Zobrazeno 1 - 7
of 7
pro vyhledávání: '"hasan kaboli"'
Publikováno v:
مدیریت بیابان, Vol 9, Iss 2, Pp 79-102 (2021)
Land use and land cover (LULC) is one of the most important factors that affect the desertification risk in this study, the desertification sensitivity of the Mokhtaran basin in South Khorasan province was estimated by integrating LU/LC scenarios wit
Externí odkaz:
https://doaj.org/article/2951cc4cd11248e290fcd11286e5d399
Autor:
Anvar Sanaei, Emma J. Sayer, Zuoqiang Yuan, Hugo Saiz, Manuel Delgado‐Baquerizo, Majid Sadeghinia, Parvaneh Ashouri, Sahar Ghafari, Hasan Kaboli, Mansoureh Kargar, Eric W. Seabloom, Arshad Ali
1. Plant diversity supports multiple ecosystem functions, including carbon sequestration. Recent shifts in plant diversity in rangelands due to increased grazing pressure and climate changes have the potential to impact the sequestration of carbon in
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::7b0c479a4d4c1e0f29f4fefb8921cdc9
Autor:
Ulf Karsten, Kazem Khavazi, Mohammad Sohrabi, Seyed Hasan Kaboli, Leila Kashi Zenouzi, Mohammad E. Khosroshahi
Publikováno v:
Environmental Health Engineering and Management, Vol 8, Iss 3, Pp 153-167 (2021)
Background: Biological soil crusts (BSCs) that are able to produce sticky extracellular polymeric substances (EPS) play an important role in the formation of soil aggregates, thereby, reducing soil erosion. In this study, experiments were undertaken
Autor:
Tommaso Jucker, Fabian Jörg Fischer, Jérôme Chave, David A. Coomes, John Caspersen, Arshad Ali, Grace Jopaul Loubota Panzou, Ted R. Feldpausch, Daniel Falster, Vladimir A. Usoltsev, Stephen Adu‐Bredu, Luciana F. Alves, Mohammad Aminpour, Ilondea B. Angoboy, Niels P. R. Anten, Cécile Antin, Yousef Askari, Rodrigo Muñoz, Narayanan Ayyappan, Patricia Balvanera, Lindsay Banin, Nicolas Barbier, John J. Battles, Hans Beeckman, Yannick E. Bocko, Ben Bond‐Lamberty, Frans Bongers, Samuel Bowers, Thomas Brade, Michiel van Breugel, Arthur Chantrain, Rajeev Chaudhary, Jingyu Dai, Michele Dalponte, Kangbéni Dimobe, Jean‐Christophe Domec, Jean‐Louis Doucet, Remko A. Duursma, Moisés Enríquez, Karin Y. van Ewijk, William Farfán‐Rios, Adeline Fayolle, Eric Forni, David I. Forrester, Hammad Gilani, John L. Godlee, Sylvie Gourlet‐Fleury, Matthias Haeni, Jefferson S. Hall, Jie‐Kun He, Andreas Hemp, José L. Hernández‐Stefanoni, Steven I. Higgins, Robert J. Holdaway, Kiramat Hussain, Lindsay B. Hutley, Tomoaki Ichie, Yoshiko Iida, Hai‐sheng Jiang, Puspa Raj Joshi, Hasan Kaboli, Maryam Kazempour Larsary, Tanaka Kenzo, Brian D. Kloeppel, Takashi Kohyama, Suwash Kunwar, Shem Kuyah, Jakub Kvasnica, Siliang Lin, Emily R. Lines, Hongyan Liu, Craig Lorimer, Jean‐Joël Loumeto, Yadvinder Malhi, Peter L. Marshall, Eskil Mattsson, Radim Matula, Jorge A. Meave, Sylvanus Mensah, Xiangcheng Mi, Stéphane Momo, Glenn R. Moncrieff, Francisco Mora, Sarath P. Nissanka, Kevin L. O'Hara, Steven Pearce, Raphaël Pelissier, Pablo L. Peri, Pierre Ploton, Lourens Poorter, Mohsen Javanmiri Pour, Hassan Pourbabaei, Juan Manuel Dupuy‐Rada, Sabina C. Ribeiro, Casey Ryan, Anvar Sanaei, Jennifer Sanger, Michael Schlund, Giacomo Sellan, Alexander Shenkin, Bonaventure Sonké, Frank J. Sterck, Martin Svátek, Kentaro Takagi, Anna T. Trugman, Farman Ullah, Matthew A. Vadeboncoeur, Ahmad Valipour, Mark C. Vanderwel, Alejandra G. Vovides, Weiwei Wang, Li‐Qiu Wang, Christian Wirth, Murray Woods, Wenhua Xiang, Fabiano de Aquino Ximenes, Yaozhan Xu, Toshihiro Yamada, Miguel A. Zavala
