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Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink
A study using paired $^{15}$N tracers shows atmospheric N deposited in oxidized form is more likely retained by trees, while the reduced form is retained in soil. The authors argue that this is a greater contribution of deposited N to the global forest C sink than previously reported.
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1038/s41467-022-28345-1 http://cds.cern.ch/record/2803752 |
_version_ | 1780972813963755520 |
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author | Gurmesa, Geshere Abdisa Wang, Ang Li, Shanlong Peng, Shushi de Vries, Wim Gundersen, Per Ciais, Philippe Phillips, Oliver L Hobbie, Erik A Zhu, Weixing Nadelhoffer, Knute Xi, Yi Bai, Edith Sun, Tao Chen, Dexiang Zhou, Wenjun Zhang, Yiping Guo, Yingrong Zhu, Jiaojun Duan, Lei Li, Dejun Koba, Keisuke Du, Enzai Zhou, Guoyi Han, Xingguo Han, Shijie Fang, Yunting |
author_facet | Gurmesa, Geshere Abdisa Wang, Ang Li, Shanlong Peng, Shushi de Vries, Wim Gundersen, Per Ciais, Philippe Phillips, Oliver L Hobbie, Erik A Zhu, Weixing Nadelhoffer, Knute Xi, Yi Bai, Edith Sun, Tao Chen, Dexiang Zhou, Wenjun Zhang, Yiping Guo, Yingrong Zhu, Jiaojun Duan, Lei Li, Dejun Koba, Keisuke Du, Enzai Zhou, Guoyi Han, Xingguo Han, Shijie Fang, Yunting |
author_sort | Gurmesa, Geshere Abdisa |
collection | CERN |
description | A study using paired $^{15}$N tracers shows atmospheric N deposited in oxidized form is more likely retained by trees, while the reduced form is retained in soil. The authors argue that this is a greater contribution of deposited N to the global forest C sink than previously reported. |
id | cern-2803752 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28037522022-03-14T22:23:24Zdoi:10.1038/s41467-022-28345-1http://cds.cern.ch/record/2803752engGurmesa, Geshere AbdisaWang, AngLi, ShanlongPeng, Shushide Vries, WimGundersen, PerCiais, PhilippePhillips, Oliver LHobbie, Erik AZhu, WeixingNadelhoffer, KnuteXi, YiBai, EdithSun, TaoChen, DexiangZhou, WenjunZhang, YipingGuo, YingrongZhu, JiaojunDuan, LeiLi, DejunKoba, KeisukeDu, EnzaiZhou, GuoyiHan, XingguoHan, ShijieFang, YuntingRetention of deposited ammonium and nitrate and its impact on the global forest carbon sinkPhysics in GeneralA study using paired $^{15}$N tracers shows atmospheric N deposited in oxidized form is more likely retained by trees, while the reduced form is retained in soil. The authors argue that this is a greater contribution of deposited N to the global forest C sink than previously reported.oai:cds.cern.ch:28037522022 |
spellingShingle | Physics in General Gurmesa, Geshere Abdisa Wang, Ang Li, Shanlong Peng, Shushi de Vries, Wim Gundersen, Per Ciais, Philippe Phillips, Oliver L Hobbie, Erik A Zhu, Weixing Nadelhoffer, Knute Xi, Yi Bai, Edith Sun, Tao Chen, Dexiang Zhou, Wenjun Zhang, Yiping Guo, Yingrong Zhu, Jiaojun Duan, Lei Li, Dejun Koba, Keisuke Du, Enzai Zhou, Guoyi Han, Xingguo Han, Shijie Fang, Yunting Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title | Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title_full | Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title_fullStr | Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title_full_unstemmed | Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title_short | Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
title_sort | retention of deposited ammonium and nitrate and its impact on the global forest carbon sink |
topic | Physics in General |
url | https://dx.doi.org/10.1038/s41467-022-28345-1 http://cds.cern.ch/record/2803752 |
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