Open Access

Preparation and physico-chemical study of fire retardant from chicken feathers and PP/PE composites


Cite

[1]. Hornik, K. Krishan, F. Yusuf, M. Scaal, B. Brand-Saberi, cDermo-1 misexpression induces dense dermis, feathers and scales, Developmental Biology 277 (2005) 42–50. Doi: 10.1016/j.ydbio.2004.08.05015572138 Open DOISearch in Google Scholar

[2]. E.D. Weil, S. Levchick, Flame retardant in commercial use or development for textile, Journal of Fire Sciences 26 (2008) 243-281. Doi: 10.1177/0734904108089485 Open DOISearch in Google Scholar

[3]. T. Grover, A. Khandual, K.N. Chatterjee, R. Jamdagni, Flame retardants: an overview, Colourage 61 (2014) 29-36. Search in Google Scholar

[4]. D. Jung, N. Kim, D. Battacharya, Use of modified chicken feather to enhance flame retardancy and mechanical properties of polymeric composites, AIP Conference Proceedings 2289 (2020) 020028-1-020028-5. Doi: 10.1063/5.0029502 Open DOISearch in Google Scholar

[5]. O.E. Uviesherhe, U.C. Okonkwo, I.P. Onwuamaeze, Optimization of chicken feather fiber reinforced composite with epoxy, Elixir Materials Science 81 (2015) 31974-31977. Search in Google Scholar

[6]. R.B. Justin, F.S. Walter, Polyethylene reinforced with keratin fibers obtained from chicken feathers, Composites Science and Technology 65 (2005) 173–181.10.1016/j.compscitech.2004.06.011 Search in Google Scholar

[7]. R. Elhajjar, V. La Saponara, M. Anastasia, Smart composites: mechanics and design (composite materials), p. 430, 1st Edition, CRC Press (2017). Search in Google Scholar

[8]. J.P. Florez, M. Fazeli, R.A. Simão, Preparation and characterization of thermoplastic starch composite reinforced by plasma-treated (hydroxybutyrate) PHB, International Journal of Biological Macromolecules 123 (2019) 609-621. Doi: 10.1016/j.ijbiomac.2018.11.07030447362 Open DOISearch in Google Scholar

[9]. D. Frengel, G. Wegener, Wood: chemistry, ultrastructure, reactions, Verlag Kessel, Ramagen-Oberwinter Germany (2003) 613. Search in Google Scholar

[10]. K. Wrzesnieska – Tosik, S. Zajchowski, A. Bryskiewicz, J. Rysckonska, Feathers as a flame-retardant in elastic polyurethane foam, Fibres and Textiles in Eastern Europe 22 (2014) 119-128. Search in Google Scholar

[11]. ***American Society for Testing and Material (ASTM), Annual book of ASTM/ISO standard, Standard test method for tensile property of polymer matrix composite materials D 638 (2014). Search in Google Scholar

[12]. ***American Society for Testing and Material (ASTM), Annual book of ASTM/ISO standard, Standard testing method to determine the flexural (bending) properties of reinforced and unreinforced plastics, high-modulus composites D-790 (2014). Search in Google Scholar

[13]. G. Bansal, V.K. Singh, P.C. Gope, T. Gupta, Application and properties of chicken feathers fibers (CFF) a livestock waste in composite materials development, Journal of Graphic Era University 5 (2017) 16-24. Search in Google Scholar

[14]. S.C. Nwanonenyi, C.O. Chike–Onyegbula Water absorption, flammability and Mechanical properties of linear low density polyethylene/egg shell composite, Academic Research International 4 (2013) 352-358. Search in Google Scholar

[15]. H. Wang, M. Rehwoldt, D.J. Kline, T. Wu, P. Wang, M.R. Zachariah, Comparison study of the ignition and combustion characteristics of directly-written Al/PVDF, Al/Viton and Al/THV composites, Combustion and Flame 201 (2019) 181-186. Doi: 10.1016/j.combustflame.2018.12.031 Open DOISearch in Google Scholar

[16]. H. Wang, J.B. DeLisio, S. Holdren, T. Wu, Y. Yang, J. Hu, M.R. Zachariah, Mesoporous silica spheres incorporated aluminum/poly (vinylidene fluoride) for enhanced burning propellants, Advanced Engineering Materials 2 (2018) 1-7. Doi: 10.1002/adem.201700547 Open DOISearch in Google Scholar

[17]. O.O. Isiaka, Influence of some selected natural and mineral binders on the bending and water absorption properties of recycled wastepaper based composites for building application, African Journal of Science, Technology, Innovation and Development 11 (2019) 77–83. Search in Google Scholar

[18]. O.O. Isiaka, M.O. Avwerosuoghene, A.O. Joseph, C.K. Moshibudi, Evaluation of the mechanical properties of chemically modified chicken feather fibers reinforced high density polyethylene composites, Journal of Taibah University for Science 12 (2018) 56-63. Doi: 10.1080/16583655.2018.1451103 Open DOISearch in Google Scholar

[19]. A.D. Mohammed, D.A. Young, H.C.M. Vosloo, Synthesis and study of superabsorbent properties of acryloylated starch ester grafted with acrylic acid, Starch/Starke 66 (2014) 1-7. Doi: 10.1002/star.201300174 Open DOISearch in Google Scholar

[20]. ***American Society for Testing and Material (ASTM), Annual book of ASTM/ISO standard test method for water absorption of polymers, D-570 (1998). Search in Google Scholar

[21]. A.A. Adediran, I.O. Oladele, T.F. Omotosho, O.S. Adesina, T.M.A. Olayanju I.M. Fasemoyin, Water absorption, flexural properties and morphological characterization of chicken feather fiber-wood sawdust hybrid reinforced waste paper-cement bio-composites. Materials Today: Proceedings 44 (2021) 2214-7853. Doi: 10.1016/j.matpr.2020.12.1166 Open DOISearch in Google Scholar

eISSN:
2286-038X
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Chemistry, other