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Titlebook: Environmental Silicate Nano-Biocomposites; Luc Avérous,Eric Pollet Book 2012 Springer-Verlag London 2012 Environmental Nanomaterials.Green

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Environmental Silicate Nano-Biocomposites978-1-4471-4108-2Series ISSN 1865-3529 Series E-ISSN 1865-3537
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Green Energy and Technologyhttp://image.papertrans.cn/e/image/312904.jpg
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A Glass Box Approach to Adaptive Hypermedia,ment. The polymers are obviously involved into this tendency and numerous biodegradable plastics are now processed for a wide range of applications such as packaging, leisure, agriculture, and biomedical. Some of these polymers combine renewability and biodegradability, such as polylactide, polyhydr
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Signals and Communication Technologys with polymers. The general principles of silicates classification are outlined in order to better understand the structures of the various types of clay minerals as phyllosilicates. Cation exchange capacity (CEC), surface area, porosity, and rheological properties of clay minerals are briefly disc
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Adaptively Distributing Cognition, this biopolymer cannot be fully competitive with conventional thermoplastics since some of its properties appear too weak. The association of PCL with nano-sized fillers allows for significantly improving a large range of properties. The most reported nano-fillers in poly(ε-caprolactone)-based mate
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