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This book shows how the use of biodegradable plastics in
agriculture can have a profound positive impact on plasticulture.
Starting with an organic chemistry approach to biodegradable and
compostable plastics, both natural and synthetic, it then analyzes
the technological and agronomic aspects of existing bioplastics for
protected cultivation (mulching, direct cover, low tunnels). It
describes the new sprayable biodegradable mulching method, which is
based on the use of waterborne polysaccharides and cellulosic
fibers. A further chapter describes the research and technology of
biodegradable plastics for different agricultural practices. It
also includes chapters on life cycle assessment (LCA) of
biodegradable plastics for agriculture, and existing and developing
standards in the field. It is a valuable resource for agronomists,
chemical and materials engineers, polymer technologists and
scientists, as well as for a more general readership interested in
the application of green chemistry principles to the vast world of
crop production. Mario Malinconico< is Research Director at the
Institute of Polymers, Composites and Biomaterials, National
Research Council, Italy.
This book shows how the use of biodegradable plastics in
agriculture can have a profound positive impact on plasticulture.
Starting with an organic chemistry approach to biodegradable and
compostable plastics, both natural and synthetic, it then analyzes
the technological and agronomic aspects of existing bioplastics for
protected cultivation (mulching, direct cover, low tunnels). It
describes the new sprayable biodegradable mulching method, which is
based on the use of waterborne polysaccharides and cellulosic
fibers. A further chapter describes the research and technology of
biodegradable plastics for different agricultural practices. It
also includes chapters on life cycle assessment (LCA) of
biodegradable plastics for agriculture, and existing and developing
standards in the field. It is a valuable resource for agronomists,
chemical and materials engineers, polymer technologists and
scientists, as well as for a more general readership interested in
the application of green chemistry principles to the vast world of
crop production. Mario Malinconico< is Research Director at the
Institute of Polymers, Composites and Biomaterials, National
Research Council, Italy.
In the present book, after briefly summarising recent literature
concerning modification and applications of these materials,
several recent developments of bio-composites containing silica
nanoparticles or calcium sulphate intended for bone regeneration
are reported. The composites are characterised with respect to
their chemical-physical and mechanical properties. Their
bio-compatibility and capacity to induce the osteoblastic phenotype
in human bone marrow mesenchymal stem cells have been assessed. The
authors focus on two particular systems based on either natural or
synthetic bio-polymers with different biofillers: alginate/chitosan
blends with calcium sulphate and poly(-caprolactone) with silica
nanoparticles.
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