill remediation, J. Colloid Interface Sci., 305 (2007) 17–24.
  6. B.T. Song, Q. Xu, Highly hydrophobic and superoleophilic nanofibrous mats with controllable pore sizes for efficient oil/ water separation, Langmuir, 32 (2016) 9960–9966.
  7. B. Doshi, M. Sillanpää, S. Kalliola, A review of bio-based materials for oil spill treatment, Water Res.,135 (2018) 262–277.
  8. R.K. Gupta, G.J. Dunderdale, M.W. England, A. Hozumi, Oil/water separation techniques: a review of recent progresses and future directions, J. Mater. Chem. A, 5 (2017) 16025–16058
  9. Q.F. Wei, R.R. Mather, A.F. Fotheringham, R.D. Yang, Evaluation of nonwoven polypropylene oil sorbents in marine oil-spill recovery, Mar. Pollut. Bull., 46 (2003) 780–783.
  10. D. Ceylan, S. Dogu, B. Karacik, S.D. Yakan, O.S. Okay, O. Okay, Evaluation of butyl rubber as sorbent material for the removal of oil and polycyclic aromatic hydrocarbons from seawater, Environ. Sci. Technol., 43 (2009) 3846–3852.
  11. M. Keshawy, T.A. El-Moghny, A-R.M. Abdul-Raheim, K. Kabel, S.H. El-Hamouly, Synthesis and characterization of oil sorbent based on hydroxypropyl cellulose acrylate, Egypt. J. Pet., 22 (2013) 539–548.
  12. P. Venkataraman, J. Tang, E. Frenkel, G.L. McPherson, J. He, S.R. Raghavan, V. Kolesnichenko, A. Bose, V.T. John, Attachment of a hydrophobically modified biopolymer at the oil-water interface in the treatment of oil spills, ACS Appl. Mater. Interfaces, 5 (2013) 3572–3580.
  13. S.M. Sidik, A.A. Jalil, S. Triwahyono, S.H. Adam, M.A.H. Satar, B.H. Hameed, Modified oil palm leaves adsorbent with enhanced hydrophobicity for crude oil removal, Chem. Eng. J., 203 (2012) 9–18.
  14. H.H. Sokker, N.M. El-Sawy, M.A. Hassan, B.E. El-Anadouli, Adsorption of crude oil from aqueous solution by hydrogel of chitosan based polyacrylamide prepared by radiation induced graft polymerization, J. Hazard. Mater., 190 (2011) 359–365.
  15. S. Li, Y. Gao, H. L. Bai, L.P. Zhang, P. Qu, L. Bai, Preparation and characteristics of poly sulfone dialysis composite membranes modified with nanocrystalline cellulose, Bioresources, 6 (2011) 1670–1680.
  16. P. Qu, Y. Gao, G.F. Wu, L.P. Zhang, Nanocomposites of poly (lactic acid) reinforced with cellulose nanofibrils, Bioresources, 5 (2010) 1811–1823.
  17. P. Qu, H.W. Tang, Y. Gao, L.P. Zhang, S.Q. Wang, Polyethersulfone composite membrane blended with cellulose fibrils, Bioresources, 5 (2010) 2323–2336.
  18. G.S. Chauhan, B. Singh, S. Kumar, A. Chinkara, Synthesis and characterization of reactive copolymers of poly (butyl acrylate) and celluose, Polym. Polym. Compos., 13 (2005) 467–477.
  19. M.S. Mohy Eldin, Y.A. Ammar, T.M. Tamer, A.M. Omer, A.A. Ali, Development of low-cost chitosan derivatives based on marine waste sources as oil adsorptive materials: i. preparation and characterization, Desal. Water Treat., 72 (2017) 41–51.
  20. M.S. Mohy Eldin, Y.A. Ammar, T.M. Tamer, A.M. Omer, A.A. Ali, Development of oleophilic adsorbent based on chitosan-poly (butyl acrylate) graft copolymer for petroleum oil spill removal, Int. J. Adv. Res., 4 (2016) 2095–2111.
