References

  1. C. Chang, L. Zhang, Cellulose-based hydrogels: Present status and application prospects, Carbohyd. Polym., 84 (2011) 40–53.
  2. B. Raphael, T. Khalil, V.L. Workman, A. Smith, C.P. Brown, C. Streuli, A. Saiani, M. Domingos, 3D cell bioprinting of self-assembling peptide-based hydrogels, Mater. Lett., 190 (2017) 103–106.
  3. Q. Wang, S. Chen, D. Chen, Preparation and characterization of chitosan based injectable hydrogels enhanced by chitin, J. Mech. Behav. Biomed. Mater., 65 (2017) 466–477.
  4. G. Sharma, B. Thakur, M. Naushad, A. Kumar, Applications of nanocomposite hydrogels for biomedical engineering and environmental protection, Environ. Chem. Lett., (2017) 1–34.
  5. M. Rizwan, G.S.L. Peh, H. Ang, N. Chan, K. Adnan, J.S. Mehta, W. Siew, E.K.F. Yim, Biomaterials Sequentially-crosslinked bioactive hydrogels as nano-patterned substrates with customizable stiffness and degradation for corneal tissue engineering applications, Biomaterials, 120 (2017) 139–154.
  6. S. Belali, A. Reza, M. Hadizadeh, Novel nanostructured smart, photodynamic hydrogels based on poly (N -isopropylacrylamide) bearing porphyrin units in their crosslink chains: A potential sensitizer system in cancer therapy, Polymer, 109 (2017) 93–105.
  7. M. Rezakazemi, A. Vatani, T. Mohammadi, Synthesis and gas transport properties of crosslinked poly(dimethylsiloxane) nanocomposite membranes using octatrimethylsiloxy POSS nanoparticles, J. Nat. Gas Sci. Eng., 30 (2016) 10–18.
  8. M. Rezakazemi, S. Shirazian, S.N. Ashrafizadeh, Simulation of ammonia removal from industrial wastewater streams by means of a hollow-fiber membrane contactor, Desalination, 285 (2012) 383–392.
  9. M. Rezakazemi, M. Sadrzadeh, T. Mohammadi, T. Matsuura, Methods for the preparation of organic-inorganic nanocomposite polymer electrolyte membranes for fuel cells, 2017. doi:10.1007/978-3-319-52739-0_11.
  10. M. Rezakazemi, M. Iravaninia, S. Shirazian, T. Mohammadi, Transient computational fluid dynamics modeling of pervaporation separation of aromatic/aliphatic hydrocarbon mixtures using polymer composite membrane, Polym. Eng. Sci., 53 (2013) 1494–1501.
  11. M. Rezakazemi, A. Dashti, M. Asghari, S. Shirazian, H2-selective mixed matrix membranes modeling using ANFIS, PSO-ANFIS, GA-ANFIS, Int. J. Hydrogen Energy, 42 (2017) 15211–15225.
  12. M. Rezakazemi, A. Ebadi Amooghin, M.M. Montazer-Rahmati, A.F. Ismail, T. Matsuura, State-of-the-art membrane based CO2 separation using mixed matrix membranes (MMMs): An overview on current status and future directions, Progress Polym. Sci., 39 (2014) 817–861.
  13. E. Soroush, S. Shahsavari, M. Mesbah, M. Rezakazemi, Z. Zhang, A robust predictive tool for estimating CO2 solubility in potassium based amino acid salt solutions, Chinese J. Chem. Eng. (2017). doi:10.1016/j.cjche.2017.10.002.
  14. G. Sharma, M. Naushad, A. Kumar, S. Sharma, A. Bhatnagar, F.J. Stadler, Efficient removal of coomassie brilliant blue R-250 dye using starch/poly(alginic acid-cl-acrylamide) nanohydrogel, Process Safety Environ. Protect., 109 (2017) 301–310.
  15. S. Shirazian, M. Rezakazemi, A. Marjani, S. Moradi, Hydrodynamics and mass transfer simulation of wastewater treatment in membrane reactors, Desalination, 286 (2012) 290–295.
  16. S. Shirazian, A. Marjani, M. Rezakazemi, Separation of CO2 by single and mixed aqueous amine solvents in membrane contactors: Fluid flow and mass transfer modeling, Eng. Comp., 28 (2012) 189–198.
  17. M. Rezakazemi, A. Ghafarinazari, S. Shirazian, A. Khoshsima, Numerical modeling and optimization of wastewater treatment using porous polymeric membranes, Polym. Eng. Sci., 53 (2013) 1272–1278.
