References

  1. M.R. Roger, Composite Materials from Agricultural Resources, Denmark Academy of Technical Science, Lyngby, 1995, pp. 27–41.
  2. R. Vinodhini, M. Narayanan, Bioaccumulation of heavy metals in organs of fresh water fish Cyprinus carpio (common carp), Int. J. Environ. Sci. Technol., 5 (2008) 179–182.
  3. A. Demirak, F. Yilmaz, A.L. Tuna, N. Ozdemir, Heavy metals in water, sediment and tissues of Leuciscus cephalus from a stream in southwestern Turkey, Chemosphere, 63 (2006) 1451–1458.
  4. U. Förstner, G.T.W. Wittmann, Metal Pollution in the Aquatic Environment, Springer, Heidelberg, Berlin, 1981.
  5. Y.M. Nor, Ecotoxicity of copper to aquatic biota: a review, Environ. Res., 43 (1987) 274–282.
  6. J.O. Duruibe, M.O.C. Ogwuegbu, J.N. Egwurugwu, Heavy metal pollution and human biotoxic effects, Int. J. Phys. Sci., 2 (2007) 112–118.
  7. C.C. Pfeiffer, R. Mailloux, Excess copper as a factor in human diseases, J. Orthomol. Med., 2 (1987) 171–182.
  8. A.G. EL Samrani, B.S. Lartiges, F. Villiéras, Chemical coagulation of combined sewer overflow: heavy metal removal and treatment optimization, J. Water Res., 42 (2008) 951–960.
  9. A. Bódalo-Santoyo, J.L. Gómez-Carrasco, E. Gómez-Gómez, F. Máximo-Martín, A.M. Hidalgo-Montesinos, Application of reverse osmosis to reduce pollutants present in industrial wastewater, Desalination, 155 (2003) 101–108.
  10. B. Zhang, H.-Z. Liu, W. Wang, Z.-G. Gao, Y.-H. Cao, Recovery of rhenium from copper leach solutions using ion exchange with weak base resins, Hydrometallurgy, 173 (2017) 50–56.
  11. D.J. Ennigrou, M.B.S. Ali, M. Dhahbi, Copper and zinc removal from aqueous solutions by polyacrylic acid assistedultrafiltration, Desalination, 343 (2014) 82–87.
  12. H. Demiral, C. Güngör, Adsorption of copper (II) from aqueous solutions on activated carbon prepared from grape bagasse, J. Clean Prod., 16 (2016) 959–6526.
  13. M.E. Argun, S. Dursun, Removal of heavy metal ions using chemically modified adsorbents, J. Int. Environ. Appl. Sci., 1 (2006) 27–40.
  14. J. He, J.P. Chen, A comprehensive review on biosorption of heavy metals by algal biomass: materials, performances, chemistry and modeling simulation tools, Bioresour. Technol., 160 (2014) 67–78.
  15. S. Babel, T.A. Kurniawan, Low-cost adsorbents for heavy metals uptake from contaminated water: a review, J. Hazard. Mater., 97 (2003) 219–243.
  16. D. Jedryczko, P. Pohl, M. Welna, Determination of the total cadmium, copper, lead and zinc concentrations and their labile species fraction in apple beverages by flow-through anodic stripping chronopotentiometry, Food Chem., 225 (2017) 220–229.
  17. R. Sudha, K. Srinivasan, P. Premkumar, Kinetic, mechanism and equilibrium studies on removal of Pb(II) using Citrus limettioides peel and seed carbon, Res. Chem. Intermed., 42 (2016) 1677–1697.
  18. F.A. Pavan, I.S. Lima, E.C. Lima, C. Airoldi, Y. Gushikem, Use of ponkan mandarin peels as biosorbent for toxic metals uptake from aqueous solutions, J. Hazard. Mater., 137 (2006) 527–533.
  19. M. Kiliç, M.E. Keskin, S. Mazlum, N. Mazlum, Effect of conditioning for Pb(II) and Hg(II) biosorption on waste activated sludge, Chem. Eng. Process, 47 (2008) 31–40.
  20. Y.N. Mata, M.L. Blázquez, A. Ballester, F. González, J.A. Muñoz, Sugar-beet pulp pectin gels as biosorbent for heavy metals: preparation and determination of biosorption and desorption characteristics, Chem. Eng. J., 150 (2009) 289–301.
  21. W.E. Marshall, L.H. Wartelle, D.E. Boler, M.M. Johns, C.A. Toles, Enhanced metal adsorption by soybean hulls with citric acid, Bioresour. Technol., 69 (1999) 263–268.
