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Versatile technology

Freitas S, Walz A, Merkle HP, Gander B (2003) Solvent extraction employing a static micromixer a simple, robust and versatile technology for the microencapsulation of proteins. J Microencapsulation 20 67-85 FZK Press release 13 (2005) http //www.fzk.de/fzk/idcplg IdcService=FZK node=2374 document=ID 050927. Cited 6 July 2005 Gavriilidis A, Angeli P, Cao E, Yeong KK, Wan YSS (2002) Trans IChemE 80/A 3... [Pg.238]

Figure 5.9. The versatile technology by Moore et alJ101 has been used for the creation of phenylacetylene macrocycles PAMs). Figure 5.9. The versatile technology by Moore et alJ101 has been used for the creation of phenylacetylene macrocycles PAMs).
Bazin, H., Trinquet, E., and Mathis, G. 2002 Time resolved amplification of cryptate emission A versatile technology to trace biomolecular interactions. J. Biotechnol. 82, 233-250. [Pg.230]

NMR (nuclear magnetic resonance) is a versatile technology used in low or medium throughput screening. Different NMR readouts offer a variety of detection modes. The so-called ligand observation mode is used to monitor... [Pg.253]

Application The Borstar polypropylene (PP) process is a versatile technology. Through the choice of reactor combinations, homopolymers, random copolymers, heterophasic copolymers, and very high-rubber content heterophasic copolymers can be produced. [Pg.96]

Because of the availability of hundreds of commercial solvents and extractants, as well as a wide variety of established process schemes and equipment options, liquid-liquid extraction is a versatile technology with a wide range of commercial applications. It is utilized in the... [Pg.1692]

Liquid composite molding (LCM) processes such as resin transfer molding (RTM) have been long established in the automotive and aerospace industries as versatile technologies for manufacturing medium to large composite parts with complex geometries at low cost. All LCM processes involve the injection of a liquid resin into a dry fiber perform, and are... [Pg.2317]

The use of critical fluids for the extraction and refining of components in natural products has now been facilitated for over 30 years. Early success in the decaffeination of coffee beans and isolation of specific fractions from hops for flavoring beer, using either supercritical carbon or liquid carbon dioxide, are but two examples of the commercial application of this versatile technology. Critical fluid technology, a term that will be used here to embrace an array of fluids under pressure, has seen new and varied applications which include the areas of engineering-scale processing, analytical, and materials modification. [Pg.582]

With protein-protein interactions being pervasive throughout biology, chemically controlled dimerization has proved to be a remarkably versatile technology, and more than 300 papers have described use of the approach [9], These applications can be broadly separated into two classes. The first is the use of dimerization technologies in basic and applied biological research, to understand the functions of proteins or pathways, and to create... [Pg.237]

The design and manufacture of acrylate polymers represents a versatile technology for polymers used in a wide variety of applications. The ratios of such commonly used acrylate monomers as butyl acrylate... [Pg.90]

Harvey B. R., Georgiou G., Hayhurst A., Jeong K. J., Iverson B. L., and Rogers G. K., Anchored periplasmic expression, a versatile technology for the isolation of high-affinity antibodies from Escherichia coli-expressed libraries, Proc. Natl. Acad. Sci., 101(25), 9193-9198, 2004. [Pg.231]

This chapter reviews the principles of electrokinetic remediation (the EK process) and various chemical redox-related processes and introduces some selected studies on a variety of environmental contaminants treated by the EK process alone or by EK-coupled technologies. As indicated above, the EK process is a versatile technology. It has many advantages over other physicochemical technologies for in situ remediation of a variety of environmental contaminants. In particular, the EK process could be used in low hydraulic conductivity media and below buildings. Inevitably, the EK process per se has limitations. [Pg.465]

Martin-Banderas, L., Flores-Mosquera, M., Riesco-Chueca, P, Rodrfguez-Gil, A., Cebolla, A., Chavez, S., and Ganan-Calvo, A.M. Flow focusing A versatile technology to produce size-controlled and specific-morphology microparticles. Small 1(7) (2005) 688-692. [Pg.34]

In summary, HME as a continuous manufacturing process entails an interesting future within the pharmaceutical industry—a versatile technology as a conduit for novel drug-delivery systems. [Pg.230]

Arabioumitia et al. studied the thermal pyrolysis of three different polyolefin plastics (HDPE, LDPE and PP) in a conical spouted bed reactor. Compared to fluidized bed reactor, this technology is highly selective to waxes. This fluidized bed reactor requires low residence times and high heating rates that reduce secondary reactions and increase the yield of primary pyrolysis products (waxes). This is an efficient and great versatile technology for the valorization of polyolefinic... [Pg.330]

L. Martfn-Banderas, M. Flores-Mosquera, P. Riesco-Chueca, A. Rodriguez-Gil, A. Cebolla, S. Chavez, A. M. Ganan-Calvo Flow focusing a versatile technology to produce size-controlled and speciflc morphology microparticles, Small 1, 688-692 (2005). [Pg.622]

Giddin JC, Ratanathanawongs SK, Moon MH Field-Flow Fractionation A Versatile Technology for Particle Characterization in the Size Range 10-3 to 102 micrometers. Kona Powder and Particle 1991, 9 200—217. [Pg.232]


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See also in sourсe #XX -- [ Pg.126 ]

See also in sourсe #XX -- [ Pg.126 ]




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Versatile

Versatility

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