References

  1. N.B. Singh, G. Nagpal, S. Agrawal, Rachna, Water purification by using adsorbents: a review, Environ. Technol. Innovation, 11 (2018) 187–240.
  2. T.S. Anirudhan, S.S. Sreekumari, Adsorptive removal of heavy metal ions from industrial effluents using activated carbon derived from waste coconut buttons, J. Environ. Sci., 23 (2011) 1989–1998.
  3. L. Xiong, C. Chen, Q. Chen, J. Ni, Adsorption of Pb(II) and Cd(II) from aqueous solutions using titanate nanotubes prepared via hydrothermal method, J. Hazard. Mater., 189 (2011) 741–748.
  4. R. Karthik, S. Meenakshi, Removal of Pb(II) and Cd(II) ions from aqueous solution using polyaniline grafted chitosan, Chem. Eng. J., 263 (2015) 168–177.
  5. Z. Khademi, B. Ramavandi, M.T. Ghaneian, The behaviors and characteristics of a mesoporous activated carbon prepared from Tamarix hispida for Zn(II) adsorption from wastewater, J. Environ. Chem. Eng., 3 (2015) 2057–2067.
  6. A. Rahbar, S. Farjadfard, M. Leili, R. Kafaei, V. Haghshenas, B. Ramavandi, Experimental data of biomaterial derived from Malva sylvestris and charcoal tablet powder for Hg2+ removal from aqueous solutions, Data Brief, 8 (2016) 132–135.
  7. N. Kataria, V.K. Garg, Green synthesis of Fe3O4 nanoparticles loaded sawdust carbon for cadmium(II) removal from water: regeneration and mechanism, Chemosphere, 208 (2018) 818–828.
  8. A. Bhatnagar, M. Sillanpää, Removal of natural organic matter (NOM) and its constituents from water by adsorption – a review, Chemosphere, 166 (2017) 497–510.
  9. E. Borai, M. Attallah, R. Koivula, A. Paajanen, R. Harjula, Separation of europium from cobalt using antimony silicates in sulfate acidic media, Miner. Process. Extr. Metall. Rev., 33 (2012) 204–219.
  10. G. Gentscheva, P. Vassileva, P. Tzvetkova, L. Lakov, O. Peshev, E. Ivanova, Activated carbon sorbent with thioetheric sitespreparation and characterization, J. Porous Mater., 15 (2008) 331–334.
  11. B.H. Hameed, A.L. Ahmad, K.N.A. Latiff, Adsorption of basic dye (methylene blue) onto activated carbon prepared from rattan sawdust, Dyes Pigm., 75 (2007) 143–149.
  12. C. Caramalău, L. Bulgariu, M. Macoveanu, Cobalt(II) removal from aqueous solutions by adsorption on modified peat moss, Chem. Bull. “POLITEHNICA” Univ. (Timişoara), 54 (2009) 13–17.
  13. M. He, Y. Zhu, Y. Yang, B. Han, Y. Zhang, Adsorption of cobalt(II) ions from aqueous solutions by palygorskite, Appl. Clay Sci., 54 (2011) 292–296.
  14. M.N.M. Ibrahim, W.S.W. Ngah, M.S. Norliyana, W.R. Wan Daud, M. Rafatullah, O. Sulaiman, R. Hashim, A novel agricultural waste adsorbent for the removal of lead(II) ions from aqueous solutions, J. Hazard. Mater., 182 (2010) 377–385.
  15. S. Dowlatshahi, A.R.H. Torbati, M. Loloei, Adsorption of copper, lead and cadmium from aqueous solutions by activated carbon prepared from saffron leaves, Environ. Health Eng. Manage. J., 1 (2014) 37–44.
  16. T. Bohli, A. Ouederni, N. Fiol, I. Villaescusa, Uptake of Cd2+ and Ni2+ metal ions from aqueous solutions by activated carbons derived from waste olive stones, Int. J. Chem. Eng. Appl., 3 (2012) 232–236.
