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Titlebook: Biotechnology and Bioactive Polymers; Charles G. Gebelein,Charles E. Carraher Book 1994 Springer Science+Business Media New York 1994 DNA.

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發(fā)表于 2025-3-21 19:57:54 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biotechnology and Bioactive Polymers
影響因子2023Charles G. Gebelein,Charles E. Carraher
視頻videohttp://file.papertrans.cn/189/188704/188704.mp4
圖書封面Titlebook: Biotechnology and Bioactive Polymers;  Charles G. Gebelein,Charles E. Carraher Book 1994 Springer Science+Business Media New York 1994 DNA.
影響因子Some have predicted that the coming several decades will be the decades of "biotechnology," wherein cancer, birth defects, life span increases, cosmetics, biodegradation, oil spills and exploration, solid waste disposal, and almost every aspect of our material life will be affected by this new area of science. There will also be an extension of emphasis on giant molecules: DNA, enzymes, polysaccharides, lignins, proteins, hemoglobin, and many others. Biotechnology has been defined in various ways. In one sense, this field is older than human history and references to the human use of biotechnology-derived materials can be found in the oldest human writings, such as the Bible. In this book, biotechnology refers to the direct usage of naturally occurring materials or their uses as a feedstock, including the associated biological activities and applications of these materials. Bioactive polymers, on the other hand, are polymers which exert some type of activity on living organisms. These polymers are used in agriculture, controlled release systems, medicine and many other areas. The papers in this book describe polymers which essentially combine features of biotechnology and bioactivi
Pindex Book 1994
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es, cosmetics, biodegradation, oil spills and exploration, solid waste disposal, and almost every aspect of our material life will be affected by this new area of science. There will also be an extension of emphasis on giant molecules: DNA, enzymes, polysaccharides, lignins, proteins, hemoglobin, an
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https://doi.org/10.1007/978-3-662-66925-9s at which chitosan operates most efficiently. Such factors as optimum dosage, pH of reaction, time of mixing and sedimentation rates were studied. The highest recovery of proteins from whey was ca. 40%, estimated by amino acid analysis.
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https://doi.org/10.1007/978-3-642-97136-5, or with poly (ethylene terephthalate) PET, a crystallizable polymer, to make semi-IPNs. The latter compositions were investigated, finding that the triglyceride oils can improve the crystallization rate of the PET, and castor oil and vernonia oil networks can also serve to rubber-toughen the PET.
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Recovery of Proteins from Whey Using Chitosan as a Coagulants at which chitosan operates most efficiently. Such factors as optimum dosage, pH of reaction, time of mixing and sedimentation rates were studied. The highest recovery of proteins from whey was ca. 40%, estimated by amino acid analysis.
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Special Functional Group Triglyceride Oil Based Interpenetrating Polymer Networks, or with poly (ethylene terephthalate) PET, a crystallizable polymer, to make semi-IPNs. The latter compositions were investigated, finding that the triglyceride oils can improve the crystallization rate of the PET, and castor oil and vernonia oil networks can also serve to rubber-toughen the PET.
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