Morphology of import additives used in obtaining oxobio-degradable polyolefins
The quantitative and qualitative analysis of the import additives d2W (England) and Tosaf group corporation (Israel) in the form of composite materials containing prooxidants was carried out on a S8 Tiger X-ray fluorescence spectrometer. Analysis of the elemental composition of additives used in the...
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Voronezh state university of engineering technologies
2017-05-01
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doaj-b9b1c031cd744e84a5cd82c0206bc4002021-07-29T08:05:08ZrusVoronezh state university of engineering technologies Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij2226-910X2310-12022017-05-0179122723110.20914/2310-1202-2017-1-227-2311147Morphology of import additives used in obtaining oxobio-degradable polyolefinsV. I. Korchagin0A. V. Protasov1M. S. Mel2S. L. Zhan3T. Ju. Cherkasova4Voronezh state university of engineering technologiesVoronezh state university of engineering technologiesVoronezh state university of engineering technologiesVoronezh state university of engineering technologiesVoronezh state university of engineering technologiesThe quantitative and qualitative analysis of the import additives d2W (England) and Tosaf group corporation (Israel) in the form of composite materials containing prooxidants was carried out on a S8 Tiger X-ray fluorescence spectrometer. Analysis of the elemental composition of additives used in the production of biodegradable polymers showed a different approach to foreign manufacturers, both in composition and in difference of the polymer basis. It is determined that the catalytic ability of both the additive d2W and the additive Tosaf is characterized by the presence of a wide range of elements in the form of metals, including variable valence, while the presence of a limited number of nonmetallic elements is noted. Additive d2W contains the following active elements,% (by mass): manganese – 0.16; strontium – 0.014; iron – 0.01; calcium – 17.15; magnesium – 0.13. The significant content of calcium d2W in the catalyst (17.15%), probably in the form of oxide, provides a significant developed surface of the additive. Additives Tosaf lot No. 1 as a whole contains the following active elements,% (by mass): cobalt – 1.18; Zinc 0.6 and iron 0.024, with a small amount of iron, potassium, calcium, chlorine, phosphorus, silicon, zinc and copper. A slightly different elemental composition in batch No. 2 for the content of cobalt is 1.07% (by weight) and iron – 0.033% (wt.) The variety of a wide range of elements that are characterized by different acid-base and other physicochemical properties, That secondary raw materials were used to produce the corresponding prooxidants. It should be noted that, as a polymeric matrix of metal carboxylate additives, polyolefins are presumably used to better combine and distribute the prooxidants when the synthetic polymer is modified.https://www.vestnik-vsuet.ru/vguit/article/view/1428fatty acids, ultrasound effect, synthesis, prooxidants, metal carboxylates |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
V. I. Korchagin A. V. Protasov M. S. Mel S. L. Zhan T. Ju. Cherkasova |
spellingShingle |
V. I. Korchagin A. V. Protasov M. S. Mel S. L. Zhan T. Ju. Cherkasova Morphology of import additives used in obtaining oxobio-degradable polyolefins Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij fatty acids, ultrasound effect, synthesis, prooxidants, metal carboxylates |
author_facet |
V. I. Korchagin A. V. Protasov M. S. Mel S. L. Zhan T. Ju. Cherkasova |
author_sort |
V. I. Korchagin |
title |
Morphology of import additives used in obtaining oxobio-degradable polyolefins |
title_short |
Morphology of import additives used in obtaining oxobio-degradable polyolefins |
title_full |
Morphology of import additives used in obtaining oxobio-degradable polyolefins |
title_fullStr |
Morphology of import additives used in obtaining oxobio-degradable polyolefins |
title_full_unstemmed |
Morphology of import additives used in obtaining oxobio-degradable polyolefins |
title_sort |
morphology of import additives used in obtaining oxobio-degradable polyolefins |
publisher |
Voronezh state university of engineering technologies |
series |
Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij |
issn |
2226-910X 2310-1202 |
publishDate |
2017-05-01 |
description |
The quantitative and qualitative analysis of the import additives d2W (England) and Tosaf group corporation (Israel) in the form of composite materials containing prooxidants was carried out on a S8 Tiger X-ray fluorescence spectrometer. Analysis of the elemental composition of additives used in the production of biodegradable polymers showed a different approach to foreign manufacturers, both in composition and in difference of the polymer basis. It is determined that the catalytic ability of both the additive d2W and the additive Tosaf is characterized by the presence of a wide range of elements in the form of metals, including variable valence, while the presence of a limited number of nonmetallic elements is noted. Additive d2W contains the following active elements,% (by mass): manganese – 0.16; strontium – 0.014; iron – 0.01; calcium – 17.15; magnesium – 0.13. The significant content of calcium d2W in the catalyst (17.15%), probably in the form of oxide, provides a significant developed surface of the additive. Additives Tosaf lot No. 1 as a whole contains the following active elements,% (by mass): cobalt – 1.18; Zinc 0.6 and iron 0.024, with a small amount of iron, potassium, calcium, chlorine, phosphorus, silicon, zinc and copper. A slightly different elemental composition in batch No. 2 for the content of cobalt is 1.07% (by weight) and iron – 0.033% (wt.) The variety of a wide range of elements that are characterized by different acid-base and other physicochemical properties, That secondary raw materials were used to produce the corresponding prooxidants. It should be noted that, as a polymeric matrix of metal carboxylate additives, polyolefins are presumably used to better combine and distribute the prooxidants when the synthetic polymer is modified. |
topic |
fatty acids, ultrasound effect, synthesis, prooxidants, metal carboxylates |
url |
https://www.vestnik-vsuet.ru/vguit/article/view/1428 |
work_keys_str_mv |
AT vikorchagin morphologyofimportadditivesusedinobtainingoxobiodegradablepolyolefins AT avprotasov morphologyofimportadditivesusedinobtainingoxobiodegradablepolyolefins AT msmel morphologyofimportadditivesusedinobtainingoxobiodegradablepolyolefins AT slzhan morphologyofimportadditivesusedinobtainingoxobiodegradablepolyolefins AT tjucherkasova morphologyofimportadditivesusedinobtainingoxobiodegradablepolyolefins |
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1721258344165933056 |