  17. A. Almasi, M. Omidi, M. Khodadadian, R. Khamutian, M.B. Gholivand, Lead(II) and cadmium(II) removal from aqueous solution using processed walnut shell: kinetic and equilibrium study, Toxicol. Environ. Chem., 94 (2012) 660–671.
  18. B.G.N. Sewwandi, M. Vithanage, S.S.R.M.D.H.R. Wijesekara, M.I.M. Mowjood, S. Hamamoto, K. Kawamoto, Adsorption of Cd(II) and Pb(II) onto humic acid-treated coconut (Cocos nucifera) husk, J. Hazard. Toxic Radioact. Waste, 18 (2014) 1–10.
  19. Z. Zhou, Z. Xu, Q. Feng, D. Yao, J. Yu, D. Wang, S. Lv, Y. Liu, N. Zhou, M.-E. Zhong, Effect of pyrolysis condition on the adsorption mechanism of lead, cadmium and copper on tobacco stem biochar, J. Cleaner Prod., 187 (2018) 996–1005.
  20. B.G. Alhogbi, Potential of coffee husk biomass waste for the adsorption of Pb(II) ion from aqueous solutions, Sustainable Chem. Pharm., 6 (2017) 21–25.
  21. S.H. Siddiqui, R. Ahmad, Pistachio Shell Carbon (PSC) – an agricultural adsorbent for the removal of Pb(II) from aqueous solution, Groundwater Sustainable Dev., 4 (2016) 42–48.
  22. H. Peng, P. Gao, G. Chu, B. Pan, J. Peng, B. Xing, Enhanced adsorption of Cu(II) and Cd(II) by phosphoric acid-modified biochars, Environ. Pollut., 229 (2017) 846–853.
  23. A. Abdolali, W.S. Guo, H.H. Ngo, S.S. Chen, N.C. Nguyen, K.L. Tung, Typical lignocellulosic wastes and by-products for biosorption process in water and wastewater treatment: a critical review, Bioresour. Technol., 160 (2014) 57–66.
  24. M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, Removal of cadmium(II) from aqueous solutions by adsorption using meranti wood, Wood Sci. Technol., 46 (2012) 221–241.
  25. R. Ouafi, Z. Rais, M. Taleb, M. Benabbou, M. Asri, Chapter 4 – Sawdust in the Treatment of Heavy Metals-Contaminated Wastewater, E. Stefan, K. Olaf, Eds., Sawdust: Properties, Potential Uses and Hazards, Nova Science Publishers, New York, NY, USA, 2017, pp. 145–182.
  26. H.A. Alalwan, M.A. Kadhom, A.H. Alminshid, Removal of heavy metals from wastewater using agricultural byproducts, J. Water Supply Res. Technol. AQUA, 69 (2020) 99–112.
  27. 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.
  28. M. Kiliç, E. Apaydin-Varol, A.E. Pütün, Preparation and surface characterization of activated carbons from Euphorbia rigida by chemical activation with ZnCl2, K2CO3, NaOH and H3PO4, Appl. Surf. Sci., 261 (2012) 247–254.
  29. P. Nowicki, P. Skibiszewska, R. Pietrzak, Hydrogen sulphide removal on carbonaceous adsorbents prepared from coffee industry waste materials, Chem. Eng. J., 248 (2014) 208-215.
  30. K.S.K. Reddy, A. Al Shoaibi, C. Srinivasakannan, A comparison of microstructure and adsorption characteristics of activated carbons by CO2 and H3PO4 activation from date palm pits, New Carbon Mater., 27 (2012) 344–351.
  31. J.S. Cha, S.H. Park, S.-C. Jung, C. Ryu, J.-K. Jeon, M.-C. Shin, Y.-K. Park, Production and utilization of biochar: a review, J. Ind. Eng. Chem., 40 (2016) 1–15.
