References

  1. İ. İnci, Ş.S. Bayazit, Y.S. Aşçi, Solid–liquid equilibrium of glycolic acid with alumina, Desal. Water Treat., 56 (2015) 3122–3127.
  2. Ö. Özcan, İ. İnci, Y.S. Aşçı, Ş.S. Bayazit, Oxalic acid removal from wastewater using multi-walled carbon nanotubes: kinetic and equilibrium analysis, J. Dispersion Sci. Technol., 38 (2017) 65–69.
  3. M.E. Marti, Recovery of formic acid by reactive extraction using an environmentally-friendly solvent, Selçuk Univ. J. Eng. Sci. Technol., 5 (2017) 26–37.
  4. S.O. Adio, M.H. Omar, M. Asif, T.A. Saleh, Arsenic and selenium removal from water using biosynthesized nanoscale zerovalent iron: a factorial design analysis, Process Saf. Environ., 107 (2017) 518–527.
  5. A.A. Basaleh, M.H. Al-Malack, T.A. Saleh, Methylene blue removal using polyamide-vermiculite nanocomposites: kinetics, equilibrium and thermodynamic study, J. Environ. Chem. Eng., 7 (2019) 103107.
  6. T.A. Saleh, I. Ali, Synthesis of polyamide grafted carbon microspheres for removal of rhodamine B dye and heavy metals, J. Environ. Chem. Eng., 6 (2018) 5361–5368.
  7. H. Cheung, R.S. Tanke, G.P. Torrence, Acetic Acid, Ullmann’s Encyclopedia of Industrial Chemistry, Berlin, 2011.
  8. H. Zeidan, Selective Recovery of Levulinic, Acetic and Formic Acids from Multi Acid Aqueous Solutions by Reactive Extraction, Ph.D. Thesis, Selcuk University, Konya, Turkey, 2019.
  9. M.E. Marti, Solvent modification effect on the physical and chemical extraction of acetic acid, Sep. Sci. Technol., 51 (2016) 1806–1816.
  10. W. Reutemann, H. Kieczka, Formic Acid, Ullmann’s Encyclopedia of Industrial Chemistry, Berlin, 2011.
  11. T. Brouwer, M. Blahusiak, K. Babic, B. Schuur, Reactive extraction and recovery of levulinic acid, formic acid and furfural from aqueous solutions containing sulphuric acid, Sep. Purif. Technol., 185 (2017) 186–195.
  12. H. Zeidan, M.E. Marti, Separation of formic acid from aqueous solutions onto anion exchange resins: equilibrium, kinetic, and thermodynamic data, J. Chem. Eng. Data, 64 (2019) 2718–2727.
  13. C.B. Rasrendra, B. Girisuta, H.H. van de Bovenkamp, J.G.M. Winkelman, E.J. Leijenhorst, R.H. Venderbosch, M. Windt, D. Meier, H.J. Heeres, Recovery of acetic acid from an aqueous pyrolysis oil phase by reactive extraction using trin-octylamine, Chem. Eng. J., 176–177 (2011) 244–252.
  14. X.Q. Lin, L. Xiong, C. Huang, X.Y. Yang, H.J. Guo, X.F. Chen, X.D. Chen, Sorption behavior and mechanism investigation of formic acid removal by sorption using an anion-exchange resin, Desal. Water Treat., 57 (2016) 366–381.
  15. D. Painer, S. Lux, M. Siebenhofer, Recovery of formic acid and acetic acid from waste water using reactive distillation, Sep. Sci. Technol., 50 (2015) 2930–2936.
  16. C. López-Garzón, A.J.J. Straathof, Recovery of carboxylic acids produced by fermentation, Biotechnol. Adv., 32 (2014) 873–904.
