Response Surface Optimization Of Crystal Violet Decolorization By Pellets Of Pyncnoporus Sanguineus.,
2010
Universiti Malaya
Response Surface Optimization Of Crystal Violet Decolorization By Pellets Of Pyncnoporus Sanguineus., Siti Suhana Sulaiman
Student Works (2010-2019)
Ligninolytic enzymes of white-rot fungi have broad specificities and have been implicated in transformation and mineralization of organo-pollutant with chemical structure similar to lignin e.g. synthetic dyes. This study was carried out to optimize selected parameters for decolorization of Crystal violet by Pycnoporus sanguineus in shake flasks. The parameters studied were initial dye concentration (ppm), agitation speed (rpm) and process time. They were optimized using response surface methodology (RSM). Subsequent to the optimization, the decolorization process was scaled up in stirred tank reactor (STR). Effect of different geometry of impellers on the decolorization process was studied. Curved blade and angled …
Effect Of Selected Physical And Chemical Parameters On Crystal Violet Decolorization By Immobilized Laccase.,
2010
Universiti Malaya
Effect Of Selected Physical And Chemical Parameters On Crystal Violet Decolorization By Immobilized Laccase., Nur Atiqah Ismail
Student Works (2010-2019)
Synthetic dyes are used for coloration of various materials like textiles, leather and food. Wastewater from dyeing industries constitutes a threat to the environment as many synthetic dyes are often toxic, mutagenic and carcinogenic. Besides, light absorption is hindered by the dyes run-off creating problems to photosynthetic aquatic plants and algae. Biodegradation of waste dyestuff with enzymes provides a viable alternative compared to the often expensive physical/chemical methods. Laccase from Trametes versicolor was chosen in this study as it exhibits low substrate specificity and high ability to oxidize many pollutants which suggested its potential in wastewater treatment and bioremediation. The …
Targeted Polymeric Biomaterials For The Prevention Of Post Surgical Adhesions,
2010
University of Kentucky
Targeted Polymeric Biomaterials For The Prevention Of Post Surgical Adhesions, John M. Medley
University of Kentucky Doctoral Dissertations
Despite recent advances in surgical technique and the development of numerous therapeutic agents, the formation post surgical adhesions (PSA) continues to cause complications for many patients. In this research, we have employed a rational system to develop a novel treatment to address this clinical need. Based on an understanding of the biochemical events that lead to PSA formation, a series of targeted polymeric biomaterials was designed to interrupt the fibrin gel matrix propagation and suppress PSA formation.
Using group transfer polymerization, a series of well controlled block copolymers of polyacrylic acid and poly(ethylene glycol-methacrylate) based materials was synthesized. Subsequent functionalization …
Nonequilibrium Thermodynamics Modeling Of Coupled Biochemical Cycles In Living Cells,
2010
University of Nebraska-Lincoln
Nonequilibrium Thermodynamics Modeling Of Coupled Biochemical Cycles In Living Cells, Yaşar Demirel
Yaşar Demirel Publications
Living cells represent open, nonequilibrium, self organizing, and dissipative systems maintained with the continuous supply of outside and inside material, energy, and information flows. The energy in the form of adenosine triphosphate is utilized in biochemical cycles, transport processes, protein synthesis, reproduction, and performing other biological work. The processes in molecular and cellular biological systems are stochastic in nature with varying spatial and time scales, and bounded with conservation laws, kinetic laws, and thermodynamic constraints, which should be taken into account by any approach for modeling biological systems. In component biology, this review focuses on the modeling of enzyme kinetics …