  32. S. Manocha, F. Ponchon, Management of lime in steel, Metals, 8 (2018) 686–701.
  33. J.M. Valverde, P.E. Sanchez-Jimenez, L.A. Perez-Maqueda, Limestone calcination nearby equilibrium: kinetics, CaO crystal structure, sintering and reactivity, J. Phys. Chem. C, 119 (2015) 1623–1641.
  34. J. Kanagaraj, T. Senthilvelan, R.C. Panda, S. Kavitha, Ecofriendly waste management strategies for greener environment towards sustainable development in leather industry: a comprehensive review, J. Cleaner Prod., 89 (2015) 1–17.
  35. S. Chaudhary, J. Iqbal, M. Hussain, Effectiveness of different fungicides and antibiotics against bacterial leaf blight in rice, J. Agric. Res., 50 (2012)109–117.
  36. T. Olinic, E. Olinic, The effect of quicklime stabilization on soil properties, Agric. Agric. Sci. Procedia, 10 (2016) 444–451.
  37. A.A. El-gray, F.B.M. Ahmed, Determination of major oxides percentages in portland cement of some sudanese cement manufactories, Am. J. Appl. Chem., 4 (2016) 14–17.
  38. C. Wang, L. Chen, L. Jia, Y. Tan, Simultaneous calcination and sulfation of limestone in CFBB, Appl. Energy, 155 (2015) 478–484.
  39. B. Xu, L. Peng, G. Wang, G. Cao, F. Wu, Easy synthesis of mesoporous carbon using nano-CaCO3 as template, Carbon, 48 (2010) 2377–2380.
  40. L. Kong, M. Su, Y. Peng, L. Hou, J. Liu, H. Li, Z. Diao, K. Shih, Y. Xiong, D. Chen, Producing sawdust derived activated carbon by co-calcinations with limestone for enhanced Acid Orange II adsorption, J. Cleaner Prod., 168 (2019) 22–29.
  41. F. Zhao, E. Repo, Y. Song, D. Yin, S.B. Hammouda, L. Chen, S. Kalliola, J. Tang, K.C. Tam, M Sillanpää, Polyethyleniminecross-linked cellulose nanocrystals for highly efficient recovery of rare earth elements from water and a mechanism study, Green Chem., 19 (2017) 4816–4828.
  42. W. Gan, L. Gao, X. Zhan, J. Li, Preparation of thiol-functionalized magnetic sawdust composites as an adsorbent to remove heavy metal ions, RSC Adv., 6 (2016) 37600–37609.
  43. M. Can, E. Bulut, M. Özacar, Synthesis and characterization of gallic acid resin and its interaction with palladium(II), rhodium(III) chloro complexes, Ind. Eng. Chem. Res., 51 (2012) 6052–6063.
  44. C.S.T. Araújo, I.L.S. Almeida, H.C. Rezende, S.M.L.O. Marcionilio, J.J.L. Léon, T.N. de Matos, Elucidation of mechanism involved in adsorption of Pb(II) onto lobeira fruit (Solanum lycocarpum) using Langmuir, Freundlich and Temkin isotherms, Microchem. J., 137 (2018) 348–354.
  45. M. Moyo, L. Chikazaza, B.C. Nyamunda, U. Guyo, Adsorption batch studies on the removal of Pb(II) using maize tassel based activated carbon, J. Chem., 2013 (2013) 1–8.
  46. U. Garg, M.P. Kaur, G.K. Jawa, G. Sud, V.K. Garg, Removal of cadmium(II) from aqueous solutions by adsorption on agricultural waste biomass, J. Hazard. Mater., 154 (2008) 1149–1157.
  47. T.M. Alslaibi, I. Abustan, A. Ahmad, A. Abu Foul, Comparison of activated carbon prepared from olive stones by microwave and conventional heating for iron(II), lead(II), and copper(II) removal from synthetic wastewater, Environ. Prog. Sustainable Energy, 33 (2013) 1074–1085.
