Transformation of mineral composition of river sediments from sources to mouth of rivers
Relevance. The efficiency of mineral exploration is determined by the depth of understanding a matter accumulation and scattering. The study of these processes involves an analysis of mineral and chemical composition of bedrock, the products of their processing in the zone of hypergenesis and their...
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Tomsk Polytechnic University
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ftdoajarticles:oai:doaj.org/article:0de811f53ec24018af8bf88a686af6d2 2023-06-18T03:42:21+02:00 Transformation of mineral composition of river sediments from sources to mouth of rivers Oleg Gennadievich Savichev Victor Alekseevich Domarenko Elena Vladimirovna Peregudina Olesya Evgenyevna Lepokurova 2018-08-01T00:00:00Z https://doaj.org/article/0de811f53ec24018af8bf88a686af6d2 RU rus Tomsk Polytechnic University http://izvestiya.tpu.ru/archive/article/view/2058 https://doaj.org/toc/2500-1019 https://doaj.org/toc/2413-1830 2500-1019 2413-1830 https://doaj.org/article/0de811f53ec24018af8bf88a686af6d2 Известия Томского политехнического университета: Инжиниринг георесурсов, Vol 329, Iss 7 (2018) river sediments mineral and chemical composition transformation of mineral composition the Ob river basin the Red river basin Engineering geology. Rock mechanics. Soil mechanics. Underground construction TA703-712 article 2018 ftdoajarticles 2023-06-04T00:33:23Z Relevance. The efficiency of mineral exploration is determined by the depth of understanding a matter accumulation and scattering. The study of these processes involves an analysis of mineral and chemical composition of bedrock, the products of their processing in the zone of hypergenesis and their redeposition by water streams. The aim of the research is to reveal the trends of change in mineral and chemical composition of river sediments along the length of rivers. Methods: landscape-geochemical and statistical methods, methods of definition of chemical and mineral composition of river bottom sediments, mathematical modelling. Results and conclusions. The authors have generalized the data on mineral composition of river sediments in basins of the Ob river (in the Russian Federation: the Tom, Aktru, Pravaya Sarala, Kirgizka, Omutnaya rivers) and the Red river (Viet Nam: the Ban Thi, Che Ngu, Day, Namdu, Pho Day rivers), received in 2000-2017. It is shown that the main regularities of changes in the mineral composition of bottom sediments are associated with an increase in the share of quartz from the sources to the mouths of rivers with a length of more than 11-20 km, while reducing the contribution of minerals to the hypergenic resistance index (logarithm of factum of density and hardness) less than 1,26-1,27. It is established that the sites with a characteristic mineral composition of bottom sediments are located downstream from the sites with a conditionally uniform (or slightly variable in long-time period) chemical composition of river water (displacement of the boundaries to 100 km). A conclusion is drawn on the role of composition of bedrocks and the nature of hypergenic geochemical processes in formation of mineral composition of bottom sediments, which determine the conditions for destruction of particles and accumulation of products of interaction in the water-rock system resistant to chemical and physical weathering. Article in Journal/Newspaper ob river Directory of Open Access Journals: DOAJ Articles Omutnaya ENVELOPE(167.122,167.122,62.730,62.730) Sarala ENVELOPE(27.338,27.338,65.797,65.797) |
institution |
Open Polar |
collection |
Directory of Open Access Journals: DOAJ Articles |
op_collection_id |
ftdoajarticles |
language |
Russian |
topic |
river sediments mineral and chemical composition transformation of mineral composition the Ob river basin the Red river basin Engineering geology. Rock mechanics. Soil mechanics. Underground construction TA703-712 |
spellingShingle |
river sediments mineral and chemical composition transformation of mineral composition the Ob river basin the Red river basin Engineering geology. Rock mechanics. Soil mechanics. Underground construction TA703-712 Oleg Gennadievich Savichev Victor Alekseevich Domarenko Elena Vladimirovna Peregudina Olesya Evgenyevna Lepokurova Transformation of mineral composition of river sediments from sources to mouth of rivers |
topic_facet |
river sediments mineral and chemical composition transformation of mineral composition the Ob river basin the Red river basin Engineering geology. Rock mechanics. Soil mechanics. Underground construction TA703-712 |
description |
Relevance. The efficiency of mineral exploration is determined by the depth of understanding a matter accumulation and scattering. The study of these processes involves an analysis of mineral and chemical composition of bedrock, the products of their processing in the zone of hypergenesis and their redeposition by water streams. The aim of the research is to reveal the trends of change in mineral and chemical composition of river sediments along the length of rivers. Methods: landscape-geochemical and statistical methods, methods of definition of chemical and mineral composition of river bottom sediments, mathematical modelling. Results and conclusions. The authors have generalized the data on mineral composition of river sediments in basins of the Ob river (in the Russian Federation: the Tom, Aktru, Pravaya Sarala, Kirgizka, Omutnaya rivers) and the Red river (Viet Nam: the Ban Thi, Che Ngu, Day, Namdu, Pho Day rivers), received in 2000-2017. It is shown that the main regularities of changes in the mineral composition of bottom sediments are associated with an increase in the share of quartz from the sources to the mouths of rivers with a length of more than 11-20 km, while reducing the contribution of minerals to the hypergenic resistance index (logarithm of factum of density and hardness) less than 1,26-1,27. It is established that the sites with a characteristic mineral composition of bottom sediments are located downstream from the sites with a conditionally uniform (or slightly variable in long-time period) chemical composition of river water (displacement of the boundaries to 100 km). A conclusion is drawn on the role of composition of bedrocks and the nature of hypergenic geochemical processes in formation of mineral composition of bottom sediments, which determine the conditions for destruction of particles and accumulation of products of interaction in the water-rock system resistant to chemical and physical weathering. |
format |
Article in Journal/Newspaper |
author |
Oleg Gennadievich Savichev Victor Alekseevich Domarenko Elena Vladimirovna Peregudina Olesya Evgenyevna Lepokurova |
author_facet |
Oleg Gennadievich Savichev Victor Alekseevich Domarenko Elena Vladimirovna Peregudina Olesya Evgenyevna Lepokurova |
author_sort |
Oleg Gennadievich Savichev |
title |
Transformation of mineral composition of river sediments from sources to mouth of rivers |
title_short |
Transformation of mineral composition of river sediments from sources to mouth of rivers |
title_full |
Transformation of mineral composition of river sediments from sources to mouth of rivers |
title_fullStr |
Transformation of mineral composition of river sediments from sources to mouth of rivers |
title_full_unstemmed |
Transformation of mineral composition of river sediments from sources to mouth of rivers |
title_sort |
transformation of mineral composition of river sediments from sources to mouth of rivers |
publisher |
Tomsk Polytechnic University |
publishDate |
2018 |
url |
https://doaj.org/article/0de811f53ec24018af8bf88a686af6d2 |
long_lat |
ENVELOPE(167.122,167.122,62.730,62.730) ENVELOPE(27.338,27.338,65.797,65.797) |
geographic |
Omutnaya Sarala |
geographic_facet |
Omutnaya Sarala |
genre |
ob river |
genre_facet |
ob river |
op_source |
Известия Томского политехнического университета: Инжиниринг георесурсов, Vol 329, Iss 7 (2018) |
op_relation |
http://izvestiya.tpu.ru/archive/article/view/2058 https://doaj.org/toc/2500-1019 https://doaj.org/toc/2413-1830 2500-1019 2413-1830 https://doaj.org/article/0de811f53ec24018af8bf88a686af6d2 |
_version_ |
1769008266327621632 |