  17. S.-T. Yang, H.J. Huang, A. Tay, W. Qin, L. De Guzman, E.C. San Nicolas, Chapter 16 – Extractive Fermentation for the Production of Carboxylic Acids, S.-T. Yang, Ed., Bioprocessing for Value-Added Products from Renewable Resources: New Technologies and Applications, Elsevier, Dublin, OH, 2007, pp. 421−446.
  18. D. Datta, S. Kumar, H. Uslu, Status of the reactive extraction as a method of separation, J. Chem., (2015) 1–16, https://doi. org/10.1155/2015/853789.
  19. A.A. Garcia, C.J. King, The use of basic polymer sorbents for the recovery of acetic acid from dilute aqueous solution, Ind. Eng. Chem. Res., 28 (1989) 204–212.
  20. H. Uslu, Adsorption equilibria of formic acid by weakly basic adsorbent Amberlite IRA-67: equilibrium, kinetics, thermodynamic, Chem. Eng. J., 155 (2009) 320–325.
  21. H.A. Asmaly, Ihsanullah, B. Abussaud, T.A. Saleh, T. Laoui, V.K. Gupta, M.A. Atieh, Adsorption of phenol on aluminum oxide impregnated fly ash, Desal. Water Treat., 57 (2016) 6801–6808.
  22. R. Rajamma, R.J. Ball, L.A.C. Tarelho, G.C. Allen, J.A. Labrincha, V.M. Ferreira, Characterization and use of biomass fly ash in cement-based materials, J. Hazard. Mater., 172 (2009) 1049–1060.
  23. Y. Wen, Z.R. Tang, Y. Chen, Y.X. Gu, Adsorption of Cr(VI) from aqueous solutions using chitosan-coated fly ash composite as biosorbent, Chem. Eng. J., 175 (2012) 110–116.
  24. O.S. Fatoki, O.S. Ayanda, F.A. Adekola, B.J. Ximba, Sorption of triphenyltin chloride to nFe3O4, fly ash, and nFe3O4/fly ash composite material in seawater, Clean – Soil Air Water, 42 (2014) 472–479.
  25. K.K. Panday, G. Prasad, V.N. Singh, Copper(II) removal from aqueous solutions by fly ash, Water Res., 19 (1985) 869–873.
  26. A. Akgerman, M. Zardkoohi, Adsorption of phenolic compounds on fly ash, J. Chem. Eng. Data, 41 (1996) 185–187.
  27. N. Öztürk, D. Kavak, Adsorption of boron from aqueous solutions using fly ash: batch and column studies, J. Hazard. Mater., 127 (2005) 81–88.
  28. I.J. Alinnor, Adsorption of heavy metal ions from aqueous solution by fly ash, Fuel, 86 (2007) 853–857.
  29. N. Kannan, A. Xavier, New composite mixed adsorbents for the removal of acetic acid by adsorption from aqueous solutions – a comparative study, Toxicol. Environ. Chem., 79 (2001) 95–107.
  30. S.C. Nawle, S.V. Patil, Experimental studies on acetic acid removal from waste water using fly ash, Nirma Univ. Int. Conf. Curr. Trends Technol. Proc. Chem., 26 (2011) 1–4.
  31. A.B. Soni, A. Keshav, V. Verma, S. Suresh, Removal of glycolic acid from aqueous solution using bagasse flyash, Int. J. Environ. Res., 6 (2012) 297–308.
  32. R. Scherer, A.C.P. Rybka, C.A. Ballus, A.D. Meinhart, J.T. Filho, H.T. Godoy, Validation of a HPLC method for simultaneous determination of main organic acids in fruits and juices, Food Chem., 135 (2012) 150–154.
  33. I.A.W. Tan, A.L. Ahmad, B.H. Hameed, Adsorption of basic dye on high-surface-area activated carbon prepared from coconut husk: equilibrium, kinetic and thermodynamic studies, J. Hazard. Mater., 154 (2008) 337–346.