  21. S.W. Benner, V.T. John, C.K. Hall, Simulation study of hydrophobically modified chitosan as an oil dispersant additive, J. Phys. Chem. B, 119 (2015) 6979–6990.
  22. M.T. Tamer, V. Katarína, A.H. Mohamed, M.O. Ahmed, E.-S. Muhammad, S.M.-E. Mohamed, Š. Ladislav, Chitosan/hyaluronan/edaravone membranes for anti-inflammatory wound dressing: in vitro and in vivo evaluation studies, Mater. Sci. Eng., C, 90 (2018) 227–235.
  23. H. Honarkar, M. Barikani, Applications of biopolymers i: chitosan, Monatsh. Chem., 140 (2009) 1403–1420.
  24. X.X. Liang, A.M. Omer, Z. Hu, Y. Wang, D. Yu, X. Ouyang, Efficient adsorption of diclofenac sodium from aqueous solutions using magnetic amine-functionalized chitosan, Chemosphere, 217 (2018) 270–278.
  25. A. Eskhan, F. Banat, M. Abu Haija, S. Al-Asheh, Synthesis of mesoporous/macroporous microparticles using threedimensional assembly of chitosan-functionalized halloysite nanotubes and their performance in the adsorptive removal of oil droplets from water, Langmuir, 35 (2019) 2343–2357.
  26. D.W. Jenkins, M.H. Samuel, Review of vinyl graft copolymerization featuring recent advances toward controlled radical-based reactions and illustrated with chitin/chitosan, Trunk Polymers, Chem. Rev.,101 (2001) 3245–3273.
  27. R. Nithya, P.N. Sudha, Grafting of N-butyl acrylate on to chitosan by ceric Ion initiation and its antimicrobial activity, Der Pharm. Lett., 6 (2014) 58–64.
  28. V.K. Mourya, N.N. Inamdar, Chitosan-modifications and applications: opportunities galore, React. Funct. Polym., 68 (2008)1013–1051.
  29. M.S. Mohy Eldin, H.M. El-Sherif, E.A. Soliman, A.A. Elzatahry, A.M. Omer, Polyacrylamide-grafted carboxymethyl cellulose: smart pH-sensitive hydrogel for protein concentration, J. Appl. Polym. Sci., 12 (2011) 469–479.
  30. A.H. Mohamed, M.O. Ahmed, A. Eman, M.A.B. Walid, M.T. Tamer, Preparation, physicochemical characterization and antimicrobial activities of novel two phenolic chitosan Schiff base derivatives, Sci. Rep., 8 (2018) 1–14.
  31. A. Bazargan, J. Tan, G. McKay, Standardization of oil sorbent performance testing, J. Test. Eval., 43 (2015) 1–10.
  32. G. Yuan, Z. Yitong, Z. Xiaoli, Z. Liping, Q. Ping, Synthesis and characteristics of graft copolymers of poly(butyl acrylate) and cellulose fiber with ultrasonic processing as a material for oil absorption, Bioresources, 7 (2012) 135–147.
  33. N. Ibrahim, W.W. Yunus, F. Abu-Ilaiwi, M. Rahman, M. Ahmad, K. Dahlan, Optimized condition for grafting reaction of poly(butyl acrylate) onto oil palm empty fruit bunch fibre, Polym. Int., 52 (2003) 1119–1124.
  34. T.M. Tamer, W.M. Abou-Taleb, G.D. Roston, M.S. Mohyeldin, A.M. Omer, R.E. Khalifa, A.M. Hafez, Formation of zinc oxide nanoparticles using alginate as a template for purification of wastewater, Environ. Nanotechnol. Monit. Manage., 10 (2018)112–121.
  35. A.M. Omer, R.E. Khalifa, Z. Hu, H. Zhang, C. Liu, X.K. Ouyang, Fabrication of tetraethylenepentamine functionalized alginate beads for adsorptive removal of Cr(VI) from aqueous solutions, Int. J. Biol. Macromol, 125 (2019) 1221–1231.