Publikováno v:
Global Change Biology, 28(17), 5254-5268
Global Change Biology 28: 5254-5268. (September 2022)
INTA Digital (INTA)
Instituto Nacional de Tecnología Agropecuaria
instacron:INTA
Jucker, T, Fischer, F J, Chave, J, Coomes, D A, Caspersen, J, Ali, A & et, A 2022, ' Tallo: a global tree allometry and crown architecture database ', Global Change Biology, vol. 28, no. 17, pp. 5254-5268 . https://doi.org/10.1111/gcb.16302
Jucker, T, Fischer, F J, Chave, J, Coomes, D A, Caspersen, J, Ali, A, Panzou, G J L, Feldpausch, T R, Falster, D, Usoltsev, V A, Adu-bredu, S, Alves, L F, Aminpour, M, Angoboy, I B, Anten, N P R, Antin, C, Askari, Y, Avilés, R M, Ayyappan, N, Balvanera, P, Banin, L, Barbier, N, Battles, J J, Beeckman, H, Bocko, Y E, Bond-lamberty, B, Bongers, F, Bowers, S, Brade, T, Van Breugel, M, Chantrain, A, Chaudhary, R, Dai, J, Dalponte, M, Dimobe, K, Domec, J, Doucet, J, Duursma, R A, Enríquez, M, Van Ewijk, K Y, Farfán-rios, W, Fayolle, A, Forni, E, Forrester, D I, Gilani, H, Godlee, J L, Gourlet-fleury, S, Haeni, M, Hall, J S, He, J, Hemp, A, Hernández-stefanoni, J L, Higgins, S I, Holdaway, R J, Hussain, K, Hutley, L B, Ichie, T, Iida, Y, Jiang, H, Joshi, P R, Kaboli, H, Larsary, M K, Kenzo, T, Kloeppel, B D, Kohyama, T, Kunwar, S, Kuyah, S, Kvasnica, J, Lin, S, Lines, E R, Liu, H, Lorimer, C, Loumeto, J, Malhi, Y, Marshall, P L, Mattsson, E, Matula, R, Meave, J A, Mensah, S, Mi, X, Momo, S, Moncrieff, G R, Mora, F, Nissanka, S P, O'hara, K L, Pearce, S, Pelissier, R, Peri, P L, Ploton, P, Poorter, L, Pour, M J, Pourbabaei, H, Rada, J M D, Ribeiro, S C, Ryan, C, Sanaei, A, Sanger, J, Schlund, M, Sellan, G, Shenkin, A, Sonké, B, Sterck, F J, Svátek, M, Takagi, K, Trugman, A T, Ullah, F, Vadeboncoeur, M A, Valipour, A, Vanderwel, M C, Vovides, A G, Wang, W, Wang, L, Wirth, C, Woods, M, Xiang, W, De Aquino Ximenes, F, Xu, Y, Yamada, T & Zavala, M A 2022, ' Tallo–a global tree allometry and crown architecture database ', Global Change Biology . https://doi.org/10.1111/gcb.16302
Global Change Biology 28 (2022) 17
Global change biology, 28(17), 5254-5268. Wiley-Blackwell
Global Change Biology
Global Change Biology 28: 5254-5268. (September 2022)
INTA Digital (INTA)
Instituto Nacional de Tecnología Agropecuaria
instacron:INTA
Jucker, T, Fischer, F J, Chave, J, Coomes, D A, Caspersen, J, Ali, A & et, A 2022, ' Tallo: a global tree allometry and crown architecture database ', Global Change Biology, vol. 28, no. 17, pp. 5254-5268 . https://doi.org/10.1111/gcb.16302
Jucker, T, Fischer, F J, Chave, J, Coomes, D A, Caspersen, J, Ali, A, Panzou, G J L, Feldpausch, T R, Falster, D, Usoltsev, V A, Adu-bredu, S, Alves, L F, Aminpour, M, Angoboy, I B, Anten, N P R, Antin, C, Askari, Y, Avilés, R M, Ayyappan, N, Balvanera, P, Banin, L, Barbier, N, Battles, J J, Beeckman, H, Bocko, Y E, Bond-lamberty, B, Bongers, F, Bowers, S, Brade, T, Van Breugel, M, Chantrain, A, Chaudhary, R, Dai, J, Dalponte, M, Dimobe, K, Domec, J, Doucet, J, Duursma, R A, Enríquez, M, Van Ewijk, K Y, Farfán-rios, W, Fayolle, A, Forni, E, Forrester, D