  34. M. Pirsaheb, Z. Rezai, A.M. Mansouri, A. Rastegar, A. Alahabadi, A.R. Sani, K. Sharafi, Preparation of the activated carbon from India shrub wood and their application for methylene blue removal: modeling and optimization, Desal. Water Treat., 57 (2015) 5888–5902.
  35. I. Langmuir, The constitution and fundamental properties of solids and liquids. Part I. Solids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
  36. R.P. Han, P. Han, Z.H. Cai, Z.H. Zhao, M.S. Tang, Kinetics and isotherms of neutral red adsorption on peanut husk, J. Environ. Sci., 20 (2008) 1035–1041.
  37. H.M.F. Freundlich, Über die adsorption in losungen (Adsorption in solution), Z. Phys. Chem., 57 (1906) 385–490.
  38. M. Temkin, V. Pyzhev, Kinetics of ammonia synthesis on promoted iron catalysts, Acta Phys., 12 (1940) 217–222.
  39. B. Acemioğlu, Adsorption of Congo red from aqueous solution onto calcium-rich fly ash, J. Colloid Interface Sci., 274 (2004) 371–379.
  40. Saakshy, K. Singh, A.B. Gupta, A.K. Sharma, Fly ash as low cost adsorbent for treatment of effluent of handmade paper industry-kinetic and modelling studies for direct black dye, J. Cleaner Prod., 112 (2016) 1227–1240.
  41. R.N. Oliveira, M.C. Mancini, F.C.S. de Oliveira, T.M. Passos, B. Quilty, R.M. da Silva Moreira Thiré, G.B. McGuinness, FTIR analysis and quantification of phenols and flavonoids of five commercially available plants extracts used in wound healing, Rev. Mater., 21 (2016) 767–779.
  42. B. Shokri, M.A. Firouzjah, S.I. Hosseini, FTIR Analysis of Silicon Dioxide Thin Film Deposited by Metal Organic-Based PECVD, Proceedings of 19th International Symposium on Plasma Chemistry Society, Bochum, Germany, 2009.
  43. S.H. Chen, J. Zhang, C.L. Zhang, Q.Y. Yue, Y. Li, C. Li, Equilibrium and kinetic studies of methyl orange and methyl violet adsorption on activated carbon derived from Phragmites australis, Desalination, 252 (2010) 149–156.
  44. T.A. Saleh, M. Tuzen, A. Sarı, Polyamide magnetic palygorskite for the simultaneous removal of Hg(II) and methyl mercury; with factorial design analysis, J. Environ. Manage., 211 (2018) 323–333.
  45. D.P. Xu, C.J. Gu, X. Chen, Adsorption and removal of Acid Red 3R from aqueous solution using flocculent humic acid isolated from lignite, Procedia Environ. Sci., 18 (2013) 127–134.
  46. M.J.D. Low, Kinetics of chemisorption of gases on solids, Chem. Rev., 60 (1960) 267–312.
  47. S.Y. Elovich, O.G. Larinov, Theory of adsorption from solutions of non-electrolytes on solid (I) equation adsorption from solutions and the analysis of its simplest form, (II) verification of the equation of adsorption isotherm from solutions, Izvestiya Akademii Nauk. SSSR, Otdelenie Khimicheskikh Nauk, 2 (1962) 209–216.
  48. Q. Li, J.M. Xing, W.L. Li, Q.F. Liu, Z.G. Su, Separation of succinic acid from fermentation broth using weak alkaline anion exchange adsorbents, Ind. Eng. Chem. Res., 48 (2009) 3595–3599.
  49. S.Y. Lagergren, Zur theorie Der Sogenannten adsorption geloster stoffe, Kungliga Svenska Vetenskapsakademiens, 24 (1898) 1–39.
  50. Y.S. Ho, G. Mckay, Pseudo-second-order model for sorption processes, Process Biochem., 34 (1999) 451–465.
  51. C.W. Cheung, J.F. Porter, G. McKay, Elovich equation and modified second-order equation for sorption of cadmium ions onto bone char, J. Chem. Technol. Biotechnol., 75 (2000) 963–970.