  48. D.M. Agudelo-Castañeda, E.C. Teixeira, I.L. Schneider, S.B.A. Rolim, N. Balzaretti, G.S.E. Silva, Comparison of emissivity, transmittance, and reflectance infrared spectra of polycyclic aromatic hydrocarbons with those of atmospheric particulates (PM1), Aerosol Air Qual. Res., 15 (2015) 1627–1639.
  49. M.H.M.A. Kamal, W.M.K.W.K. Azira, M. Kasmawati, Z. Haslizaidi, W.N.W. Saime, Sequestration of toxic Pb(II) ions by chemically treated rubber (Hevea brasiliensis) leaf powder, J. Environ. Sci., 22 (2010) 248–256.
  50. E. Asuquo, A. Martin, P. Nzerem, Adsorption of Cd(II) and Pb(II) ions from aqueous solutions using mesoporous activated carbon adsorbent: equilibrium, kinetics and characterisation studies, J. Environ. Chem. Eng., 5 (2017) 679–698.
  51. P. Chand, Y.P. Pakade, Removal of Pb from water by adsorption on apple pomace: equilibrium, kinetics, and thermodynamics studies, J. Chem., 2013 (2013) 164575, doi: 10.1155/2013/164575.
  52. C. Paduraru, L. Tofan, C. Teodosiu, Biosorption of zinc(II) on rapeseed waste: equilibrium studies and thermogravimetric investigations, Process Saf. Environ. Prot., 94 (2015) 18–28.
  53. M. Thirumavalavan, Y.L. Lai, J.F. Lee, Fourier transform infrared spectroscopic analysis of fruit peels before and after the adsorption of heavy metal ions from aqueous solution, J. Chem. Eng. Data, 56 (2011) 2249–2255.
  54. A.M. Georgescu, F. Nardou, V. Zichil, I.D. Nistor, Adsorption of lead(II) ions from aqueous solutions onto Cr-pillared clays, Appl. Clay Sci., 152 (2018) 44–50.
  55. B. Huang, Z. Li, J. Huang, L. Guo, X. Nie, Y. Wang, Y. Zhang, G. Zeng, Adsorption characteristics of Cu and Zn onto various size fractions of aggregates from red paddy soil, J. Hazard. Mater., 264 (2014) 176–183.
  56. X.Yang, G. Xu, H. Yu, Removal of lead from aqueous solutions by ferric activated sludge-based adsorbent derived from biological sludge, Arabian J. Chem., 12 (2019) 4142–4149.
  57. H.S. Hassan, M.F. Attallah, S.M. Yakout, Sorption characteristics of an economical sorbent material used for removal radioisotopes of cesium and europium, J. Radioanal. Nucl. Chem., 286 (2010) 17–26.
  58. M. Ghasemi, M. Naushad, N. Ghasemi, Y. Khosravi-fard, Adsorption of Pb(II) from aqueous solution using new adsorbents prepared from agricultural waste: adsorption isotherm and kinetic studies, J. Ind. Eng. Chem., 20 (2014) 2193–2199.
  59. M.A. Badawi, N.A. Negm, M.T.H. Abou Kana, Adsorption of aluminum and lead from wastewater by chitosan-tannic acid modified biopolymers: isotherms, kinetics, thermodynamics and process mechanism, Int. J. Biol. Macromol., 99 (2017) 465–476.
  60. P.C. Okafor, P.U. Okon, E.F. Daniel, E.E. Ebenso, Adsorption capacity of coconut (Cocos nucifera L.) shell for lead, copper, cadmium and arsenic from aqueous solutions, Int. J. Electrochem. Sci., 7 (2012) 12354–12369.
  61. E.H. Borai, M.F. Attallah, A.H. Elgazzar, A.S. El-Tabl, Isotherm and kinetic sorption of some lanthanides and iron from aqueous solution by aluminum silicotitante exchanger, Part. Sci. Technol., 37 (2019) 410–422.
