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Chromatography

Developing eco-friendly methods for purification of compounds derived from hydrogenated cardanol

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Pages 2473-2483 | Received 05 Feb 2016, Accepted 12 Jul 2016, Published online: 17 Aug 2016

References

  • Gawande, M.B.; Bonifácio, V.D.B.; Luque, R.; Branco, P.S.; Varma, R.S. (2014) Solvent-free and catalysts-free chemistry: A benign pathway to sustainability. ChemSusChem, 7: 24–44.
  • Anastas, P.; Eghbali, N. (2010) Green chemistry: Principles and practice. Chemical Society Reviews, 39: 301–312.
  • Cioc, R.C.; Ruijter, E.; Orru, R.V.A. (2014) Multicomponent reactions: Advanced tools for sustainable organic synthesis. Green Chemistry, 16: 2958–2975.
  • Azeem, M.W.; Hanif, M.A.; Al-Sabahi, J.N.; Khan, A.A.; Naz, S.; Ijaz, A. (2016) Production of biodiesel from low priced, renewable and abundant date seed oil. Renewable Energy, 86: 124–132.
  • Upare, P.P.; Hwang, Y.K.; Lee, J.; Hwang, D.W.; Chang, J. (2015) Chemical conversions of biomass-derived platform chemicals over copper-silica nanocomposite catalysts. ChemSusChem, 8: 2345–2357.
  • Voirin, C.; Caillol, S.; Sadavarte, N.V.; Tawade, B.V.; Boutevin, B.; Wadgaonkar, P.P. (2014) Functionalization of cardanol: towards biobased polymers and additives. Polymer Chemistry, 5: 3142–3162.
  • Maia, F.J.N.; Ribeiro, F.W.P.; Rangel, J.H.G.; Lomonaco, D.; Luna, F.M.T.; Neto, P.L.; Correia, A.N.; Mazzetto, S.E. (2015) Evaluation of antioxidant action by electrochemical and accelerated oxidation experiments of phenolic compounds derived from cashew nut shell liquid. Industrial Crops and Products, 67: 281–286.
  • Clemente, C.S.; Ribeiro, V.G.P.; Sousa, J.E.A.; Maia, F.J.N.; Barreto, A.C.H.; Andrade, N.F.; Denardin, J.C.; Mele, G.; Carbone, L.; Mazzetto, S.E.; Fechine, P.B.A. (2013) Porphyrin synthesized from cashew nut shell liquid as part of a novel superparamagnetic fluorescence nanosystem. Journal of Nanoparticle Research, 15: 1739–1749.
  • Slota, R.; Dyrda, G.; Hofer, M.; Mele, G.; Bloise, E.; del Sole, R. (2012). Novel lipophilic lanthanide bis-phthalocyanines functionalized by pentadecylphenoxy groups: Synthesis, characterization and UV-photostability. Molecules, 17: 10738–10753.
  • Vasapollo, G.; Mele, G.; del Sole, R.; Pio, I.; Li, J.; Mazzetto, S.E. (2011) Use of novel cardanol-porphyrin hybrids and their Tio2-based composites for the photodegradation of 4-nitrophenol in water. Molecules, 16: 5769–5784.
  • Kasemsiri, P.; Neramittagapong, A.; Chindaprasirt, P. (2015) Curing kinetic, thermal and adhesive properties of epoxy resin cured with cashew nut shell liquid. Thermochimica Acta, 600: 20–27.
  • Suresh, K.I. (2013) Rigid polyurethane foams from cardanol: synthesis, structural characterization, and evaluation of polyol and foam properties. ACS Sustainable Chemistry & Engineering, 1: 232–242.
  • Suresh, K. I.; Jaikrishna, M. (2005) Synthesis of novel crosslinkable polymers by atom transfer radical polymerization of cardanyl acrylate. Journal of Polymer Science Part A: Polymer Chemistry, 43: 5953–5961.
  • Suresh, K.I.; Kishanprasad, V.S. (2005) Synthesis, structure, and properties of novel polyols from cardanol and developed polyurethanes. Industrial & Engineering Chemistry Research, 44: 4504–4512.
  • John, G.; Pillai, C.K.S. (1993) Synthesis and characterization of a self-crosslinkable polymer from cardanol: Autooxidation of poly(cardanyl acrylate) to crosslinked film. Journal of Polymer Science Part A: Polymer Chemistry, 31: 1069–1073.