  22. L.H. Wartelle, W.E. Marshall, Citric acid modified agricultural by-products as copper ion adsorbents, Adv. Environ. Res., 4 (2000) 1–7.
  23. M.K. Sahu, S. Mandal, S.S. Dash, P. Badhai, R.K. Patel, Removal of Pb(II) from aqueous solution by acid activated red mud, J. Environ. Chem. Eng., 1 (2013) 1315–1324.
  24. L.A. Romero-Cano, H. García-Rosero, L.V. Gonzalez-Gutiérrez, L.A. Baldenegro-Pérez, F. Carrasco-Marín, Functionalized adsorbents prepared from fruit peels: equilibrium, kinetic and thermodynamic studies for copper adsorption in aqueous solution, J. Clean Prod., 162 (2017) 195–204.
  25. S. Hoo Lee, C.H. Jung, H. Chung, M.Y. Lee, J-W. Yang, Removal of heavy metals from aqueous solutions by apple residues, Process Biochem., 33 (1998) 205–211.
  26. G.S. Dhillon, S. Kaur, S.K. Brar, Perspective of apple processing wastes as low-cost substrates for bioproduction of high value products: a review, Renew. Sust. Energ. Rev., 27 (2013) 789–805.
  27. https://fr.actualitix.com/pays/dza/algerie-pomme-production. php.
  28. N.-C. Feng, X.-Y. Gue, S. Liang, Enhanced Cu(II) adsorption by orange peel modified with sodium hydroxide, T. Nonferr. Metal Soc., 20 (2010) s146–s152.
  29. A.O. Dada, A.P. Olalekan, A.M. Olatunya, O. Dada, Langmuir, Freundlich, Temkin and Dubinin–Radushkevich isotherms studies of equilibrium sorption of Zn2+ unto phosphoric acid modified rice husk, J. Appl. Chem., 3 (2012) 38–45.
  30. M. Khormaei, B. Nasernejad, M. Edrisi, T. Eslamzadeh, Copper biosorption from aqueous solutions by sour orange residue, J. Hazard. Mater., 149 (2007) 269–274.
  31. S. Larous, A.H. Meniai, Adsorption of diclofenac from aqueous solution using activated carbon prepared from olive stones, Int. J. Hydrogen Energy, 41 (2016) 10380–10390.
  32. A. Tassist, H. Lounici, N. Abdi, N. Mameri, Equilibrium, kinetic and thermodynamic studies on aluminium biosorption by a mycelial biomass (Streptomyces rimosus), J. Hazard. Mater., 183 (2010) 35–43.
  33. M.A. Martín-Lara, G. Blázquez, M. Calero, A.I. Almendros, A. Ronda, Binary biosorption of copper and lead onto pine cone shell in batch reactors and in fixed bed columns, Int. J. Miner. Process, 148 (2016) 72–82.
  34. A. Zubair, H.N. Bhatti, M.A. Hanif, F. Shafqat, Kinetic and equilibrium modeling for Cr(III) and Cr(VI) removal from aqueous solutions by citrus reticulata waste biomass, Water Air Soil Pollut., 191 (2008) 305–318.
  35. J. Lin, L. Wang, Comparison between linear and non-linear forms of pseudo-first-order and pseudo-second-order adsorption kinetic models for the removal of methylene blue by activated carbon, Front. Environ. Sci. Eng., 3 (2009) 320–324.
  36. H. Yu, J. Pang, T. Ai, L. Liu, Biosorption of Cu2+, Co2+ and Ni2+ from aqueous solution by modified corn silk: equilibrium, kinetics and thermodynamic studies, J. Taiwan Inst. Chem. Eng., 62 (2016) 21–30.
  37. S. Shahmohammadi-Kalalagh, H. Babazadeh, A. Nazmi, Comparison of linear and nonlinear forms of isotherm models for Zn(II) and Cu(II) sorption on a kaolinite, Arabian J. Geosci., 8 (2015) 397–402.
  38. K.A. Shroff, V.K. Vaidya, Kinetics and equilibrium studies on biosorption of nickel from aqueous solution by dead fungal biomass of Mucorhiemalis, Chem. Eng. J., 171 (2011) 1234–1245.
  39. S. Dutta, A. Bhattacharyya, A. Ganguly, S. Gupta, S. Basu, Application of response surface methodology for preparation of low cost adsorbent from citrus fruit peel and for removal of methylene blue, Desalination, 275 (2011) 26–36.
