Dissertation > Excellent graduate degree dissertation topics show

Preparation and Performance Study of Nicotinic Acid-Imprinted Polymers with Silica Gel as Sacrificial Carrier

Author: TanJian
Tutor: ZuoJunHong
School: Zhejiang University of Technology
Course: Chemical Engineering
Keywords: molecularly imprinted polymerization molecule recognition polymerization with silica gel as sacrifical carrier nicotinic acid solid phase extraction
CLC: O631.3
Type: Master's thesis
Year: 2011
Downloads: 67
Quote: 0
Read: Download Dissertation

Abstract


Molecularly imprinting technology(MIT) is a new isolation technology, which can be uesd as a fast, simple and effective pre-preparation method in order to promote performance of model analysis instrument.In this research, silica gel was taken as sacrificial carrier, while molecularly imprinted polymers (MIPs) were prepared, using acrylamide as the functional monomer and ethylene glycol dimethacrylate as the cross-linker in the presence of template molecule of nicotinic acid. The influences of different kinds of monomer, as well the dosages of monomer, cross-linker and silica gel with different time and temperature of polymerization toward the adsorptive properties of MIPs were investigated one by one. The optimum process condition was confirmed by orthogonal experiment. Then MIPs were measured by scan electron microscope, Fourier transform infrared spectroscopy, thermogravimetric analysis. The selectivity and binding ability of MIPs were evaluated by static adsorption test, plate chromatography test and Scatchard analysis. Then we prepared the MIPs-SPE column. The optimum condition of mobile phase was investigated. In the last part, by combining the techniques of supercritical CO2 extraction and ultrasonic, MIPs were applied to abstract nicotinic acid from laver samples.The research had confirmed the optimum process condition with silica gel as sacrificial carrier as follow: the dosages of template was 1.5mmol,the template/monomer(AM) ratio was 2:3,the dosages of cross-linker was 50mmol,the dosages of silica gel was 40g, and the polymerization time and temperature were 16h and 60℃. The binding capacity of MIPs prepared at this optimum condition reached 78.5μmol/g. MIPs were compared with NMIPs while niacinamide was chosen as a competitive material, the separation factor was estimated to be 2.76, and the separation factor ratio reached 2.14. By using Scatchard analytical method, the research on binding performances of the prepared polymers demonstrated good specific adsorption ability to template. The equilibrium dissociation constant reached 4.08 mmol/L, and the maximum binding site reached 97.1μmol/g. The result of Thermogravimetric Analysis showed that the thermal stability of MIPs was changed for the adsorption of nicotinic acid. The prepared MIPs showed good service durability, which was confirmed by repeatability experiments. By investigating the influence of water capacity, pH value and flow rate of mobile phase toward the recognition and adsorption capability of MIPs-SPE column, the best mobile phase condition was confirmed: the water capacity was 10%, the pH value was 5 and the flow rate was 1ml/min. In the last part of the research, the MIPs-SPE was combined to the techniques of supercritical CO2 extraction and ultrasonic assistant extraction technology for the application in the extraction of nicotinic acid from laver samples. The application showed good result, the productive rate of nicotinic acid reached 68.6%.

Related Dissertations

  1. The Application of Eggshell Membrane for Solid-phase Extraction and the Determination of Trace Metal Elements in Environment Water,X832
  2. Study on Separation、 Preconcentration and Analysis of Trace Elements with Carbon Nanometer Materials,TB383.1
  3. Imprinted Polymer Preparation and application of solid-phase extraction,O631.3
  4. The Studies and Applications of Chemicals from Renewable Resouces in Organic Synthesis,O621.25
  5. Synthesis of Substituted Pyridine Carboxylic Acid Derivatives,TQ253.2
  6. The Synthesis and Structure of Transitional Metal–pyridinecarboxylic Coordination Polymers,O634
  7. Study on New Synthetic Process of Pendimethalin and Sulcotrione,TQ450.1
  8. Preparation, Evaluation, and Application of Several Natural Product Molecularly Imprinted Polymers,R284.1
  9. Study on Determination and Transfer Behaviors of Polycyclic Musks in Wastewater Treatment,X703
  10. Molecularly Imprinted Polymer Synthesis and Application of Solid Phase Extraction,O631.3
  11. The Studies on Molecularly Imprinted Solid Phase Extraction and Solid Phase Microextration of Dibutyl Phthalate,O631.3
  12. Effect of Nicotinic Acid on Expression of MK2 and Opn in Aorta of Experimental Atherosclerosis Rabbit,R543.5
  13. Ciprofloxacin, Nicosulfuron molecularly imprinted polymer preparation, characterization and application,O631.3
  14. Trialkylamine picolinate complex extraction equilibrium studies,O626.321
  15. Determination of Omeprazole Enantiomers in Human Plasma by High Performance Liquid Chromatography,R965
  16. Determination of 215 Pesticide Residues in Ginger Using Liquid Chromatography Coupled with Electrospray Ionization Tandem Mass Spectrometry,S481.8
  17. MISPE-HPCE assay chicken tissues cephalosporins Residues,S859.84
  18. Application Research on Environmental Pollutants with High Performance Liquid Chromatography,X502
  19. Detection method for microcystins in water and aquatic,TS254.7
  20. Separation and enrichment of organic pollutants in water and Degradation Methods,X703
  21. Study on Clinical Pharmacokinetic and Bioequivalence of Olmesartan,R96

CLC: > Mathematical sciences and chemical > Chemistry > Polymer chemistry ( polymer ) > Polymer physics and physical chemistry of polymers > The chemical nature of polymers
© 2012 www.DissertationTopic.Net  Mobile