Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine

Mining and related activities caused plant productivity and soil carbon content reduced in arid and semi-arid ecosystems. Soil carbon plays an essential role in ecosystem stability. Soil carbon and associated changes in soil property were important drivers and indicators of ecosystem recovery at pos...

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Autores principales: Yang,Z, Hao,H.M, Wang,D, Chang,X.F, Zhu,Y.J, Wu,G.L
Lenguaje:English
Publicado: Chilean Society of Soil Science / Sociedad Chilena de la Ciencia del Suelo 2015
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Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162015000300007
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spelling oai:scielo:S0718-951620150003000072015-10-14Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mineYang,ZHao,H.MWang,DChang,X.FZhu,Y.JWu,G.L Artificial grassland mine soil restoration soil physic-chemical property vegetation community Mining and related activities caused plant productivity and soil carbon content reduced in arid and semi-arid ecosystems. Soil carbon plays an essential role in ecosystem stability. Soil carbon and associated changes in soil property were important drivers and indicators of ecosystem recovery at post-mining areas. We selected 5, 10 and 20 years of restoration lands to examine the effect of artificial grassland on vegetation community and soil property. Results showed that artificial grassland markedly increased the biomass, canopy coverage and soil carbon content, but decreased soil bulk density and soil water content. After 10-year of restoration, both the biomass and soil organic carbon (SOC) content reached the peak, however, soil bulk density and soil water content arrived the lowest at depth of 0-20 cm and got the highest at depth of 20-30 cm. At 20-year of restoration land, the biomass (above- and belowground) and SOC content (0-30 cm) significantly decreased by 46.2 % and 67.0 % with compared to 10-year of restoration land, while soil bulk density of 0-10 cm and 10-20 cm depths increased by 7.8 % and 21.4 %, respectively, soil water content (0-30 cm) increased by 11.6 % . It was evident that artificial grassland as an effective ecological restoration approach could improve soil physic-chemical property, while properly anthropogenic perturbations were also needed to stimulate plant growth.info:eu-repo/semantics/openAccessChilean Society of Soil Science / Sociedad Chilena de la Ciencia del SueloJournal of soil science and plant nutrition v.15 n.3 20152015-09-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162015000300007en10.4067/S0718-95162015005000032
institution Scielo Chile
collection Scielo Chile
language English
topic Artificial grassland
mine soil restoration
soil physic-chemical property
vegetation community
spellingShingle Artificial grassland
mine soil restoration
soil physic-chemical property
vegetation community
Yang,Z
Hao,H.M
Wang,D
Chang,X.F
Zhu,Y.J
Wu,G.L
Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
description Mining and related activities caused plant productivity and soil carbon content reduced in arid and semi-arid ecosystems. Soil carbon plays an essential role in ecosystem stability. Soil carbon and associated changes in soil property were important drivers and indicators of ecosystem recovery at post-mining areas. We selected 5, 10 and 20 years of restoration lands to examine the effect of artificial grassland on vegetation community and soil property. Results showed that artificial grassland markedly increased the biomass, canopy coverage and soil carbon content, but decreased soil bulk density and soil water content. After 10-year of restoration, both the biomass and soil organic carbon (SOC) content reached the peak, however, soil bulk density and soil water content arrived the lowest at depth of 0-20 cm and got the highest at depth of 20-30 cm. At 20-year of restoration land, the biomass (above- and belowground) and SOC content (0-30 cm) significantly decreased by 46.2 % and 67.0 % with compared to 10-year of restoration land, while soil bulk density of 0-10 cm and 10-20 cm depths increased by 7.8 % and 21.4 %, respectively, soil water content (0-30 cm) increased by 11.6 % . It was evident that artificial grassland as an effective ecological restoration approach could improve soil physic-chemical property, while properly anthropogenic perturbations were also needed to stimulate plant growth.
author Yang,Z
Hao,H.M
Wang,D
Chang,X.F
Zhu,Y.J
Wu,G.L
author_facet Yang,Z
Hao,H.M
Wang,D
Chang,X.F
Zhu,Y.J
Wu,G.L
author_sort Yang,Z
title Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
title_short Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
title_full Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
title_fullStr Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
title_full_unstemmed Revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
title_sort revegetation of artificial grassland improve soil organic and inorganic carbon and water of abandoned mine
publisher Chilean Society of Soil Science / Sociedad Chilena de la Ciencia del Suelo
publishDate 2015
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-95162015000300007
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AT changxf revegetationofartificialgrasslandimprovesoilorganicandinorganiccarbonandwaterofabandonedmine
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