Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits

The article discusses the issues of insufficient use of organic and mineral resources of peat deposits (substandard peat, mineralised sapropel, wood inclusions of peat deposit, organomineral deposits, etc.). The authors propose a structural scheme of directions of processing and use of organic and o...

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Main Authors: Misnicow Oleh, Iablonev Alexandr
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/54/e3sconf_sdemr2021_01014.pdf
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spelling doaj-fe0d052cb6d44277927566514c91e0e52021-07-07T11:33:28ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012780101410.1051/e3sconf/202127801014e3sconf_sdemr2021_01014Directions for the Rational Use of Additional Organic and Mineral Resources of Peat DepositsMisnicow Oleh0Iablonev Alexandr1Tver State Technical UniversityTver State Technical UniversityThe article discusses the issues of insufficient use of organic and mineral resources of peat deposits (substandard peat, mineralised sapropel, wood inclusions of peat deposit, organomineral deposits, etc.). The authors propose a structural scheme of directions of processing and use of organic and organomineral biogenic resources. It includes obtaining various types of composite formed materials for their application in four main directions: energy, agricultural production, environmental protection, and construction industry. Mineral clay components improve the ability of composite materials to be shaped by extrusion and pelletising methods. Some of them also have catalytic activity, which is the basis for their use in thermochemical processing. In peat raw materials, subjected to the process of self-heating during the storage, there is a change of the group chemical composition with the formation of hydrophobic compounds (termobitums). This opens up additional perspectives of their extraction and usage for hydrophobic modification of mineral disperse materials. The classification of industrial wastes and organomineral resources of peat deposits according to the required qualitative characteristics with the indication of possible directions of additional processing is presented in the paper.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/54/e3sconf_sdemr2021_01014.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Misnicow Oleh
Iablonev Alexandr
spellingShingle Misnicow Oleh
Iablonev Alexandr
Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
E3S Web of Conferences
author_facet Misnicow Oleh
Iablonev Alexandr
author_sort Misnicow Oleh
title Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
title_short Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
title_full Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
title_fullStr Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
title_full_unstemmed Directions for the Rational Use of Additional Organic and Mineral Resources of Peat Deposits
title_sort directions for the rational use of additional organic and mineral resources of peat deposits
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The article discusses the issues of insufficient use of organic and mineral resources of peat deposits (substandard peat, mineralised sapropel, wood inclusions of peat deposit, organomineral deposits, etc.). The authors propose a structural scheme of directions of processing and use of organic and organomineral biogenic resources. It includes obtaining various types of composite formed materials for their application in four main directions: energy, agricultural production, environmental protection, and construction industry. Mineral clay components improve the ability of composite materials to be shaped by extrusion and pelletising methods. Some of them also have catalytic activity, which is the basis for their use in thermochemical processing. In peat raw materials, subjected to the process of self-heating during the storage, there is a change of the group chemical composition with the formation of hydrophobic compounds (termobitums). This opens up additional perspectives of their extraction and usage for hydrophobic modification of mineral disperse materials. The classification of industrial wastes and organomineral resources of peat deposits according to the required qualitative characteristics with the indication of possible directions of additional processing is presented in the paper.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/54/e3sconf_sdemr2021_01014.pdf
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