  18. M. Rezakazemi, A. Marjani, S. Shirazian, Development of a group contribution method based on UNIFAC groups for the estimation of vapor pressures of pure hydrocarbon compounds, Chem. Eng. Technol., 36 (2013) 483–491.
  19. M. Rostamizadeh, M. Rezakazemi, K. Shahidi, T. Mohammadi, Gas permeation through H2-selective mixed matrix membranes: Experimental and neural network modeling, Int. J. Hydrogen Energy, 38 (2013) 1128–1135.
  20. R. Foroutan, H. Esmaeili, M. Abbasi, M. Rezakazemi, M. Mesbah, Adsorption behavior of Cu(II) and Co(II) using chemically modified marine algae, Environ. Technol., (UK). (2017) 1–9. doi:10.1080/09593330.2017.1365946.
  21. M. Rezakazemi, Z. Niazi, M. Mirfendereski, S. Shirazian, T. Mohammadi, A. Pak, CFD simulation of natural gas sweetening in a gas-liquid hollow-fiber membrane contactor, Chem. Eng. J., 168 (2011) 1217–1226.
  22. M. Rezakazemi, M. Shahverdi, S. Shirazian, T. Mohammadi, A. Pak, CFD simulation of water removal from water/ethylene glycol mixtures by pervaporation, Chem. Eng. J., 168 (2011) 60–67.
  23. F. Hashemi, S. Rowshanzamir, M. Rezakazemi, CFD simulation of PEM fuel cell performance: Effect of straight and serpentine flow fields, Math. Comp. Modelling, 55 (2012) 1540–1557.
  24. A. Marjani, M. Rezakazemi, S. Shirazian, Vapor pressure prediction using group contribution method, Oriental J. Chem., 27 (2011).
  25. N. Azizi, M. Rezakazemi, M.M. Zarei, An intelligent approach to predict gas compressibility factor using neural network model, Neural Comp. Appl., (2017). doi:10.1007/s00521-017- 2979-7.
  26. M. Mesbah, E. Soroush, Development of a least square support vector machine model for prediction of natural gas hydrate formation temperature, Chinese J. Chem. Eng., 25 (2016) 26–32.
  27. B. Liu, H. Xu, H. Zhao, W. Liu, L. Zhao, Y. Li, Preparation and characterization of intelligent starch/PVA films for simultaneous colorimetric indication and antimicrobial activity for food packaging applications, Carbohyd. Polym., 157 (2017) 842–849.
  28. X. Xiao, L. Yu, F. Xie, X. Bao, H. Liu, Z. Ji, L. Chen, Onestep method to prepare starch-based superabsorbent polymer for slow release of fertilizer, Chem. Eng. J., 309 (2017) 607–616.
  29. S. Shirazian, M. Pishnamazi, M. Rezakazemi, A. Nouri, M. Jafari, S. Noroozi, A. Marjani, Implementation of the finite element method for simulation of mass transfer in membrane contactors, Chem. Eng. Technol., 35 (2012) 1077–1084.
  30. M. Fasihi, S. Shirazian, A. Marjani, M. Rezakazemi, Computational fluid dynamics simulation of transport phenomena in ceramic membranes for SO2 separation, Math. Comp. Model., 56 (2012) 278–286.
  31. M. Sadrzadeh, M. Rezakazemi, T. Mohammadi, Chapter 19 - Fundamentals and Measurement Techniques for Gas Transport in Polymers, in: S. Thomas, R. Wilson, A.K. S., S.C. George (Eds.), Transport Properties of Polymeric Membranes, Elsevier, 2018: pp. 391–423.
  32. M. Rezakazemi, I. Heydari, Z. Zhang, Hybrid systems: Combining membrane and absorption technologies leads to more efficient acid gases (CO2 and H2S) removal from natural gas, J. CO2 Util., 18 (2017) 362–369.
  33. E. Farno, M. Rezakazemi, T. Mohammadi, N. Kasiri, Ternary gas permeation through synthesized pdms membranes: Experimental and CFD simulation basedon sorption-dependent system using neural network model, Polym. Eng. Sci., 54 (2014) 215–226.
  34. S.M.R. Razavi, M. Rezakazemi, A.B. Albadarin, S. Shirazian, Simulation of CO2 absorption by solution of ammonium ionic liquid in hollow-fiber contactors, Chem. Eng. Processing: Process Intensif., 108 (2016) 27–34.
