Agricultural soils as a sink to mitigate CO2 emissions

Agricultural soils, having been depleted of much of their native carbon stocks, have a significant CO2 sink capacity. Global estimates of this sink capacity are in the order of 20-30 Pg C over the next 50-100 years .Management practices to build up soil C must increase the input of organic matter to...

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Main Authors: Paustian, Keith, Andren, O., Janzen, H.H., Lal, R., Smith, P., Tian, G., Tiessen, H., Noordwijk, M. van, Woomer, P.L.
Format: Journal Article
Language:Inglés
Published: Wiley 1997
Subjects:
Online Access:https://hdl.handle.net/10568/98702
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author Paustian, Keith
Andren, O.
Janzen, H.H.
Lal, R.
Smith, P.
Tian, G.
Tiessen, H.
Noordwijk, M. van
Woomer, P.L.
author_browse Andren, O.
Janzen, H.H.
Lal, R.
Noordwijk, M. van
Paustian, Keith
Smith, P.
Tian, G.
Tiessen, H.
Woomer, P.L.
author_facet Paustian, Keith
Andren, O.
Janzen, H.H.
Lal, R.
Smith, P.
Tian, G.
Tiessen, H.
Noordwijk, M. van
Woomer, P.L.
author_sort Paustian, Keith
collection Repository of Agricultural Research Outputs (CGSpace)
description Agricultural soils, having been depleted of much of their native carbon stocks, have a significant CO2 sink capacity. Global estimates of this sink capacity are in the order of 20-30 Pg C over the next 50-100 years .Management practices to build up soil C must increase the input of organic matter to soil and/or decrease soil organic matter decomposition rates. The most appropriate management practices to increase soil C vary regionally dependent on both environmental and socioeconomic factors
format Journal Article
id CGSpace98702
institution CGIAR Consortium
language Inglés
publishDate 1997
publishDateRange 1997
publishDateSort 1997
publisher Wiley
publisherStr Wiley
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spelling CGSpace987022025-12-08T09:54:28Z Agricultural soils as a sink to mitigate CO2 emissions Paustian, Keith Andren, O. Janzen, H.H. Lal, R. Smith, P. Tian, G. Tiessen, H. Noordwijk, M. van Woomer, P.L. carbon carbon dioxide emission agricultural soils Agricultural soils, having been depleted of much of their native carbon stocks, have a significant CO2 sink capacity. Global estimates of this sink capacity are in the order of 20-30 Pg C over the next 50-100 years .Management practices to build up soil C must increase the input of organic matter to soil and/or decrease soil organic matter decomposition rates. The most appropriate management practices to increase soil C vary regionally dependent on both environmental and socioeconomic factors 1997-12 2018-12-19T07:01:39Z 2018-12-19T07:01:39Z Journal Article https://hdl.handle.net/10568/98702 en Limited Access Wiley Paustian, K., Andrén, O., Janzen, H.H., Lal, R., Smith, P., Tian, G., … & Woomer, P.L. (1997). Agricultural soils as a sink to mitigate CO2 emissions. Soil Use and Management, 13, 230-244.
spellingShingle carbon
carbon dioxide
emission
agricultural soils
Paustian, Keith
Andren, O.
Janzen, H.H.
Lal, R.
Smith, P.
Tian, G.
Tiessen, H.
Noordwijk, M. van
Woomer, P.L.
Agricultural soils as a sink to mitigate CO2 emissions
title Agricultural soils as a sink to mitigate CO2 emissions
title_full Agricultural soils as a sink to mitigate CO2 emissions
title_fullStr Agricultural soils as a sink to mitigate CO2 emissions
title_full_unstemmed Agricultural soils as a sink to mitigate CO2 emissions
title_short Agricultural soils as a sink to mitigate CO2 emissions
title_sort agricultural soils as a sink to mitigate co2 emissions
topic carbon
carbon dioxide
emission
agricultural soils
url https://hdl.handle.net/10568/98702
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