References

  1. A.S. Matharu, E.M. de Melo, J.A. Houghton, Opportunity for high value-added chemicals from food supply chain wastes, Bioresour. Technol., 215 (2016) 123–130.
  2. K. Sharma, N. Mahato, M.H. Cho, Y.R. Lee, Converting citrus wastes into value-added products: economic and environmently friendly approaches, Nutrition, 34 (2017) 29–46.
  3. S. Rafiq, R. Kaul, S.A. Sofi, N. Bashir, F. Nazir, G.A. Nayik, Citrus peel as a source of functional ingredient: a review, J. Saudi Soc. Agric. Sci., 17 (2018) 351–358.
  4. I. Anastopoulos, G.Z. Kyzas, Agricultural peels for dye adsorption: a review of recent literature, J. Mol. Liq., 200 (2014) 381–389.
  5. J.A. Siles, F. Vargas, M.C. Gutiérrez, A.F. Chica, M.A. Martín, Integral valorisation of waste orange peel using combustion, biomethanisation and co-composting technologies, Bioresour. Technol., 211 (2016) 173–182.
  6. F. Girotto, L. Alibardi, R. Cossu, Food waste generation and industrial uses: a review, Waste Manage., 45 (2015) 32–41.
  7. X.M. Chen, A.R. Tait, D.D. Kitts, Flavonoid composition of orange peel and its association with antioxidant and antiinflammatory activities, Food Chem., 218 (2017) 15–21.
  8. B. Ozturk, C. Parkinson, M. Gonzalez-Miquel, Extraction of polyphenolic antioxidants from orange peel waste using deep eutectic solvents, Sep. Purif. Technol., 206 (2018) 1–13.
  9. N. M’hiri, I. Ioannou, N. Mihoubi Boudhrioua, M. Ghoul, Effect of different operating conditions on the extraction of phenolic compounds in orange peel, Food Bioprod. Process., 96 (2015) 161–170.
  10. Z. Escobedo-Avellaneda, J. Gutiérrez-Uribe, A. Valdez-Fragoso, J.A. Torres, J. Welti-Chanes, Phytochemicals and antioxidant activity of juice, flavedo, albedo and comminuted orange, J. Funct. Foods, 6 (2014) 470–481.
  11. A.M. Torrado, S. Cortés, J.M. Salgado, B. Max, N. Rodríguez, B.P. Bibbins, A. Converti, J.M. Domínguez, Citric acid production from orange peel wastes by solid-state fermentation, Braz. J. Microbiol., 42 (2011) 394–409.
  12. B. Gómez, B. Gullón, C. Remoroza, H.A. Schols, J.C. Parajó, J.L. Alonso, Purification, Characterization, and prebiotic properties of pectic oligosaccharides from orange peel wastes, J. Agric. Food Chem., 62 (2014) 9769–9782.
  13. S. Lalou, F. Mantzouridou, A. Paraskevopoulou, B. Bugarski, S. Levic, V. Nedovic, Bioflavour production from orange peel hydrolysate using immobilized Saccharomyces cerevisiae, Appl. Microbiol. Biotechnol., 97 (2014) 9397–9407.
  14. G. Santi, S. Crognale, A. D’Annibale, M. Petruccioli, M. Ruzzi, R. Valentini, M. Moresi, Orange peel pretreatment in a novel lab-scale direct steam-injection apparatus for ethanol production, Biomass Bioenergy, 61 (2014) 146–156.
  15. N.R. Srinivas, Recent trends in preclinical drug–drug interaction studies of flavonoids—review of case studies, issues and perspectives, Phytother. Res., 29 (2015) 1679–1691.
  16. Z.Q. Zhang, J.J. Xiang, L.M. Zhou, Antioxidant activity of three components of wheat leaves: ferulic acid, flavonoids and ascorbic acid, J. Food Sci. Technol., 52 (2015) 7297–7304.
  17. A.V. Kurkina, Determination of total flavonoids in Siberian Hawthorn fruit, Pharm. Chem. J., 48 (2015) 800–803.
  18. R. Upadhyay, G. Nachiappan, H.N. Mishra, Ultrasoundassisted extraction of flavonoids and phenolic compounds from Ocimum tenuiflorum leaves, Food Sci. Biotechnol., 24 (2015) 1951–1958.
  19. V. Goulas, G.A. Manganaris, Exploring the phytochemical content and the antioxidant potential of citrus fruits grown in Cyprus, Food Chem., 131 (2012) 39–47.
  20. M. Molina-Calle, F. Priego-Capote, M.D. Luque de Castro, Development and application of a quantitative method for determination of flavonoids in orange peel: influence of sample pretreatment on composition, Talanta, 144 (2015) 349–355.
  21. G.Z. Kyzas, D.N. Bikiaris, A.C. Mitropoulos, Chitosan adsorbents for dye removal: a review, Polym. Int., 66 (2017) 1800–1811.
