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Strip clay application accelerates for 15–20 years the vegetation formation in ash dump (Middle Urals, Russia). / Lukina, Natalia; Chibrik, Tamara; Filimonova, Elena и др.
в: BIO Web of Conferences, Том 31, 00016, 2021.

Результаты исследований: Вклад в журналМатериалы конференцииРецензирование

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@article{a57beb51a92048759bb4f9b3e41fad9b,
title = "Strip clay application accelerates for 15–20 years the vegetation formation in ash dump (Middle Urals, Russia)",
abstract = "As a result of a generalization of 45-year monitoring observations at on the ash dump of the Verkhniy Tagil Power Station, the absolute time scale was made, stabilization rates during succession of different plant communities characteristics were assessed in two areas: recultivated and non-recultivated. Recultivation consisted of clay strips applying (5–8 m wide, 10–15 cm thick) on ash surface. All characteristics of plant communities (total projective cover by plants, total number of species in plant community) are formed 15–20 years faster in recultivated area. So, a simple technical recultivation, (clay strips applying), significantly accelerates the formation of plant communities main characteristics on ash surface in subzone of the southern taiga in Middle Urals. {\textcopyright} The Authors, published by EDP Sciences.",
author = "Natalia Lukina and Tamara Chibrik and Elena Filimonova and Margarita Glazyrina and Evgeniy Rakov and Denis Veselkin",
note = "The work was carried out with financial support of Ministry of Science and Higher education of the Russian Federation as part of state task of the Ural Federal University FEUZ-2020-0057; RFBR grant № 18-04-00714; RFBR – Government of the Sverdlovsk region, grant № 20-44-660011.",
year = "2021",
doi = "10.1051/bioconf/20213100016",
language = "English",
volume = "31",
journal = "BIO Web of Conferences",
issn = "2117-4458",
publisher = "EDP Sciences",

}

RIS

TY - JOUR

T1 - Strip clay application accelerates for 15–20 years the vegetation formation in ash dump (Middle Urals, Russia)

AU - Lukina, Natalia

AU - Chibrik, Tamara

AU - Filimonova, Elena

AU - Glazyrina, Margarita

AU - Rakov, Evgeniy

AU - Veselkin, Denis

N1 - The work was carried out with financial support of Ministry of Science and Higher education of the Russian Federation as part of state task of the Ural Federal University FEUZ-2020-0057; RFBR grant № 18-04-00714; RFBR – Government of the Sverdlovsk region, grant № 20-44-660011.

PY - 2021

Y1 - 2021

N2 - As a result of a generalization of 45-year monitoring observations at on the ash dump of the Verkhniy Tagil Power Station, the absolute time scale was made, stabilization rates during succession of different plant communities characteristics were assessed in two areas: recultivated and non-recultivated. Recultivation consisted of clay strips applying (5–8 m wide, 10–15 cm thick) on ash surface. All characteristics of plant communities (total projective cover by plants, total number of species in plant community) are formed 15–20 years faster in recultivated area. So, a simple technical recultivation, (clay strips applying), significantly accelerates the formation of plant communities main characteristics on ash surface in subzone of the southern taiga in Middle Urals. © The Authors, published by EDP Sciences.

AB - As a result of a generalization of 45-year monitoring observations at on the ash dump of the Verkhniy Tagil Power Station, the absolute time scale was made, stabilization rates during succession of different plant communities characteristics were assessed in two areas: recultivated and non-recultivated. Recultivation consisted of clay strips applying (5–8 m wide, 10–15 cm thick) on ash surface. All characteristics of plant communities (total projective cover by plants, total number of species in plant community) are formed 15–20 years faster in recultivated area. So, a simple technical recultivation, (clay strips applying), significantly accelerates the formation of plant communities main characteristics on ash surface in subzone of the southern taiga in Middle Urals. © The Authors, published by EDP Sciences.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=85174860572

U2 - 10.1051/bioconf/20213100016

DO - 10.1051/bioconf/20213100016

M3 - Conference article

VL - 31

JO - BIO Web of Conferences

JF - BIO Web of Conferences

SN - 2117-4458

M1 - 00016

ER -

ID: 47596500