Factorial design for the optimization of enzymatic detection of cadmium in aqueous solution using immobilized urease from vegetable waste.
暂无分享,去创建一个
Mahe Talat | S. H. Hasan | O. Prakash | M. Talat | R. Pandey | Om Prakash | S H Hasan | Rajesh K Pandey | Syed Hadi Hasan
[1] Lloyd S. Nelson,et al. Statistical Design and Analysis of Experiments , 1990 .
[2] Zhao Guoqun,et al. Technologic parameter optimization of gas quenching process using response surface method , 2007 .
[3] K. Ravikumar,et al. Optimization of process variables by the application of response surface methodology for dye removal using a novel adsorbent , 2007 .
[4] W. Brack,et al. Urease inhibition: a tool for toxicity identification in sediment elutriates. , 2000, Chemosphere.
[5] J. S. Hunter,et al. MULTIFACTOR EXPERIMENTAL DESIGN FOR EXPLORING THE RESPONSE SURFACES , 1957 .
[6] A. Dalai,et al. Production of activated carbon from Luscar char: Experimental and modeling studies , 2005 .
[7] M. Trojanowicz,et al. Inhibitive determination of mercury and other metal ions by potentiometric urea biosensor. , 2000, Biosensors & bioelectronics.
[8] J. S. Hunter,et al. Multi-Factor Experimental Designs for Exploring Response Surfaces , 1957 .
[9] I. M. Mishra,et al. Optimization of process parameters for acrylonitrile removal by a low-cost adsorbent using Box-Behnken design. , 2008, Journal of hazardous materials.
[10] W. Tischer,et al. Immobilized enzymes: crystals or carriers? , 1999, Trends in biotechnology.
[11] A. Fahmy,et al. Immobilization of Citrullus vulgaris urease on cyanuric chloride deae-cellulose ether: Preparation and properties , 1998 .
[12] G. Bitton,et al. Assessment of urease inhibition assays for measuring toxicity of environmental samples , 1995 .
[13] Nelson Durán,et al. Applications of laccases and tyrosinases (phenoloxidases) immobilized on different supports: a review , 2002 .
[14] B. Krajewska. Urease immobilized on chitosan membrane. Inactivation by heavy metal ions , 2007 .
[15] Koide K. Iwamoto. Alginate as immobilization matrix for cells , 1990 .
[16] Q. Husain,et al. Detoxification of Phenols and Aromatic Amines from Polluted Wastewater by Using Phenol Oxidases , 2000 .
[17] B. Kuswandi. Simple optical fibre biosensor based on immobilised enzyme for monitoring of trace heavy metal ions , 2003, Analytical and bioanalytical chemistry.
[18] M. Ayub,et al. Optimization of cellulase-free xylanase activity produced by Bacillus coagulans BL69 in solid-state cultivation , 2005 .
[19] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.
[20] M. Chudy,et al. Multi-step analysis of Hg2+ ion inhibition of jack bean urease. , 2004, Journal of inorganic biochemistry.
[21] C. Bucke,et al. The immobilization of microbial cells, subcellular organelles, and enzymes in calcium alginate gels , 1977, Biotechnology and bioengineering.
[22] S. H. Hasan,et al. Enzymatic detection of mercuric ions in ground-water from vegetable wastes by immobilizing pumpkin (Cucumis melo) urease in calcium alginate beads. , 2008, Bioresource technology.
[23] A. Ahmad,et al. Oryza sativa L. husk as heavy metal adsorbent: optimization with lead as model solution. , 2006, Bioresource technology.
[24] I. Tan,et al. Optimization of preparation conditions for activated carbons from coconut husk using response surface methodology. , 2008 .
[25] B Mattiasson,et al. Unique applications of immobilized proteins in bioanalytical systems. , 1992, Methods of biochemical analysis.
[26] Margaret J. Robertson,et al. Design and Analysis of Experiments , 2006, Handbook of statistics.
[27] N. Durán,et al. Potential applications of oxidative enzymes and phenoloxidase-like compounds in wastewater and soil treatment: a review , 2000 .
[28] D. P. Blattler,et al. Dissociation of Urease by Glycol and Glycerol , 1967, Nature.