  22. A. Khasri, M.R. Jamir, M.A. Ahmad, Adsorbent from orange peel for Remazol Brilliant dye removal: equilibrium and kinetic studies, AIP Conf. Proc., 2124 (2019) 020055.
  23. Y. Dai, Q. Sun, W. Wang, L. Lu, M. Liu, J. Li, S. Yang, Y. Sun, K. Zhang, J. Xu, W. Zheng, Z. Hu, Y. Yang, Y. Gao, Y. Chen, X. Zhang, F. Gao, Y. Zhang, Utilizations of agricultural waste as adsorbent for the removal of contaminants: a review, Chemosphere, 211 (2018) 235–253.
  24. A.G. Varghese, S.A. Paul, M.S. Latha, Remediation of heavy metals and dyes from wastewater using cellulose‑based adsorbents, Environ. Chem. Lett., 17 (2019) 867–877.
  25. E. Joaquín-Medina, L. Patiño-Saldivar, A.N. Ardila-Arias, M. Salazar-Hernández, J.A. Hernández, Bioadsorption of methyl orange and methylene blue contained in water using as bioadsorbent Natural Brushite (nDCPD), Water Sci. Technol., 12 (2021) 304–347.
  26. S.H. Ranasinghe, A.N. Navaratne, N. Priyantha, Enhancement of adsorption characteristics of Cr(III) and Ni(II) by surface modification of jackfruit peel biosorbent, J. Environ. Chem. Eng., 6 (2018) 5670–5682.
  27. A.L. Arim, G. Guzzo, M.J. Quina, L.M. Gando-Ferreira, Single and binary sorption of Cr(III) and Ni(II) onto modified pine bark, Environ. Sci. Pollut. Res., 28 (2018) 28039–28049.
  28. A. Bhatnagar, M. Sillanpää, A. Witek-Krowiak, Agricultural waste peels as versatile biomass for water purification – a review, Chem. Eng. J., 270 (2015) 240–271.
  29. S.H. Peng, R. Wang, L.Z. Yang, L. He, X. He, X. Liu, Biosorption of copper, zinc, cadmium and chromium ions from aqueous solution by natural foxtail millet shell, Ecotoxicol. Environ. Saf., 165 (2018) 61–69.
  30. H.P. Chao, C.C. Chang, A. Nieva, Biosorption of heavy metals on Citrus maxima peel, passion fruit shell, and sugarcane bagasse in a fixed-bed column, J. Ind. Eng. Chem., 20 (2014) 3408–3414.
  31. M.R. Lasheen, N.S. Ammar, H. Ibrahim, Adsorption/desorption of Cd(II), Cu(II) and Pb(II) using chemically modified orange peel: equilibrium and kinetic studies, Solid State Sci., 14 (2011) 202–210.
  32. N.C. Feng, X.Y. Guo, Characterization of adsorptive capacity and mechanisms on adsorption of copper, lead and zinc by modified orange peel, Trans. Nonferrous Met. Soc. China, 22 (2012) 1224–1231.
  33. A. Chatterjee, S. Schiewer, Biosorption of cadmium(II) ions by citrus peels in a packed bed column: effect of process parameters and comparison of different breakthrough curve models, Clean–Soil Air Water, 39 (2011) 874–881.
  34. S. Elabbas, J.P. Leclerc, L. Mandi, F. Berrekhis, M.N. Pons, N. Ouazzani, Removal of Cr(III) from chrome tanning wastewater by adsorption using two natural carbonaceous materials: eggshell and powdered marble, J. Environ. Manage., 166 (2016) 589–595.
  35. J.V. Flores-Cano, R. Leyva-Ramos, F. Carrasco-Marin, A. Aragón-Piña, J.J. Salazar-Rabago, S. Leyva-Ramos, Adsorption mechanism of chromium(III) from water solution on bone char: effect of operating conditions, Adsorption, 22 (2016) 297–308.
  36. P.A. Kobielska, A.J. Howarth, O.K. Farha, S. Nayak, Metal–organic frameworks for heavy metal removal from water, Coord. Chem. Rev., 358 (2018) 92–107.
  37. D. Dias, N. Lapa, M. Bernardo, W. Ribeiro, I. Matos, I. Fonseca, F. Pinto, Cr(III) removal from synthetic and industrial wastewaters by using cogasification chars of rice waste streams, Bioresour. Technol., 266 (2018) 139–150.
  38. M. Ngabura, S.A. Hussain, W.A. Ghani, M.S. Jami, Y.P. Tan, Utilization of renewable durian peels for biosorption of zinc from wastewater, J. Environ. Chem. Eng., 6 (2018) 2528–2539.
  39. S. Guiza, Biosorption of heavy metal from aqueous waste solution using cellulosic orange peel, Ecol. Eng., 99 (2017) 134–140.
