1 |
Comparative characterization of biogenic and chemical synthesized hydroxyapatite biomaterials for potential biomedical application Mondal S, Hoang G, Manivasagan P, Moorthy MS, Kim HH, Phan TTV, Oh J Materials Chemistry and Physics, 228, 344, 2019 |
2 |
Biodiesel production from used cooking oil using green solid catalyst derived from calcined fusion waste chicken and fish bones Tan YH, Abdullah MO, Kansedo J, Mubarak NM, Chan YS, Nolasco-Hipolito C Renewable Energy, 139, 696, 2019 |
3 |
Thermal treatments affect breakage kinetics and calcium release of fish bone particles during high-energy wet ball milling Zhang J, Yin T, Xiong SB, Li YJ, Ikram U, Liu R Journal of Food Engineering, 183, 74, 2016 |
4 |
Synthesis of morphologically controlled hydroxyapatite from fish bone by urea-assisted hydrothermal treatment and its Sr2+ sorption capacity Goto T, Sasaki K Powder Technology, 292, 314, 2016 |
5 |
Fish bone derived natural hydroxyapatite-supported copper acid catalyst: Taguchi optimization of semibatch oleic acid esterification Chakraborty R, RoyChowdhury D Chemical Engineering Journal, 215, 491, 2013 |
6 |
Anatomy of a domino accident: Roots, triggers and lessons learnt Abdolhamidzadeh B, Hassan CRC, Hamid MD, FarrokhMehr S, Badri N, Rashtchian D Process Safety and Environmental Protection, 90(5), 424, 2012 |
7 |
Adsorption and removal of Cu (II) ions from aqueous solution using pretreated fish bones Kizilkaya B, Tekinay AA, Dilgin Y Desalination, 264(1-2), 37, 2010 |
8 |
Extraction of muscle proteins and gelatine from cod head Arnesen JA, Gildberg A Process Biochemistry, 41(3), 697, 2006 |
9 |
Chemical composition and theoretical nutritional evaluation of the produced fractions from enzymic hydrolysis of salmon frames with Protamex (TM) Liaset B, Julshamn K, Espe M Process Biochemistry, 38(12), 1747, 2003 |
10 |
Development of an effective process from livestock and for utilization of collagen fish waste Morimura S, Nagata H, Uemura Y, Fahmi A, Shigematsu T, Kida K Process Biochemistry, 37(12), 1403, 2002 |