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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-031.mrc:164708599:6448
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-031.mrc:164708599:6448?format=raw

LEADER: 06448cam a2200517 a 4500
001 15104012
005 20221119233320.0
006 m o d
007 cr cnu---unuuu
008 150103t20152015xx a ob 000 0 eng d
035 $a(OCoLC)ocn899157320
035 $a(NNC)15104012
040 $aEBLCP$beng$epn$cEBLCP$dN$T$dOCLCQ$dN$T$dCUS$dYDXCP$dCRCPR$dE7B$dOCLCF$dDEBSZ$dNOC$dOCLCQ$dOCLCO$dUAB$dOCLCQ$dU3W$dAU@$dCOO$dYDX$dTYFRS$dVT2$dLEAUB$dOCLCQ$dOCLCO$dOCLCQ
019 $a898506685$a899280680
020 $a9789814463898$q(electronic bk.)
020 $a9814463892$q(electronic bk.)
020 $z9789814463881
020 $z9814463884
035 $a(OCoLC)899157320$z(OCoLC)898506685$z(OCoLC)899280680
050 4 $aTP248.65.E59
072 7 $aSCI$x013060$2bisacsh
072 7 $aTEC$x009010$2bisacsh
082 04 $a660.634$223
049 $aZCUA
245 00 $aIndustrial biocatalysis /$cedited by Peter Grunwald.
264 1 $a[Place of publication not identified] :$bPan Stanford Publishing,$c[2015]
264 4 $c©2015
300 $a1 online resource :$billustrations
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
490 1 $aPan Stanford series on biocatalysis ;$vvolume 1
504 $aIncludes bibliographical references.
588 0 $aPrint version record.
505 0 $a1. Biocatalysts : global market, industrial applications, aspects of biotransformation design, and societal challenges / Peter Grunwald -- 2. Making use of newly discovered enzymes and pathways : reaction and process development strategies for synthetic applications with recombinant whole-cell biocatalysts and metabolically engineered production strains / Daniel Meyer, Joerg Martin Buescher, and Juergen Eck -- 3. Directed evolution of enzymes for industrial biocatalysis / Youyun Liang, Ee Lui Ang, and Huimin Zhao -- 4. Strategies to overcome stability constraints in enzyme evolution and facilitate effective enzyme engineering / Stephane Emond, Raymond D. Socha, and Nobuhiko Tokuriki -- 5. Production of functional isoprenoids through pathway engineering / Jun-ichiro Hattan and Norihiko Misawa -- 6. Metabolic engineering for the biobased conversion of CO2 to biofuels / Jordan McEwen and Shota Atsumi -- 7. Mixed microbial cultures for industrial biotechnology : success, chance, and challenges / Wael Sabra and An-Ping Zeng -- 8. Extremophiles and their use in biofuel synthesis / Eldie Berger, Eloy Ferreras, Mark P. Taylor, and Don A. Cowan -- 9. Industrial applications of halophilic microorganisms / Aharon Oren -- 10. Non-pathogenic pseudomonas as platform for industrial biocatalysis / Till Tiso, Nick Wierckx, and Lars M. Blank -- 11. Use of corynebacterium glutamicum for the production of high-value chemicals from new carbon sources / Petra Peters-Wendisch and Volker F. Wendisch -- 12. Applications of enzymes in industrial biodiesel production / Jesper Brask, David Cowan, and Per Munk Nielsen.
505 0 $a13. Promiscuous biocatalysts : applications for synthesis from laboratory to industrial scale / Qi Wu and Xian-Fu Lin -- 14. Micromagnetic porous and non-porous biocatalyst carriers / Julia Stolarow, Berna Gerçe, Christoph Syldatk, Ivana Magario, Christian Morhardt, Matthias Franzreb, and Rudolf Hausmann -- 15. Robust enzyme preparations for industrial application / Oliver Thum, Frank Hellmers, and Marion Ansorge-Schumacher -- 16. Hydrolases in non-conventional media : implications for industrial biocatalysis / Veronika Stepankova, Jiri Damborsky, and Radka Chaloupkova -- 17. Ene-reductases from cyanobacteria for industrial biocatalysis / Yilei Fu, Kathrin Castiglione, and Dirk Weuster-Botz -- 18. Cytochrome P450 biocatalysts : current applications and future prospects / Santosh Kumar -- 19. Laccases : green biocatalysts for greener applications / Susana Rodríguez-Couto -- 20. Lipase-catalyzed epoxidation of fatty compounds and alkenes / Fabian Haitz, Steffen Rupp, Thomas Hirth, and Susanne Zibek -- 21. Synthetic potential of dihydroxyacetone-utilizing aldolases / Anne K. Samland and Georg A. Sprenger -- 22. The hydantoinase process : recent developments for the production of non-canonical amino acids / Ulrike Engel, Jens Rudat, and Christoph Syldatk -- 23. Biotechnological approaches to dipeptide production / Martin Krehenbrink, Ahmed Sallam, and Alexander Steinbüchel -- 24. Synthetic enzyme cascades for valuable diols and amino alcohols : smart composition and optimization strategies / Torsten Sehl, Justyna Kulig, Robert Westphal, and Dörte Rother -- 25. Metabolic engineering for the biosynthesis of longevity molecules rapamycin and resveratrol / Victor M. Ye and Sujata K. Bhatia -- 26. Detergent proteases / Karl-Heinz Maurer -- 27. Industrial starch processing / Józef Synowiecki, Anna Panek, and Olga Pietrow -- 28. Algae : a rich source of energy and high-value products / Peter Grunwald -- 29. Enzyme-catalysed processes in a potential algal biorefinery / Bhavish Patel, Pongsathorn Dechatiwongse, and Klaus Hellgardt -- 30. Biocatalytic synthesis of polymers : a contribution to green chemistry / Karla A. Barrera-Rivera and Antonio Martinez-Richa -- 31. Bio-based chemicals and materials / Peter Grunwald.
520 $aBiocatalysis has become an essential tool in the chemical industry and is the core of industrial biotechnology, also known as white biotechnology, making use of biocatalysts in terms of enzymes or whole cells in chemical processes as an alternative to chemical catalysts. This shift can be seen in the many areas of daily life where biocatalysts-with their environmentally friendly properties-are currently employed. Drivers are the big societal challenges resulting from concerns about the global climate change and the need for an assured energy supply. Modern biocatalysis relies to a large extent.
650 0 $aBiocatalysis.
650 6 $aBiocatalyse.
650 7 $aSCIENCE$xChemistry$xIndustrial & Technical.$2bisacsh
650 7 $aTECHNOLOGY & ENGINEERING$xChemical & Biochemical.$2bisacsh
650 7 $aBiocatalysis.$2fast$0(OCoLC)fst01896571
776 08 $iPrint version:$aGrunwald, Peter.$tIndustrial Biocatalysis.$dHoboken : Pan Stanford, ©2014$z9789814463881
830 0 $aPan Stanford series on biocatalysis ;$vv. 1.
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio15104012$zTaylor & Francis eBooks
852 8 $blweb$hEBOOKS