Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation
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Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation

Understanding Radiation-induced mechanisms of chain scission & crosslinking in low MW blends of polysaccharides

Khandal Dhriti, Xavier Coqueret, Aggarwal Manjeet

  1. 404 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF
No longer available |Learn more

Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation

Understanding Radiation-induced mechanisms of chain scission & crosslinking in low MW blends of polysaccharides

Khandal Dhriti, Xavier Coqueret, Aggarwal Manjeet

Book details
Table of contents
Citations

About This Book

Starch has the advantage of being biodegradable and agriculture based renewable resource that can be converted into a thermoplastic material with or without any additive. Lignin and its derivatives are good candidates for reducing the water sensitivity of starch based materials. Electron beam radiation has been proposed as an efficient method for modifying the starch lignin blends and creating covalent linkages between the two constituents for improved blend stability. The blends were analyzed using SEC, NMR, and MALDI-TOF for placing in evidence the phenomenon of radiation-induced grafting to compete with chain scission in presence of the aromatic additives. The quantification of the radiochemical yields of scission G(s) and crosslinking G(x) were carried out using the blends of pullulan polysaccharide as a function of varying amounts of aromatic additive in the blend. The methods of calculation exploited here are based on the study of radiation-induced molecular mass changes before the formation of gel as proposed by Saito and the quantification of sol-gel content for formulations resulting in gel as proposed by the Charlesby-Pinner method.

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Information

Year
2013
ISBN
9783639701173
Edition
1
Subtopic
Química

Table of contents

    Citation styles for Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation

    APA 6 Citation

    Dhriti, K., Coqueret, X., & Manjeet, A. (2013). Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation (1st ed.). Scholars’ Press. Retrieved from https://www.perlego.com/book/3215059/tailoring-properties-of-starchlignin-blends-using-ionizing-radiation-understanding-radiationinduced-mechanisms-of-chain-scission-crosslinking-in-low-mw-blends-of-polysaccharides-pdf (Original work published 2013)

    Chicago Citation

    Dhriti, Khandal, Xavier Coqueret, and Aggarwal Manjeet. (2013) 2013. Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation. 1st ed. Scholars’ Press. https://www.perlego.com/book/3215059/tailoring-properties-of-starchlignin-blends-using-ionizing-radiation-understanding-radiationinduced-mechanisms-of-chain-scission-crosslinking-in-low-mw-blends-of-polysaccharides-pdf.

    Harvard Citation

    Dhriti, K., Coqueret, X. and Manjeet, A. (2013) Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation. 1st edn. Scholars’ Press. Available at: https://www.perlego.com/book/3215059/tailoring-properties-of-starchlignin-blends-using-ionizing-radiation-understanding-radiationinduced-mechanisms-of-chain-scission-crosslinking-in-low-mw-blends-of-polysaccharides-pdf (Accessed: 15 October 2022).

    MLA 7 Citation

    Dhriti, Khandal, Xavier Coqueret, and Aggarwal Manjeet. Tailoring Properties of Starch-Lignin Blends Using Ionizing Radiation. 1st ed. Scholars’ Press, 2013. Web. 15 Oct. 2022.