  36. R.E. Khalifa, A.M. Omer, T.M. Tamer, A.A. Ali, Y.A. Ammar, M.S. Mohy Eldin, Efficient eco-friendly crude oil adsorptive chitosan derivatives: kinetics, equilibrium and thermodynamic studies, Desal. Water. Treat., (2019) 1–13.
  37. R.E. Khalifa, A.M. Omer, T.M. Tamer, W.M. Salem, M.S. Mohy Eldin, Removal of methylene blue dye from synthetic aqueous solutions using novel phosphonate cellulose acetate membranes: adsorption Kinetic, equilibrium, and thermodynamic studies, Desal. Water. Treat., 144 (2019) 272–285.
  38. A. Ummadisingu, S. Gupta, Characteristics and kinetic study of chitosan prepared from seafood industry waste for oil spills cleanup, Desal. Water Treat., 44 (2012), 44–51.
  39. N.E. Thompson, G.C. Emmanuel, K.J. Adagadzu, N.B. Yusuf, Sorption studies of crude oil on acetylated rice husks, Arch. Appl. Sci. Res., 2 (2010) 142–151.
  40. H. Li, X. Zhuang, M. Bao, Kinetics and thermodynamics of dissolved petroleum hydrocarbons in sediment under sophorolipid application and their effects on oil behavior endresults in marine environment, RSC Adv., 7 (2017) 45843–45851.
  41. Z. Li, B. Wang, X. Qin, Y. Wang, C. Liu, Q. Shao, N. Wang, J. Zhang, Z. Wang, C. Shen, Superhydrophobic/superoleophilic polycarbonate/carbon nanotubes porous monolith for selective oil adsorption from water, ACS Sustainable Chem. Eng., 6 (2018) 13747–13755.
  42. S.M. Davoodi, M. Taheran, S.K. Brar, R. Galvez-Cloutier, R. Martel, Hydrophobic dolomite sorbent for oil spill clean-ups: kinetic modeling and isotherm study, Fuel, 251 (2019) 57–72.
  43. S.C, Cheu, H. Kong, S.T. Song, K. Johari, N. Saman, M.A.C. Yunus, Separation of dissolved oil from aqueous solution by sorption onto acetylated lignocellulosic biomass: equilibrium, kinetics and mechanism Studies, J. Environ. Chem. Eng., 4 (2016) 868–881.
  44. Z. Wang, J.P. Barford, C.W. Hui, G. Mckay, Kinetic and equilibrium studies of hydrophilic and hydrophobic rice husk cellulosic fibers used as oil spill sorbents, Chem. Eng. J., 281 (2015) 961–969.
  45. F.C. Wu, R.L. Tseng, R.S. Juang, Characteristics of elovich equation used for the analysis of adsorption kinetics in dyechitosan systems, Chem. Eng. J., 150 (2009) 366–373.
  46. Ş. Taşar, F. Kaya, A. Özer, Biosorption of lead(II) ions from aqueous solution by peanut shells: equilibrium, thermodynamic and kinetic studies, J. Environ. Chem. Eng., 2 (2014) 1018–1026.
  47. A.U. Itodo, F.W. Abdulrahman, L.G. Hassan, S.A. Maigandi, H.U. Itodo, Intraparticle diffusion and intraparticulate diffusivities of herbicide on derived activated carbon, Research, 2 (2010) 74–86.
  48. D.C. Sinica, C. Imaga, A.A. Abia, J.C. Igwe, Removal of Ni(II), Cu(II) and Zn(II) ions from synthetic wastewater using sorghum hulls as adsorbents, Der Chem. Sin., 5 (2014) 67–75.
  49. M.A. Ahmad, P.N.A. Ahmad, O.S. Bello, Kinetic, equilibrium and thermodynamic studies of synthetic dye removal using pomegranate peel activated carbon prepared by microwaveinduced KOH activation, Water Resour. Ind., 6 (2014)18–35.