  62. H.E. Rizk, M.F. Attallah, A.M.I. Ali, Investigations on sorption performance of some radionuclides, heavy metals and lanthanides using mesoporous adsorbent material, J. Radioanal. Nucl. Chem., 314 (2017) 2475–2487.
  63. M.F. Attallah, A.I. Abd-Elhamid, I.M. Ahmed, H.F. Aly, Possible use of synthesized nano silica functionalized by Prussian blue as sorbent for removal of certain radionuclides from liquid radioactive waste, J. Mol. Liq., 261 (2018) 379–386.
  64. D.M. Imam, S.I. Moussa, M.F. Attallah, Sorption behavior of some radionuclides using prepared adsorbent of hydroxyapatite from biomass waste material, J. Radioanal. Nucl. Chem., 319 (2019) 997–1012.
  65. M.F. Attallah, H.S. Hassan, M.A. Youssef, Synthesis and sorption potential study of Al2O3-ZrO2-CeO2 composite material for removal of some radionuclides from radioactive waste effluent, Appl. Radiat. Isot., 147 (2019) 40–47.
  66. Y-S. Ho, G. McKay, The kinetics of sorption of divalent metal ions onto sphagnum moss peat, Water Res., 34 (2000) 735–742.
  67. J. Yu, R. Chi, Y. Zhang, Z. Xu, C. Xiao, J. Guo, A situ co-precipitation method to prepare magnetic PMDA modified sugarcane bagasse and its application for competitive adsorption of methylene blue and basic magenta, Bioresour. Technol., 110 (2012) 160–166.
  68. R. Najam, S.M.A. Andrabi, Adsorption capability of sawdust of Populus alba for Pb(II), Zn(II) and Cd(II) ions from aqueous solution, Desal. Water Treat., 57 (2016) 29019–29035.
  69. K. Vijayaraghavan, H.Y.N. Winnie, R. Balasubramanian, Biosorption characteristics of crab shell particles for the removal of manganese(II) and zinc(II) from aqueous solutions, Desalination, 266 (2011) 195–200.
  70. A. Ahmad, A. Khatoon, S.-H. Mohd-Setapar, R. Kumarb, M. Rafatullah, Chemically oxidized pineapple fruit peel for the biosorption of heavy metals from aqueous solutions, Desal. Water Treat., 57 (2016) 6432–6442.
  71. A. Kardam, K.R. Raj, S. Srivastava, M.M. Srivastava, Nanocellulose fibers for biosorption of cadmium, nickel, and lead ions from aqueous solution, Clean Technol. Environ. Policy, 16 (2014) 385–393.
  72. N.U. Udeh, J.C. Agunwamba, Equilibrium and kinetics adsorption of cadmium and lead ions from aqueous solution using bamboo based activated carbon, Int. J. Eng. Sci., 6 (2017) 17–26.
  73. I. Abdelfattah, F. El Sayed, A. Almedolab, Removal of heavy metals from wastewater using corn cob, Res. J. Pharm. Biol. Chem. Sci., 7 (2016) 239–248.
  74. R. Karthik, S. Meenakshi, Chemical modification of chitin with polypyrrole for the uptake of Pb(II) and Cd(II) ions, Int. J. Biol. Macromol., 78 (2015) 157–164.
  75. S. Pap, J. Radonić, S. Trifunović, D. Adamović, I. Mihajlović, M.V. Miloradov, M.T. Sekulić, Evaluation of the adsorption potential of eco-friendly activated carbon prepared from cherry kernels for the removal of Pb2+, Cd2+ and Ni2+ from aqueous wastes, J. Environ. Manage., 184 (2016) 297–306.
  76. D. Imessaoudene, N. Bensacia, F. Chenoufi, Removal of cobalt(II) from aqueous solution by spent green tealeaves, J. Radioanal. Nucl. Chem., 324 (2020) 1245–1253.