Seasonal and post-rainfall dynamics of soil CO 2 efflux in wheat and peanut fields
It is crucial to understand the effect of rainfall on soil CO 2 efflux and the factors that control efflux. This paper investigates the influence of rainfall events on soil CO 2 efflux from wheat and peanut fields by using high-frequency soil gradient efflux method and long term automated soil chamb...
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th-cmuir.6653943832-5082014-08-29T07:31:51Z Seasonal and post-rainfall dynamics of soil CO 2 efflux in wheat and peanut fields Chayawat C. Senthong C. Leclerc M.Y. Zhang G. Beasley Jr. J.P. It is crucial to understand the effect of rainfall on soil CO 2 efflux and the factors that control efflux. This paper investigates the influence of rainfall events on soil CO 2 efflux from wheat and peanut fields by using high-frequency soil gradient efflux method and long term automated soil chamber measurements. Results show soil CO 2 efflux decreased during and immediately after rainfall events, which was related to reduce gaseous diffusivity as a response. A few hours after rainfall, a significant increase in soil CO 2 efflux was observed, the increased rates of soil CO 2 efflux were different among the growth stages of peanut. A significant correlation between soil water content and soil CO 2 efflux after rainfall was found, suggesting that soil water content has consequence for short-term losses of soil CO 2 efflux after rainfall. The present study suggests that high-frequency soil CO 2 efflux measurements should be made to capture large pulses in CO 2 emissions to adequately model carbon-water cycling from agricultural soils to the atmosphere. 2014-08-29T07:31:51Z 2014-08-29T07:31:51Z 2012 Article 1252526 http://www.scopus.com/inward/record.url?eid=2-s2.0-84865194412&partnerID=40&md5=2733cb28b3cdc76ca6da354ceb02df92 http://cmuir.cmu.ac.th/handle/6653943832/508 English |
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It is crucial to understand the effect of rainfall on soil CO 2 efflux and the factors that control efflux. This paper investigates the influence of rainfall events on soil CO 2 efflux from wheat and peanut fields by using high-frequency soil gradient efflux method and long term automated soil chamber measurements. Results show soil CO 2 efflux decreased during and immediately after rainfall events, which was related to reduce gaseous diffusivity as a response. A few hours after rainfall, a significant increase in soil CO 2 efflux was observed, the increased rates of soil CO 2 efflux were different among the growth stages of peanut. A significant correlation between soil water content and soil CO 2 efflux after rainfall was found, suggesting that soil water content has consequence for short-term losses of soil CO 2 efflux after rainfall. The present study suggests that high-frequency soil CO 2 efflux measurements should be made to capture large pulses in CO 2 emissions to adequately model carbon-water cycling from agricultural soils to the atmosphere. |
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Article |
author |
Chayawat C. Senthong C. Leclerc M.Y. Zhang G. Beasley Jr. J.P. |
spellingShingle |
Chayawat C. Senthong C. Leclerc M.Y. Zhang G. Beasley Jr. J.P. Seasonal and post-rainfall dynamics of soil CO 2 efflux in wheat and peanut fields |
author_facet |
Chayawat C. Senthong C. Leclerc M.Y. Zhang G. Beasley Jr. J.P. |
author_sort |
Chayawat C. |
title |
Seasonal and post-rainfall dynamics of soil CO
2 efflux in wheat and peanut fields |
title_short |
Seasonal and post-rainfall dynamics of soil CO
2 efflux in wheat and peanut fields |
title_full |
Seasonal and post-rainfall dynamics of soil CO
2 efflux in wheat and peanut fields |
title_fullStr |
Seasonal and post-rainfall dynamics of soil CO
2 efflux in wheat and peanut fields |
title_full_unstemmed |
Seasonal and post-rainfall dynamics of soil CO
2 efflux in wheat and peanut fields |
title_sort |
seasonal and post-rainfall dynamics of soil co
2 efflux in wheat and peanut fields |
publishDate |
2014 |
url |
http://www.scopus.com/inward/record.url?eid=2-s2.0-84865194412&partnerID=40&md5=2733cb28b3cdc76ca6da354ceb02df92 http://cmuir.cmu.ac.th/handle/6653943832/508 |
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1681419496294711296 |