  35. A. Marjani, M. Rezakazemi, S. Shirazian, Simulation of methanol production process and determination of optimum conditions, Oriental J. Chem., 28 (2012) 123–129.
  36. M. Rezakazemi, S. Mirzaei, M. Asghari, J. Ivakpour, Aluminum oxide nanoparticles for highly efficient asphaltene separation from crude oil using ceramic membrane technology, Oil Gas Sci. Technol., 72 (2017). doi:10.2516/ogst/2017031.
  37. M. Rezakazemi, M. Sadrzadeh, T. Matsuura, Thermally stable polymers for advanced high-performance gas separation membranes, Progr. Energy Combust. Sci., 66 (2018) 1–41.
  38. P. Taylor, G. Sharma, M. Naushad, D. Pathania, A. Mittal, Treatment modification of Hibiscus cannabinus fiber by graft copolymerization: application for dye removal, Desal. Water Treat., 54 (2014) 3114–3121.
  39. M. Naushad, S. Vasudevan, G. Sharma, A. Kumar, Z.A. ALOthman, Adsorption kinetics, isotherms, and thermodynamic studies for Hg2+ adsorption from aqueous medium using alizarin red-S-loaded amberlite IRA-400 resin, Desal. Water Treat., 57(39) (2016) 18551–18559.
  40. V.K. Kotharangannagari, K. Krishnan, Biodegradable hybrid nanocomposites of starch/lysine and ZnO nanoparticles with shape memory properties, Mater. Design, 109 (2016) 590–595.
  41. Z. Mahdieh, R. Bagheri, M. Eslami, M. Amiri, M.A. Shokrgozar, M. Mehrjoo, Thermoplastic starch/ethylene vinyl alcohol/ forsterite nanocomposite as a candidate material for bone tissue engineering, Mater. Sci. Eng. C., 69 (2016) 301–310.
  42. M. Naushad, T. Ahamad, G. Sharma, A.H. Al-Muhtaseb, A.B. Albadarin, M.M. Alam, Z.A. ALOthman, S.M. Alshehri, A.A. Ghfar, Synthesis and characterization of a new starch/SnO2 nanocomposite for efficient adsorption of toxic Hg2+ metal ion, Chem. Eng. J., 300 (2016) 306–316.
  43. D. Pathania, G. Sharma, A. Kumar, M. Naushad, S. Kalia, A. Sharma, Z.A. Alothman, Combined sorptional – photocatalytic remediation of dyes by polyaniline Zr (IV) selenotungstophosphate nanocomposite, Toxicol. Environ. Chem., 97 (2015) 526–537.
  44. M. Rezakazemi, K. Shahidi, T. Mohammadi, Sorption properties of hydrogen-selective PDMS/zeolite 4A mixed matrix membrane, Int. J. Hydrogen Energy, 37 (2012) 17275–17284.
  45. M. Rezakazemi, K. Shahidi, T. Mohammadi, Hydrogen separation and purification using crosslinkable PDMS/zeolite A nanoparticles mixed matrix membranes, Int. J. Hydrogen Energy, 37 (2012) 14576–14589.
  46. M. Rezakazemi, T. Mohammadi, Gas sorption in H2-selective mixed matrix membranes: Experimental and neural network modeling, Int. J. Hydrogen Energy, 38 (2013) 14035–14041.
  47. M. Rezakazemi, A. Vatani, T. Mohammadi, Synergistic interactions between POSS and fumed silica and their effect on the properties of crosslinked PDMS nanocomposite membranes, RSC Adv., 5 (2015) 82460–82470.
  48. B. Baheri, M. Shahverdi, M. Rezakazemi, E. Motaee, T. Mohammadi, Performance of PVA/NaA mixed matrix membrane for removal of water from ethylene glycol solutions by pervaporation, Chem. Eng. Commun., 202 (2015) 316–321.
  49. D. Pathania, G. Sharma, M. Naushad, V. Priya, A biopolymer- based hybrid cation exchanger pectin cerium(IV) iodate: synthesis, characterization, and analytical applications, Desal. Water Treat., 57(1) (2016) 468–475.
  50. G. Sharma, M. Naushad, A.H. Al-Muhtaseb, A. Kumar, M.R. Khan, S. Kalia, Shweta, M. Bala, A. Sharma, Fabrication and characterization of chitosan-crosslinked-poly(alginic acid) nanohydrogel for adsorptive removal of Cr(VI) metal ion from aqueous medium, Int. J. Biol. Macromol., 95 (2017) 484–493.
