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Titlebook: Handbook of Biopolymers; Sabu Thomas,Ajitha AR,Bejoy Thomas Living reference work 20220th edition Biopolymers.Biodegradable Polymers.Chem

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發(fā)表于 2025-3-21 17:02:37 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱(chēng)Handbook of Biopolymers
編輯Sabu Thomas,Ajitha AR,Bejoy Thomas
視頻videohttp://file.papertrans.cn/421/420914/420914.mp4
概述Provides in-depth coverage of production protocols.Contributes a range of novel applications including packaging, sensing, edible films and coatings.Highlights the potential challenge, specifically to
圖書(shū)封面Titlebook: Handbook of Biopolymers;  Sabu Thomas,Ajitha AR,Bejoy Thomas Living reference work 20220th edition  Biopolymers.Biodegradable Polymers.Chem
描述.This handbook on biopolymers offers a comprehensive source for biomaterial professionals. It covers all elementary topics related to the properties of biopolymers, the production and processing of biopolymers, applications of biopolymers, examples of biopolymers and the future of biopolymers..Edited by experts in the field, the book highlights international professionals’ longstanding experiences and addresses the requirements of practitioners but also of newcomers in this field in finding a solution for their problems. The book brings together several natural polymers, their extraction/production, and physio-chemical features. The topics covered in this book are biopolymers from renewable sources, marine prokaryotes, soy protein and humus oils, biopolymer recycling, chemical modifications, and specific properties. The book also focuses on the potential and diverse applications of biogenic and bio-derived polymers. The content includes industrial applications of natural polymeric molecules and applications in key areas such as material, biomedical, sensing, packaging, biomedicine, and biotechnology, and tissue engineering applications are discussed in detail..The objective of this
出版日期Living reference work 20220th edition
關(guān)鍵詞Biopolymers; Biodegradable Polymers; Chemical Recycling; Natural Polymers; Biomolecules; Nanocellulose
doihttps://doi.org/10.1007/978-981-16-6603-2
isbn_ebook978-981-16-6603-2
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書(shū)目名稱(chēng)Handbook of Biopolymers影響因子(影響力)




書(shū)目名稱(chēng)Handbook of Biopolymers影響因子(影響力)學(xué)科排名




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Albumin,eering applications of albumin-based hydrogels influenced by chemical crosslinking, drug-coating techniques, pH, and thermal induction. To provide context, we first examine the nanotechnological techniques of developing albumin nanoparticles. Though albumin hydrogels generally find application in ti
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,Amylose–Amylopectin Ratio,le materials. The physicochemical characteristics and subsequent uses of starch are dependent on their botanical origin, which has a big impact on the granule structure and amylose to amylopectin ratio, which ranges from 15:85 to 35:65, with the exception of waxy starch and high amylose maize starch
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Applications of Biopolymer-Based Nanofibers and Nanomembranes,iving entity. The use of these polymers has increased considerably in recent years as the industry moves away from unsustainable fossil fuel supplies and comes toward a softer and more sustainable eco-friendly approach. The significant information about biopolymer-based nanostructures is included in
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Bacterial Nanocellulose From Agro-Industrial Wastes,esources. Cellulose is mostly found in higher plants, but it is also created by marine organisms, particularly Tunicates, types of algae, and bacteria, by enzymatic and chemical processes, with a nanocellulose or nanofiber or nanocrystalline cellulose structure. For environmental sustainability, it
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Biodegradation of Biopolymers: Reflections Towards Possible Biomagnification,rs are produced in large amounts globally, which end up in the landfill. Their accumulation in the environment can be a major threat to human health and ecology. Shifting to biodegradable polymers can reduce the waste disposal problems associated with conventional petroleum-based polymers. Various b
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