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Titlebook: Enzyme Technology; III. Rotenburg Ferme Robert MacIntyre Lafferty Conference proceedings 1983 Springer-Verlag, Berlin, Heidelberg 1983 DNA.

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書目名稱Enzyme Technology
副標題III. Rotenburg Ferme
編輯Robert MacIntyre Lafferty
視頻videohttp://file.papertrans.cn/314/313097/313097.mp4
圖書封面Titlebook: Enzyme Technology; III. Rotenburg Ferme Robert MacIntyre Lafferty Conference proceedings 1983 Springer-Verlag, Berlin, Heidelberg 1983 DNA.
描述The main subject of the "Ill. Rotenburger Fermentation Symposium" is enzyme technology. Enzyme technology could be simply defined as the scientific study of proteinaceous catalysts derived from living organisms and the application of the knowledge to solve specific problems. The scope of the application of enzyme technology ranges from medical to industrial uses and in the future even living organisms as a source of enzymes may be replaced by fully synthetic enzymes - "synzymes". Although enzyme technology still remains a particular field of biotechnology, the extremely rapid rate of expansion and the enormous increase in the diversifica- tion of all aspects of enzyme technology during the immediate past has created a certain tendency to separate biotechnology and enzyme technology from each other. Certainly, those areas of biotechnology characterized by astounding advances are enzyme technology, bioreactor development and genetic manipula- tion as related to biotechnological processes. However, a glance at many of the common problems of biotechnology and enzyme technology such as diffusion barriers, reactor design, mass transport, substrate or product inhibition pheno- mena and th
出版日期Conference proceedings 1983
關鍵詞DNA; Enzyme; acid; alcohol; antibiotics; biocatalysis; biotechnology; design; diffusion; extrusion; future; mem
版次1
doihttps://doi.org/10.1007/978-3-642-69148-5
isbn_softcover978-3-540-12479-5
isbn_ebook978-3-642-69148-5
copyrightSpringer-Verlag, Berlin, Heidelberg 1983
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Application of the Recombinant DNA Technique to Enzyme Technologylogous genes and instability of recombinant DNA. Efforts to overcome these problems are being made by construction and selection of specially designed host/vector systems, e.g. expression and integration vectors.
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Enzymatic Activity Can be Recovered from Solvent-Denatured Catalaseows design of processes so as to optimize the yield during purification. For example, catalase which had been denatured during an alcohol precipitation may be partially renatured by redissolving in water and then precipitating with ammonium sulfate.
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W. R. Hess,P. G. Howell,D. W. Verwoerdlogous genes and instability of recombinant DNA. Efforts to overcome these problems are being made by construction and selection of specially designed host/vector systems, e.g. expression and integration vectors.
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Samuel Awuah-Nyamekye,Joseph Oppongpower consumption were also measured during these experiments. Disintegration of bacteria is more difficult in comparison with yeast due to the small size, nevertheless enzymes could be solubilized on high yield by treatment in the mill but with lower capacity than yeast.
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Structural Adjustment and Women in Zimbabwe,ows design of processes so as to optimize the yield during purification. For example, catalase which had been denatured during an alcohol precipitation may be partially renatured by redissolving in water and then precipitating with ammonium sulfate.
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