Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology

The rubber crumbs produced by the explosive circular destruction of worn-out automobile tires were studied. The crumbs showed high hydrophilicity. Their surface was analyzed by X-ray photoelectron spectroscopy. C, O, S, Zn, and Si were detected on the surface, and their chemical states were determin...

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Main Authors: Alexander Vasylievich Naumkin, Vyacheslav Mikhailovich Misin, Konstantin Igorevich Maslakov
Format: Article
Language:English
Published: MDPI AG 2022-11-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/27/21/7621
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author Alexander Vasylievich Naumkin
Vyacheslav Mikhailovich Misin
Konstantin Igorevich Maslakov
author_facet Alexander Vasylievich Naumkin
Vyacheslav Mikhailovich Misin
Konstantin Igorevich Maslakov
author_sort Alexander Vasylievich Naumkin
collection DOAJ
description The rubber crumbs produced by the explosive circular destruction of worn-out automobile tires were studied. The crumbs showed high hydrophilicity. Their surface was analyzed by X-ray photoelectron spectroscopy. C, O, S, Zn, and Si were detected on the surface, and their chemical states were determined. The same chemical composition in the rubber crumb surface prepared by the explosive grinding of tires, as well as nanoglobules covering the crumb surface, was revealed. The appearance of polar groups on the crumb surface explains its high hydrophilicity and good compatibility with polymer matrices.
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spelling doaj.art-f3e30903c52b430898b84c80aef993792023-11-24T06:07:15ZengMDPI AGMolecules1420-30492022-11-012721762110.3390/molecules27217621Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation TechnologyAlexander Vasylievich Naumkin0Vyacheslav Mikhailovich Misin1Konstantin Igorevich Maslakov2A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28 Vavilov Street, Moscow 119991, RussiaN.M. Emanuel Institute of Biochemical Physics RAS, 4 Kosygin Street, Moscow 119334, RussiaDepartment of Chemistry, Lomonosov Moscow State University, Leninskie Gory 1–2, Moscow 119991, RussiaThe rubber crumbs produced by the explosive circular destruction of worn-out automobile tires were studied. The crumbs showed high hydrophilicity. Their surface was analyzed by X-ray photoelectron spectroscopy. C, O, S, Zn, and Si were detected on the surface, and their chemical states were determined. The same chemical composition in the rubber crumb surface prepared by the explosive grinding of tires, as well as nanoglobules covering the crumb surface, was revealed. The appearance of polar groups on the crumb surface explains its high hydrophilicity and good compatibility with polymer matrices.https://www.mdpi.com/1420-3049/27/21/7621XPScirculating explosive destructiongrindingdisintegrationrubbernanoglobule
spellingShingle Alexander Vasylievich Naumkin
Vyacheslav Mikhailovich Misin
Konstantin Igorevich Maslakov
Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
Molecules
XPS
circulating explosive destruction
grinding
disintegration
rubber
nanoglobule
title Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
title_full Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
title_fullStr Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
title_full_unstemmed Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
title_short Chemical Composition of Nanoglobular Material on the Surface of Rubber Regenerate Prepared by Explosive Circulation Technology
title_sort chemical composition of nanoglobular material on the surface of rubber regenerate prepared by explosive circulation technology
topic XPS
circulating explosive destruction
grinding
disintegration
rubber
nanoglobule
url https://www.mdpi.com/1420-3049/27/21/7621
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