  52. H. Qiu, L. Lv, B.-c. Pan, Q.-j. Zhang, W.-m. Zhang, Q.-x. Zhang, Critical review in adsorption kinetic models, J. Zhejiang Univ. – Sci. A, 10 (2009) 716–724.
  53. D. Kavitha, C. Namasivayam, Experimental and kinetic studies on methylene blue adsorption by coir pith carbon, Bioresour. Technol., 98 (2007) 14–21.
  54. E. Demirbaş, M.Z. Nas, Batch kinetic and equilibrium studies of adsorption of Reactive Blue 21 by fly ash and sepiolite, Desalination, 243 (2009) 8–21.
  55. A. Khaled, A. El Nemr, A. El-Sikaily, O. Abdelwahab, Treatment of artificial textile dye effluent containing Direct Yellow 12 by orange peel carbon, Desalination, 238 (2009) 210–232.
  56. I.D. Mall, V.C. Srivastava, N.K. Agarwal, Removal of Orange-G and Methyl Violet dyes by adsorption onto bagasse fly ash— kinetic study and equilibrium isotherm analyses, Dyes Pigm., 69 (2006) 210–223.
  57. H.M. Anasthas, V.G. Gaikar, Adsorption of acetic acid on ionexchange resins in non-aqueous conditions. React. Funct. Polym., 47 (2001) 23–35.
  58. H.S. Lv, Y.P. Sun, M.H. Zhang, Z.F. Geng, M.M. Ren, Removal of acetic acid from fuel ethanol using ion-exchange resin, Energy Fuels, 26 (2012) 7299–7307.
  59. B.-J. Liu, Z.-J. Hu, Q.-L. Ren, Single-component and competitive adsorption of levulinic/formic acids on basic polymeric adsorbents, Colloids Surf., A, 339 (2009) 185–191.
  60. O. Gamba, H. Noei, J. Pavelec, R. Bliem, M. Schmid, U. Diebold, A. Stierle, G.S. Parkinson, Adsorption of formic acid on the Fe3O4(001) surface, J. Phys. Chem. C, 119 (2015) 20459–20465.
  61. F.C. Calaza, T.-L. Chen, D.R. Mullins, Y. Xu, S.H. Overbury, Reactivity and reaction intermediates for acetic acid adsorbed on CeO2(1 1 1), Catal. Today, 253 (2015) 65–76.
  62. H.H. Zhang, X.Y. Lan, P. Bai, X.H. Guo, Adsorptive removal of acetic acid from water with metal-organic frameworks, Chem. Eng. Res. Des., 111 (2016) 127–137.
  63. T.A. Saleh, Naeemullah, M. Tuzen, A. Sarı, Polyethylenimine modified activated carbon as novel magnetic adsorbent for the removal of uranium from aqueous solution, Chem. Eng. Res. Des., 117 (2017) 218–227.
  64. W. Zhao, S.J. Carey, S.E. Morgan, C.T. Campbell, Energetics of adsorbed formate and formic acid on Ni(111) by calorimetry, J. Catal., 352 (2017) 300–304.
  65. G. Annadurai, L.Y. Ling, J.-F. Lee, Adsorption of reactive dye from an aqueous solution by chitosan: isotherm, kinetic and thermodynamic analysis, J. Hazard. Mater., 152 (2008) 337–346.
  66. Z. Bekçi, Y. Seki, L. Cavas, Removal of malachite green by using an invasive marine alga Caulerpa racemosa var. cylindracea, J. Hazard. Mater., 161 (2009) 1454–1460.
  67. I. Iraola-Arregui, H. Potgieter, C.M. Liauw, Evaluation of coupling agents in poly(propylene)/fly ash composites: effect on processing and mechanical properties, Macromol. Mater. Eng., 296 (2011) 810–819.