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Harmonization service and global library of models to support country-driven global information on salt-affected soils

Global distribution of salt-affected soils (SAS) has remained at about 1 billion hectares in the literature over the years despite changes in climate, sea levels, and land use patterns which influence the distribution. Lack of periodic update of input soil data, data gaps, and inconsistency are part...

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Autores principales: Omuto, C. T., Scherstjanoi, M., Kader, M. A., Musana, B., Barman, A., Fantappiè, M., Jiménez, L. S., Jimenez, W. A., Figueredo, H., Balta, R., Santander, K., Malatji, A., Nahar, A., Kairat, A., Ahmadzai, H., Morisson, J., Stone, S., Roopnarine, R., Eudoxie, G., Khat, P., Phy, C., Seng, V., Janjirawuttikul, N., Tina, M., Farradas, M., Alferihat, M., Desire, K., Jayeoba, O. J., Loum, M., Ahmad, W., Al Rasbi, A. S., Matolo, N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423227/
https://www.ncbi.nlm.nih.gov/pubmed/37573393
http://dx.doi.org/10.1038/s41598-023-40078-9
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author Omuto, C. T.
Scherstjanoi, M.
Kader, M. A.
Musana, B.
Barman, A.
Fantappiè, M.
Jiménez, L. S.
Jimenez, W. A.
Figueredo, H.
Balta, R.
Santander, K.
Malatji, A.
Nahar, A.
Kairat, A.
Ahmadzai, H.
Morisson, J.
Stone, S.
Roopnarine, R.
Eudoxie, G.
Khat, P.
Phy, C.
Seng, V.
Janjirawuttikul, N.
Tina, M.
Farradas, M.
Alferihat, M.
Desire, K.
Jayeoba, O. J.
Loum, M.
Ahmad, W.
Al Rasbi, A. S.
Matolo, N.
author_facet Omuto, C. T.
Scherstjanoi, M.
Kader, M. A.
Musana, B.
Barman, A.
Fantappiè, M.
Jiménez, L. S.
Jimenez, W. A.
Figueredo, H.
Balta, R.
Santander, K.
Malatji, A.
Nahar, A.
Kairat, A.
Ahmadzai, H.
Morisson, J.
Stone, S.
Roopnarine, R.
Eudoxie, G.
Khat, P.
Phy, C.
Seng, V.
Janjirawuttikul, N.
Tina, M.
Farradas, M.
Alferihat, M.
Desire, K.
Jayeoba, O. J.
Loum, M.
Ahmad, W.
Al Rasbi, A. S.
Matolo, N.
author_sort Omuto, C. T.
collection PubMed
description Global distribution of salt-affected soils (SAS) has remained at about 1 billion hectares in the literature over the years despite changes in climate, sea levels, and land use patterns which influence the distribution. Lack of periodic update of input soil data, data gaps, and inconsistency are part of the reasons for constant SAS distribution in the literature. This paper proposes harmonization as a suitable alternative for managing inconsistent data and minimizing data gaps. It developed a new harmonization service for supporting country-driven global SAS information update. The service contains a global library of harmonization models for harmonizing inconsistent soil data. It also contains models for identifying gaps in SAS database and for showing global distribution where harmonization of available data is needed. The service can be used by countries to develop national SAS information and update global SAS distribution. Its data availability index is useful in identifying countries without SAS data in the global database, which is a convenient way to identify countries to mobilize when updating global SAS information. Its application in 27 countries showed that the countries have more SAS data than they currently share with the global databases and that most of their data require SAS harmonization.
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spelling pubmed-104232272023-08-14 Harmonization service and global library of models to support country-driven global information on salt-affected soils Omuto, C. T. Scherstjanoi, M. Kader, M. A. Musana, B. Barman, A. Fantappiè, M. Jiménez, L. S. Jimenez, W. A. Figueredo, H. Balta, R. Santander, K. Malatji, A. Nahar, A. Kairat, A. Ahmadzai, H. Morisson, J. Stone, S. Roopnarine, R. Eudoxie, G. Khat, P. Phy, C. Seng, V. Janjirawuttikul, N. Tina, M. Farradas, M. Alferihat, M. Desire, K. Jayeoba, O. J. Loum, M. Ahmad, W. Al Rasbi, A. S. Matolo, N. Sci Rep Article Global distribution of salt-affected soils (SAS) has remained at about 1 billion hectares in the literature over the years despite changes in climate, sea levels, and land use patterns which influence the distribution. Lack of periodic update of input soil data, data gaps, and inconsistency are part of the reasons for constant SAS distribution in the literature. This paper proposes harmonization as a suitable alternative for managing inconsistent data and minimizing data gaps. It developed a new harmonization service for supporting country-driven global SAS information update. The service contains a global library of harmonization models for harmonizing inconsistent soil data. It also contains models for identifying gaps in SAS database and for showing global distribution where harmonization of available data is needed. The service can be used by countries to develop national SAS information and update global SAS distribution. Its data availability index is useful in identifying countries without SAS data in the global database, which is a convenient way to identify countries to mobilize when updating global SAS information. Its application in 27 countries showed that the countries have more SAS data than they currently share with the global databases and that most of their data require SAS harmonization. Nature Publishing Group UK 2023-08-12 /pmc/articles/PMC10423227/ /pubmed/37573393 http://dx.doi.org/10.1038/s41598-023-40078-9 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Omuto, C. T.
Scherstjanoi, M.
Kader, M. A.
Musana, B.
Barman, A.
Fantappiè, M.
Jiménez, L. S.
Jimenez, W. A.
Figueredo, H.
Balta, R.
Santander, K.
Malatji, A.
Nahar, A.
Kairat, A.
Ahmadzai, H.
Morisson, J.
Stone, S.
Roopnarine, R.
Eudoxie, G.
Khat, P.
Phy, C.
Seng, V.
Janjirawuttikul, N.
Tina, M.
Farradas, M.
Alferihat, M.
Desire, K.
Jayeoba, O. J.
Loum, M.
Ahmad, W.
Al Rasbi, A. S.
Matolo, N.
Harmonization service and global library of models to support country-driven global information on salt-affected soils
title Harmonization service and global library of models to support country-driven global information on salt-affected soils
title_full Harmonization service and global library of models to support country-driven global information on salt-affected soils
title_fullStr Harmonization service and global library of models to support country-driven global information on salt-affected soils
title_full_unstemmed Harmonization service and global library of models to support country-driven global information on salt-affected soils
title_short Harmonization service and global library of models to support country-driven global information on salt-affected soils
title_sort harmonization service and global library of models to support country-driven global information on salt-affected soils
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10423227/
https://www.ncbi.nlm.nih.gov/pubmed/37573393
http://dx.doi.org/10.1038/s41598-023-40078-9
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