  51. M. Rezakazemi, K. Shahidi, T. Mohammadi, Synthetic PDMS composite membranes for pervaporation dehydration of ethanol, Desal. Water Treat., 54 (2015) 1542–1549.
  52. M. Rezakazemi, S. Razavi, T. Mohammadi, A.G. Nazari, Simulation and determination of optimum conditions of pervaporative dehydration of isopropanol process using synthesized PVA-APTEOS/TEOS nanocomposite membranes by means of expert systems, J. Membr. Sci., 379 (2011) 224–232.
  53. G. Sharma, A. Kumar, S. Sharma, M. Naushad, R. Prakash Dwivedi, Z.A. ALOthman, G.T. Mola, Novel development of nanoparticles to bimetallic nanoparticles and their composites: A review, J. King Saud Univ. - Science., (2017). doi:10.1016/j. jksus.2017.06.012.
  54. A. Mittal, M. Naushad, G. Sharma, Z. ALothman, S. Wabaidur, M. Alam, Fabrication of MWCNTs/ThO2 nanocomposite and its adsorption behavior for the removal of Pb (II) metal from aqueous medium, Desal. Water Treat., 57 (2016) 21863–21869.
  55. V.K. Gupta, G. Sharma, D. Pathania, N.C. Kothiyal, Nanocomposite pectin Zr(IV) selenotungsto phosphate for adsorptional/ photocatalytic remediation of methylene blue and malachite green dyes from aqueous system, J. Ind. Eng. Chem., 21 (2015) 957–964.
  56. M. Naushad, G. Sharma, A. Kumar, S. Sharma, A. Ghfar, A. Bhatnagar, F. Stadler, M. Khan, Efficient removal of toxic phosphate anions from aqueous environment using pectin based quaternary amino anion exchanger, Int. J. Biol. Macromol., 106 (2018) 1–10.
  57. D. Pathania, R. Katwal, G. Sharma, M. Naushad, M.R. Khan, A.H. Al-Muhtaseb, Novel guar gum/Al2O3 nanocomposite as an effective photocatalyst for the degradation of malachite green dye, Int. J. Biol. Macromol., 87 (2016) 366–374.
  58. M.I. Shariful, S. Bin Sharif, J.J.L. Lee, U. Habiba, B.C. Ang, M.A. Amalina, Adsorption of divalent heavy metal ion by mesoporous- high surface area chitosan/poly (ethylene oxide) nanofibrous membrane, Carbohyd. Polym., 157 (2017) 57–64.
  59. B.H. Hameed, F.B.M. Daud, Adsorption studies of basic dye on activated carbon derived from agricultural waste: Hevea brasiliensis seed coat, Chem. Eng. J., 139 (2008) 48–55.
  60. Y. Ho, Isotherms for the sorption of lead onto peat: comparison of linear and non-linear methods, Polish J. Environ. Stud., 15 (2006) 81–86.
  61. G. Sharma, M. Naushad, A. Kumar, S. Rana, S. Sharma, A. Bhatnagar, F.J. Stadler, A.A. Ghfar, M.R. Khan, Efficient removal of coomassie brilliant blue R-250 dye using starch/poly(alginic acid- cl -acrylamide) nanohydrogel, Process Safety Environ. Protect., 109 (2017) 301–310.
  62. F. Wu, R. Tseng, High adsorption capacity NaOH-activated carbon for dye removal from aqueous solution, J. Hazard. Mater., 152 (2008) 1256–1267.
  63. F. Jamil, A.H. Al-muhtaseb, M. Naushad, M. Baawain, A. Al-mamun, S.K. Saxena, N. Viswanadham, Evaluation of synthesized green carbon catalyst from waste date pits for tertiary butylation of phenol, Arabian J. Chem., (2017). doi:10.1016/j. arabjc.2017.04.009.
  64. G. Sharma, A. Kumar, C. Chauhan, A. Okram, S. Sharma, D. Pathania, S. Kalia, Pectin-crosslinked-guar gum/SPION nanocomposite hydrogel for adsorption of m-cresol and o-chlorophenol, Sustain. Chem. Pharm., 6 (2017) 96–106.
  65. M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, Adsorption of copper (II), chromium (III), nickel (II) and lead (II) ions from aqueous solutions by meranti sawdust, J. Hazard. Mater., 170 (2009) 969–977.
  66. T. Wang, J. Liu, H. Huang, M. Fang, Z. Luo, Preparation and kinetics of a heterogeneous sorbent for CO2 capture from the atmosphere, Chem. Eng. J., 284 (2016) 679–686.