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Titlebook: Biopolymers; A molecular paleonto Neal S. Gupta Book 2014 Springer Science+Business Media Dordrecht 2014

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Topics in Geobiologyhttp://image.papertrans.cn/b/image/188407.jpg
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Law and Diplomacy in Commodity Economicsossils from the Miocene Clarkia deposit in Idaho of USA revealed lignin and an aliphatic polymer up to C. without any polysaccharides. Modern . needle was heated experimentally in confined conditions that generated a macromolecular composition with an aliphatic polymer up to C. and additional phenol
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Law and Diplomacy in Commodity Economics C. to C. acid units are characteristic of the free fatty acid (FA) fraction of epicuticular waxes. However, TEM and SEM investigations of the fossils revealed no evidence for cuticle preservation, and while a contribution from cutin cannot be excluded, the aliphatic component of the fossil polymer
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https://doi.org/10.1057/9781137318107nts being the most abundant. Analysis of fossil weevil cuticle also revealed the presence of an aliphatic polymer as evidenced by C..-alkyl components in the pyrolysate and C. FAMEs (predominantly even-numbered C. components) in the TMAH pyrolysate. Pyrolysates of the sediments contain alkanes with
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https://doi.org/10.1057/9781137318107, living relatives of the eurypterids, showed that C. and C. fatty acyl moieties likewise dominate. Assuming that the original composition of the eurypterid cuticle was similar to that in living chelicerates, fossilization likely involved the incorporation of such lipids into an aliphatic polymer.
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Molecular Decay of Plant Biopolymers,ossils from the Miocene Clarkia deposit in Idaho of USA revealed lignin and an aliphatic polymer up to C. without any polysaccharides. Modern . needle was heated experimentally in confined conditions that generated a macromolecular composition with an aliphatic polymer up to C. and additional phenol
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Organic Preservation of Biopolymers in Fossil Leaves, C. to C. acid units are characteristic of the free fatty acid (FA) fraction of epicuticular waxes. However, TEM and SEM investigations of the fossils revealed no evidence for cuticle preservation, and while a contribution from cutin cannot be excluded, the aliphatic component of the fossil polymer
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Migration of Organic Molecules from Sediment to Fossils,nts being the most abundant. Analysis of fossil weevil cuticle also revealed the presence of an aliphatic polymer as evidenced by C..-alkyl components in the pyrolysate and C. FAMEs (predominantly even-numbered C. components) in the TMAH pyrolysate. Pyrolysates of the sediments contain alkanes with
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Lipid Incorporation During Experimental Decay of Arthropods,omolecules during the very early stages of decay representing the first stage of the transformation process that contributes to the aliphatic rich composition ubiquitous in organic fossils and in kerogens.
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