  40. D. Rathee, P. Rathee, S. Rathee, D. Rathee, Phytochemical screening and antimicrobial activity of Picrorrhiza kurroa, an Indian traditional plant used to treat chronic diarrhea, Arabian J. Chem., 9 (2016) S1307–S1313.
  41. S. Kiruba, M. Mahesh, Z.M. Paul, S. Jeeva, Preliminary phytochemical screening of the pericarp of Crataeva magna (Lour.) DC. – a medicinal tree, Asian-Pac. J. Trop. Biomed., 1 (2011) S129–S130.
  42. L. Liu, Y. Sun, T. Laura, X. Liang, Y. Hong, X. Zeng, Determination of polyphenolic content and antioxidant activity of kudingcha made from Ilex kudingcha C.J. Tseng, Food Chem., 112 (2009) 35–41.
  43. J.A. Hernández, F.A. Torres-García, M.M. Salazar-Hernández, R. Herrnández-Soto, Removal of chromium from contaminated liquid effluents using natural brushite obtained from bovine bone, Desal. Water Treat., 95 (2017) 262–273.
  44. R. Sudha, K. Srinivasan, P. Premkumar, Removal of nickel(II) from aqueous solution using Citrus Limettioides peel and seed carbon, Ecotoxicol. Environ. Saf., 117 (2015) 115–123.
  45. Y. Nogata, K. Sakamoto, H. Shiratsuchi, T. Ishii, M. Yano, H. Ohta, Flavonoid composition of fruit tissues of citrus species, Biosci. Biotechnol., Biochem., 70 (2006) 178–192.
  46. V. Lugo-Lugo, C. Barrera-Díaz, F. Ureña-Núñez, B. Bilyeu, I. Linares-Hernández, Biosorption of Cr(III) and Fe(III) in single and binary systems onto pretreated orange peel, J. Environ. Manage., 112 (2012) 120–127.
  47. C. Bertagnolli, M.G.C. da Silva, E. Guibal, Chromium biosorption using the residue of alginate extraction from Sargassum filipendula, Chem. Eng. J., 237 (2014) 362–371.
  48. B.E.L. Muñoz, R.R. Robles, J.L.I. García, M.T.O. Gutiérrez, Adsorption of basic chromium sulfate used in the tannery industries by calcined hydrotalcite, J. Mex. Chem. Soc., 55 (2011) 137–141.
  49. E.J. Kim, S. Park, H.J. Hong, Y.E. Choi, J.W. Yang, Biosorption of chromium (Cr(III)/Cr(VI)) on the residual microalga Nannochloris oculata after lipid extraction for biodiesel production, Bioresour. Technol., 102 (2011) 11155–11160.
  50. J.J. Jacob, R. Varalakshmi, S. Gargi, M.A. Jayasri, K. Suthindhiran, Removal of Cr(III) and Ni(II) from tannery effluent using calcium carbonate coated bacterial magnetosomes, Clean Water, 1 (2018) 1–10.
  51. M.E. Mahmoud, R.H.A. Mohamed, Biosorption and removal of Cr(VI)–Cr(III) from water by eco-friendly gelatin biosorbent, J. Environ. Chem. Eng., 2 (2014) 715–722.
  52. M.E.R. Carmona, M.A.P. da Silva, S.G.F. Leite, O.H.V. Echeverri, C. Ocampo-López, Packed bed redistribution system for Cr(III) and Cr(VI) biosorption by Saccharomyces cerevisiae, J. Taiwan Inst. Chem. Eng., 43 (2012) 428–432.
  53. V.K. Grupta, A. Nayak, Cadmium removal and recovery from prepared aqueous solutions by novel adsorbents from orange peel and Fe2O3 nanoparticles, Chem. Eng. J., 180 (2012) 81–90.
  54. K. Malook, I.U. Haque, Investigation of aqueous Cr(VI) adsorption characteristics of orange peels powder, Prot. Met. Phys. Chem. Surf., 55 (2019) 34–40.
  55. L. Sun, Y. Ma, H. Wang, T. Zhu, Synthesis of florisil materials modified with aliphatic or aromatic groups and the application for pipette‐tip solid‐phase extraction of rutin in orange peel, J. Sep. Sci., 41 (2018) 3716–3723.
  56. K. Pakshirajan, A.N. Worku, M.A. Acheampong, H.J. Lubberding, P.N. Lens, Cr(III) and Cr(VI) removal from aqueous solutions by cheaply available fruit waste and algal biomass, Appl. Biochem. Biotechnol., 170 (2013) 498–513.
  57. G. López-Téllez, C.E. Barrera-Díaz, P. Balderas-Hernández, G. Roa-Morales, B. Bilyeu, Removal of hexavalent chromium in aquatic solutions by iron nanoparticles embedded in orange peel pith, Chem. Eng. J., 173 (2011) 480–485.