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Modern Trends in the Processing of Linear Alpha Olefins into Technologically Important Products: Part I. / Golub’, F. S.; Bolotov, V. A.; Parmon, V. N.

в: Catalysis in Industry, Том 13, № 2, 04.2021, стр. 168-186.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Golub’ FS, Bolotov VA, Parmon VN. Modern Trends in the Processing of Linear Alpha Olefins into Technologically Important Products: Part I. Catalysis in Industry. 2021 апр.;13(2):168-186. doi: 10.1134/S2070050421020069

Author

Golub’, F. S. ; Bolotov, V. A. ; Parmon, V. N. / Modern Trends in the Processing of Linear Alpha Olefins into Technologically Important Products: Part I. в: Catalysis in Industry. 2021 ; Том 13, № 2. стр. 168-186.

BibTeX

@article{e81dd40a81c246b78f0de4c9f86962ba,
title = "Modern Trends in the Processing of Linear Alpha Olefins into Technologically Important Products: Part I",
abstract = "Linear alpha olefins (LAO) are a class of chemical compounds used in the production of such high-demand products as plasticizers, synthetic lubricants, surfactants, and co-polymers with improved performance. The world consumption of LAO derivatives grows annually, as does the role of LAO processing by scientific institutions, universities, and research departments of commercial companies. Analysis of the scientific literature of the last ten years revealed no general reviews of LAO processing. This work describes recent trends in the processing of LAOs that contain four or more carbon atoms into technologically important derivatives. It lists the main products obtained via LAO processing, along with the means of their production and applications. Existing technological processes for the production of LAO derivatives and the catalysts that are used are considered briefly. Current trends in LAO processing and promising ways to improve existing technologies are described, including the development of new types of catalysts. This review does not claim to be exhaustive, since its main purpose is to give a general idea of the major trends in LAO processing, the catalysts used in these processes, and current ways of improving them.",
keywords = "alkyl ethoxy sulfates, alkyl sulfates, alpha olefins, co-polymerization, ethoxylation, fatty alcohols, hydroformylation, oxo synthesis, sulfation",
author = "Golub{\textquoteright}, {F. S.} and Bolotov, {V. A.} and Parmon, {V. N.}",
note = "Funding Information: This work was supported by the Russian Science Foundation, project no. 17-73-30032. Publisher Copyright: {\textcopyright} 2021, Pleiades Publishing, Ltd.",
year = "2021",
month = apr,
doi = "10.1134/S2070050421020069",
language = "English",
volume = "13",
pages = "168--186",
journal = "Catalysis in Industry",
issn = "2070-0504",
publisher = "Maik Nauka-Interperiodica Publishing",
number = "2",

}

RIS

TY - JOUR

T1 - Modern Trends in the Processing of Linear Alpha Olefins into Technologically Important Products: Part I

AU - Golub’, F. S.

AU - Bolotov, V. A.

AU - Parmon, V. N.

N1 - Funding Information: This work was supported by the Russian Science Foundation, project no. 17-73-30032. Publisher Copyright: © 2021, Pleiades Publishing, Ltd.

PY - 2021/4

Y1 - 2021/4

N2 - Linear alpha olefins (LAO) are a class of chemical compounds used in the production of such high-demand products as plasticizers, synthetic lubricants, surfactants, and co-polymers with improved performance. The world consumption of LAO derivatives grows annually, as does the role of LAO processing by scientific institutions, universities, and research departments of commercial companies. Analysis of the scientific literature of the last ten years revealed no general reviews of LAO processing. This work describes recent trends in the processing of LAOs that contain four or more carbon atoms into technologically important derivatives. It lists the main products obtained via LAO processing, along with the means of their production and applications. Existing technological processes for the production of LAO derivatives and the catalysts that are used are considered briefly. Current trends in LAO processing and promising ways to improve existing technologies are described, including the development of new types of catalysts. This review does not claim to be exhaustive, since its main purpose is to give a general idea of the major trends in LAO processing, the catalysts used in these processes, and current ways of improving them.

AB - Linear alpha olefins (LAO) are a class of chemical compounds used in the production of such high-demand products as plasticizers, synthetic lubricants, surfactants, and co-polymers with improved performance. The world consumption of LAO derivatives grows annually, as does the role of LAO processing by scientific institutions, universities, and research departments of commercial companies. Analysis of the scientific literature of the last ten years revealed no general reviews of LAO processing. This work describes recent trends in the processing of LAOs that contain four or more carbon atoms into technologically important derivatives. It lists the main products obtained via LAO processing, along with the means of their production and applications. Existing technological processes for the production of LAO derivatives and the catalysts that are used are considered briefly. Current trends in LAO processing and promising ways to improve existing technologies are described, including the development of new types of catalysts. This review does not claim to be exhaustive, since its main purpose is to give a general idea of the major trends in LAO processing, the catalysts used in these processes, and current ways of improving them.

KW - alkyl ethoxy sulfates

KW - alkyl sulfates

KW - alpha olefins

KW - co-polymerization

KW - ethoxylation

KW - fatty alcohols

KW - hydroformylation

KW - oxo synthesis

KW - sulfation

UR - http://www.scopus.com/inward/record.url?scp=85110319585&partnerID=8YFLogxK

U2 - 10.1134/S2070050421020069

DO - 10.1134/S2070050421020069

M3 - Article

AN - SCOPUS:85110319585

VL - 13

SP - 168

EP - 186

JO - Catalysis in Industry

JF - Catalysis in Industry

SN - 2070-0504

IS - 2

ER -

ID: 34107569