  • Peter, R.; Vijay, V.R.; Ramakrishnan, S.; Sukumar, R.; Menon, A.R.R. (2015) Phosphorylated cashew nut shell liquid prepolymer modified kaolin as a reinforcing filler for natural rubber. Applied Clay Science 105–106:186–191.
  • Hoang, A.S.; Tran, T.H.; Nguyen, H.N.; Vu, H.S.; Vo, T.P.; Phan, C.; Nguyen, T.V. (2015) Synthesis of oxime from a renewable resource for metal extraction. Korean Journal of Chemical Engineering, 32 (8): 1598–1605.
  • Chen, J.; Nie, X.; Liu, Z.; Mi, Z.; Zhou, Y. (2015) Synthesis and application of polyepoxidecardanolglycidyl ether as biobasedpolyepoxide reactive diluent for epoxy resin. ACS Sustainable Chemistry & Engineering, 3: 1164–1171.
  • Paiva, G.M.S.; Freitas, A.R.; Nobre, F.X.; Leite, C.M.S.; Matos, J.M.E.; Rios, M.A.S. (2015) Kinetic and thermal stability study of hydrogenated cardanol and alkylated hydrogenated cardanol. Journal of Thermal Analysis and Calorimetry, 120: 1617–1625.
  • Attanasi, O.A.; Berretta, S.; Fiani, C.;Filippone, P.; Mele, G.; Saladino, R. (2006) Synthesis and reactions of nitro derivatives of hydrogenated cardanol. Tetrahedron, 62: 6113–6120.
  • Shukla, S.; Mahata, A.; Pathak, B.; Lochab, B. (2015) Cardanolbenzoxazines - interplay of oxazine functionality (mono to tetra) and properties. RSC Advances, 5: 78071–78080.
  • Balachandran, V.S.; Jadhav, S.R.; Vemula, P.K.; John, G. (2013) Recent advances in cardanol chemistry in a nutshell: from a nut nanomaterials. Chemical Society Reviews, 42: 427–438.
  • Stasiuk, M.; Kozubek, A. (2010) Biological activity of phenolic lipids. Cellular and Molecular Life Sciences 67: 841–860.
  • Székely, G.; Gil, M.; Sellergren, B.; Heggie, W.; Ferreira, F.C. (2013) Environmental and economic analysis for selection and engineering sustainable API degenotoxification processes. Green Chemistry, 15: 210–225.
  • Attanasi, O.A.; del Sole, R.; Filippone, P.; Mazzetto, S.E.; Mele, G.; Vasapollo, G. (2004) Synthesis of novel lipophilic porphyrin-cardanol derivatives. Journal of Porphyrins Phthalocyanines, 8: 1276–1284.
  • Attanasi, O. A.; Ciccarella, G.; Filippone, P.; Mele, G.; Spadavecchia, J.; Vasapollo, G. (2003) Novel phthalocyanines containing cardanol derivatives. Journal of Porphyrins Phthalocyanines, 7: 52–57.
  • Casiraghi, G.; Casnati, G.; Puglia, G.; Sartori, G.; Terenghi, G. (1980) Selective reactions between phenols and formaldehyde. A novel route to salicylaldehydes. Journal of the Chemical Society, Perkin Transactions 1 1: 1862–1865.
  • Attanasi, O.A.; Behalo, M.S.; Favi, G.; Lomonaco, D.; Mazzetto, S.E.; Mele, G.; Pio, I.; Vasapollo, G. (2012) Solvent free synthesis of novel mono- and bis-benzoxazines from cashew nut shell liquid components. Current Organic Chemistry 16: 2613–2621.
  • Puangmalee, S.; Petsom, A.; Thamyongkit, P. (2009) A porphyrin derivative from cardanol as a diesel fluorescent marker. Dyes and Pigments, 82: 26–30.
  • Lekesiz, T.O.; Hacaloglu, J. (2016) Effects of curing on structure and thermal characteristics of polybenzoxazine based on p-nitroaniline. Polymer Degradation and Stability 129: 363–373.
  • Sheldon, R.A. (2012) Fundamentals of green chemistry: efficiency in reaction design. Chemical Society Reviews, 41: 1437–1451.
  • Haider, M.H.; Dummer, N.F.; Knight, D.W.; Jenkins, R.L.; Howard, M.; Moulijn, J.; Taylor, S.H.; Hutchings, G.J. (2015) Efficient green methanol synthesis from glycerol. Nature Chemistry, 7: 1028–1032.

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