By Syed H. Imam, Richard V. Greene, Baqar R. Zaidi
content material: usual polymers as complicated fabrics : a little research wishes and instructions / R.L. Shogren and E.B. Bagley --
Processing and characterization of biodegradable items in response to starch and cellulose fibers / W.J. Bergthaller, U. Funke, M.G. Lindhauer, S. Radosta, F. Meister, and E. Taeger --
Nanocomposite fabrics of thermoplastic polymers bolstered by means of polysaccharide / A. Dufresne and J.Y. Cavaillé --
Thermochemical procedures for derivatization of starches with varied amylose content material / R.E. Wing and J.L. Willett --
Thermo-mechanical habit of polyethylene bolstered by means of ligno-cellulosic fillers / N. Bahlouli, J.Y. Cavaillé, M. García-Ramirez, and A. Camara --
Characterization of plasticized and combined long-chain fatty cellulose esters / P. Wang and B.Y. Tao --
Alkali precipitated polymorphic adjustments of chitin / J. Li, J.-F. Revol, and R.H. Marchessault --
¹³C NMR quantitative suggestions for tracking and characterizing biodegradable, biocompatible thermoplastics produced by means of micro organism : utilizing ¹³C NMR to watch and symbolize poly([beta]-hydroxyalkanoates) in residing cells and in answer / Sheila Ewing Browne --
Enzymology of the synthesis and degradation of polyhydroxyalkanoates / Geoffrey A.R. Nobes and Robert H. Marchessault --
Yeast [beta]-glucosidases and the saccharification of cellulosic biomass / S.N. Freer, C.D. Skory, and R.J. Bothast --
Enzymology of xylan degradation / Badal C. Saha and Rodney J. Bothast --
Extruded plastics containing starch and chitin : actual homes and review of biodegradability / K.A. Niño, S.H. Imam, S.H. Gordon, and L.J.G. Wong --
ordinary structures for higher bioremediation : isolation and characterization of a phenanthrene-utilizing pressure of Alteromonas from Guayanilla coastal water southwest of Puerto Rico / Baqar R. Zaidi, Syed H. Imam, and Richard V. Greene --
Microbial degradation of a poly(lactic acid) as a version of artificial polymer degradation mechanisms in outdoors stipulations / A. Torres, S.M. Li, S. Roussos, and M. Vert --
Membranes of cellulose derivatives as helps for immobilization of enzymes / R. Lagoa, D. Murtinho, and M.H. Gil --
lowering soil erosion losses with small functions of biopolymers / William J. Orts and Gregory M. Glenn --
nutrients purposes of biopolymers : fit for human consumption coatings controlling microbial floor spoilage and chitosan use to get better proteins from aqueous processing wastes / J.A. Torres, C. Dewitt-Mireles, and V. Savant --
impact of biopolymers at the formation, drying kinetics, and taste retention of tamarind (Tamarindus indica) foam-mats / H. Romero-Tehuitzil, E.J. Vernon-Carter, M.G. Vizcarra-Mendoza, and C.I. Beristaín.
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Extra info for Biopolymers. Utilizing Nature's Advanced Materials
Nevertheless a considerable degradation of the amylopectin component was observed in chemically modified amylomaize starch, but the molecular weight fraction of amylose remained nearly unchanged. 6 1 Surface Structure of Extruded Starch Observed by Scanning Electron Microscopy. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1999. ch002 26 Figure 4. Effect of screw rotation rate on specific mechanical energy (SME) input as a function of starch type. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1999.
Pagano, N. J. Composite Materials Workshop; Technomic: Stanford, CT, 1969. 18. ; Cavaillé, J. ; Pérez, J. J. , Rubber Comp. Process. Appl. 19 16, 55. 19. ; Minami, S. J. Polym. , Part C 1964, 5, 113. 20. Stauffer, D. Introduction to Percolation Theory; Taylor and Francis: London and Philadelphia, 1985. 21. -G. Scaling Concepts in Polymer Physics; Cornell University Press: Ithaca, NY, 1979. 22. Batten, G. L. ; Nissan, A. H. TAPPI 1987, 70, 119. 23. Nissan, A. ; Batten, G. L. Jr. TAPPI 1987, 70, 128.
A batch of edible-grade tunicate (Microcosmusfulcatus),fromthe Mediterranean, was obtainedfroma local fish shop. After anesthetizing with chloroform, the animals were gutted and their tunic was cut into small fragments that were deproteinized by three successive bleaching treatments, following the method of Wise et al (8). The bleached mantles (the "tunicin") were then disintegrated in water with a Waring blender (at a concentration of 5% by weight). Hydrolysis conditions were 60°C for 20 min under strong stirring.