  40. J.N. Sahu, J. Acharya, B.C. Meikap, Response surface modeling and optimization of chromium (VI) removal from aqueous solution using tamarind wood activated carbon in batch process, J. Hazard. Mater., 172 (2009) 818–825.
  41. A. Bhatnagar, M. Sillanpää, A. Witek-Krowiak, Agricultural waste peels as versatile biomass for water purification − a review, Chem. Eng. J., 270 (2015) 244–271.
  42. X. Li, Y. Tang, X. Cao, D. Lu, F. Luo, W. Shao, Preparation and evaluation of orange peel cellulose adsorbents for effective removal of cadmium, zinc, cobalt and nickel, Colloids Surf. A Physicochem. Eng. Asp., 317 (2008) 512–521.
  43. V. Lugo-Lugo, S. Hernandez-Lopez, C. Barrera-Diaz, F. Urena-Nunez, B. Bilyeu, A comparative study of natural, formaldehyde-treated and copolymer-grafted orange peel for Pb(II) adsorption under batch and continuous mode, J. Hazard. Mater., 161 (2009) 1255–1264.
  44. M.A. Wahab, S. Jellali, N. Jedidi, Ammonium biosorption onto sawdust: FTIR analysis, kinetics and adsorption isotherms modelling, Bioresour. Technol., 101 (2010) 5070–5075.
  45. M.R. Lasheen, N.S. Ammar, H.S. Ibrahim, Adsorption/ desorption of Cd(II),Cu(II) and pb(II) using chemically modified orange peel: equilibrium and kinetic studies, Solid State Sci., 14 (2012) 202–210.
  46. A.H. Ören, A. Kaya, Factors affecting adsorption characteristics of Zn2+ on two natural zeolites, J. Hazard. Mater., 131 (2006) 59–65.
  47. R.L. Ramos, G.A. Armenta, L.V. Gonzalez-Gutierrez, R.M. Guerrero-Coronado, J. Mendoza-Barron, Ammonia exchange on clinoptilolite from mineral deposits located in Mexico, J. Chem. Technol. Biotechnol., 79 (2004) 651–657.
  48. U.A. Guler, M. Sarioglu, Single and binary biosorption of Cu(II), Ni(II) and methylene blue by raw and pretreated Spirogyra sp.: equilibrium and kinetic modelling, J. Environ. Chem. Eng., 1 (2013) 369–377.
  49. M. Izquierdo, P. Marzal, P.N.L. Lens, effect of organic ligands on copper (II) removal from metal plating waste water by orange peel based biosorbents, Water Air Soil Pollut., 224 (2013) 1507–1522.
  50. M. Omraei, H. Esfandian, R. Katal, M. Ghorbani, Study of the removal of Zn(II) from aqueous solution using polyrrole nanocomposite, Desalination, 271 (2011) 248–256.
  51. T.J. Mohammed, R.I. Ibrahim, Remediation of Cu(II) from well water of Iraq by using cortex of fruits and agricultural waste, Arabian J. Sci. Eng., 41 (2016) 345–355.
  52. M. Kazmi, N. Feroze, S. Naveed, S.H. Javed, Biosorption of copper(II) on prunus amygdalus shell: characterization, biosorbent size analysis, kinetic, equilibrium and mechanistic studies, Korean J. Chem. Eng., 28 (2011) 2033–2040.
  53. X. Chen, Modeling of experimental adsorption isotherm data, Information, 6 (2015) 14–22.
  54. J. Hu, S.W. Wang, D.D. Shao, Y.H. Dong, J.X. Li, X.K. Wang, Adsorption and reduction of chromium (VI) from aqueous solution by multiwalled carbon nanotubes, Open Environ. Pollut. Toxicol. J., 1 (2009) 66–73.
  55. D. Xu, X.L. Tan, C.L. Chen, X.K. Wang, Adsorption of Pb(II) from aqueous solution to MX-80 bentonite: effect of pH, ionic strength, foreign ions and temperature, Appl. Clay Sci., 41 (2008) 37–46.
  56. J.L. Gong, X.Y. Wang, G.M. Zeng, L. Chen, J.H. Deng, X.R. Zhang, Q.Y. Niu, Copper (II) removal by pectin–iron oxide magnetic nanocomposite adsorbent, Chem. Eng. J., 185–186 (2012) 100–107.
  57. S. Srivastava, S.B. Agrawal, M.K. Mondal, A review on progress of heavy metal removal using adsorbents of microbial and plant origin, Environ. Sci. Pollut. Res. Int., 22 (2015) 15386–15415.