I, Gilani, H, Godlee, J L, Gourlet-fleury, S, Haeni, M, Hall, J S, He, J, Hemp, A, Hernández-stefanoni, J L, Higgins, S I, Holdaway, R J, Hussain, K, Hutley, L B, Ichie, T, Iida, Y, Jiang, H, Joshi, P R, Kaboli, H, Larsary, M K, Kenzo, T, Kloeppel, B D, Kohyama, T, Kunwar, S, Kuyah, S, Kvasnica, J, Lin, S, Lines, E R, Liu, H, Lorimer, C, Loumeto, J, Malhi, Y, Marshall, P L, Mattsson, E, Matula, R, Meave, J A, Mensah, S, Mi, X, Momo, S, Moncrieff, G R, Mora, F, Nissanka, S P, O'hara, K L, Pearce, S, Pelissier, R, Peri, P L, Ploton, P, Poorter, L, Pour, M J, Pourbabaei, H, Rada, J M D, Ribeiro, S C, Ryan, C, Sanaei, A, Sanger, J, Schlund, M, Sellan, G, Shenkin, A, Sonké, B, Sterck, F J, Svátek, M, Takagi, K, Trugman, A T, Ullah, F, Vadeboncoeur, M A, Valipour, A, Vanderwel, M C, Vovides, A G, Wang, W, Wang, L, Wirth, C, Woods, M, Xiang, W, De Aquino Ximenes, F, Xu, Y, Yamada, T & Zavala, M A 2022, ' Tallo–a global tree allometry and crown architecture database ', Global Change Biology . https://doi.org/10.1111/gcb.16302
Global Change Biology 28 (2022) 17
Global change biology, 28(17), 5254-5268. Wiley-Blackwell
Global Change Biology
Funder: Agua Salud Project
Funder: U.S. Department of Energy; Id: http://dx.doi.org/10.13039/100000015
Funder: CAPES; Id: http://dx.doi.org/10.13039/501100002322
Data capturing multiple axes of tree size and shape, such as a tree's ste
Funder: U.S. Department of Energy; Id: http://dx.doi.org/10.13039/100000015
Funder: CAPES; Id: http://dx.doi.org/10.13039/501100002322
Data capturing multiple axes of tree size and shape, such as a tree's ste
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::40d4bf8a561b3b9b5e18c6ba4ca6bb49
https://www.repository.cam.ac.uk/handle/1810/338391
https://www.repository.cam.ac.uk/handle/1810/338391
Autor:
Jalil Karami, Hasan Kaboli, Khaled Ahmadaali, Mohammad Aminpour, A Valipour, Mohsen Javanmiri Pour, Arshad Ali, Anvar Sanaei, Omid Asadi Nalivan, Yousef Askari
Publikováno v:
The Science of the total environment. 723
Strong competitor (i.e. big-sized) trees are globally crucial for promoting aboveground biomass. Still, we do not fully understand the simultaneous influences of different levels of competitor (i.e. strong, moderate, medium and weak) trees at stand l
Autor:
Mohsen Javanmiri Pour, Yousef Askari, Omid Asadi Nalivan, Arshad Ali, Jalil Karami, Khaled Ahmadaali, Mohammad Aminpour, A Valipour, Anvar Sanaei, Mingshi Li, Hasan Kaboli
Publikováno v:
The Science of the total environment. 706
Understanding the impacts of multiple climatic and edaphic factors on forest diversity, structure and biomass is crucial to predicting how forests will react to global environmental change. Here, we addressed how do forest structural attributes (i.e.
Autor:
Leila Kashi Zenouzi, Seyed Hasan Kaboli, Kazem Khavazi, Mohammad Sohrabi, Mohammad Khosroshahi, Ulf Karsten
Publikováno v:
Environmental Health Engineering and Management, Vol 8, Iss 3, Pp 153-167 (2021)
Background: Biological soil crusts (BSCs) that are able to produce sticky extracellular polymeric substances (EPS) play an important role in the formation of soil aggregates, thereby, reducing soil erosion. In this study, experiments were undertake
Externí odkaz:
https://doaj.org/article/18b12a430df94db1b04dcf0bec45cfbe