  50. S. Karthikeyan, B. Sivakumar, N. Sivakumar, Film and pore diffusion modeling for adsorption of reactive red 2 from aqueous solution on to activated carbon prepared from biodiesel industrial waste, J. Chem., 7 (2012) S175-S184.
  51. A. Achmad, J. Kassim, T.K. Suan, R.C. Amat, T.L. Seey, Equilibrium, kinetic and thermodynamic studies on the adsorption of direct dye onto a novel green adsorbent developed from uncaria gambir extract, J. Phys. Sci., 23 (2012) 1–13.
  52. S.S. Elanchezhiyan, N. Sivasurian, S. Meenakshi, Enhancement of oil recovery using zirconium-chitosan hybrid composite by adsorptive method, Carbohydr. Polym., 145 (2016) 103–113.
  53. I.D. Mall, V.C. Srivastava, N.K. Agarwal, I.M. Mishra, Removal of congo red from aqueous solution by bagasse fly ash and activated carbon: kinetic study and equilibrium isotherm analysis, Chemosphere, 61 (2005) 492–501.
  54. S.S. Elanchezhiyan, S. Meenakshi, Synthesis and characterization of chitosan/Mg-Al layered double hydroxide composite for the removal of oil particles from oil-in-water emulsion, Int. J. Biol. Macromol., 104 (2017) 1586–1595.
  55. F.C.F. Barros, L. Vasconcellos, C. Grombone, T.V. Carvalho, R.F.D. Nascimento, Removal of petroleum spill in water by chitin and chitosan, Orbital Electron. J. Chem., 6 (2014) 70–74.
  56. V.K. Gupta, A. Mittal, A. Malviya, J. Mittal, Adsorption of carmoisine A from wastewater using waste materials-bottom ash and deoiled soya, J. Colloid. Interface. Sci., 335 (2009) 24–33.
  57. S. Zhang, F. Lu, L. Tao, N. Liu, C. Gao, L. Feng, Y. Wei, Bioinspired anti-oil-fouling chitosan-coated mesh for oil/ water separation suitable for broad pH range and hypersaline environments, ACS Appl. Mater. Interfaces, 5 (2013) 11971–11976
  58. J.P. Chaudhary, N. Vadodariya, S.K. Nataraj, R. Meena, Chitosan-based aerogel membrane for robust oil-in-water emulsion separation, ACS Appl. Mater. Interfaces, 7 (2015) 24957–24962.
  59. I.C.S. Grem, B.N.B. Lima, W.F. Carneiro, Y.G.C. Queirós, C.R.E. Mansur, Chitosan microspheres applied for removal of oil from produced water in the oil industry, Polímeros. Ciência. Tecnol., 23 (2013) 705–711.
  60. J.O. Nwadiogbu, V.I.E. Ajiwe, P.A.C. Okoye, Removal of crude oil from aqueous medium by sorption on hydrophobic corncobs: equilibrium and kinetic studies, J. Taibah Univ. Sci., 10 (2015) 56–63.
  61. T.N. Son, F. Jingduo, T.L. Nhat, T.T.L. Ai, H. Nguyen, B.C.T. Vincent, M.D. Hai, Cellulose aerogel from paper waste for crude oil spill cleaning, Ind. Eng. Chem. Res., 52 (2013) 18386–18391.
  62. L. Silvani, B. Vrchotova, P. Kastanek, K. Demnerova, I. Pettiti, M.P. Papini, Characterizing biochar as alternative sorbent for oil spill remediation, Sci. Rep., 7 (2017) 1–10.
  63. N. Lv, X. Wang, S. Peng, H. Zhang, L. Luo, Study of the kinetics and equilibrium of the adsorption of oils onto hydrophobic jute fiber modified via the sol-gel method, Int. J. Environ. Res. Public Health, 15 (2018) 969–983.