Behavior of organic carbon organic carbon, according to the use of Brown Soils of "La Rosita" farm
Main Article Content
Abstract
Considering the current importance of the change of organic carbon in soils, according to their management, a study of the change in the content of Organic Carbon Reserves (OCR) in Cambisols and Vertisols soils was carried out, as a reference of a landscape of the Jaruco-Campo Florido pediplane ecosystem, with tropical climate of alternating humidity, in Mayabeque province, Cuba. It was found that in vertic Cambisols soils, under mango grove (Mangifera indica) with pastures and with pastures only, OCR content increases in 1.87 t ha-1 year-1, for the 0-30 cm layer of the upper thickness of the soil. In these same soils under cultivation, there are losses, in the 0-30 cm layer, from 0.53 to 1.20 t ha year in OCR. It is also shown that in mellow Vertisols, under mango grove (Mangifera indica), or under pasture, the organic carbon content increases between 0.11 to 0.14 t ha year, for the 0-30 cm layer of the upper soil thickness; but in the variant under cultivation for 10 years, it decreases to 1.92 t ha year, for the same 0-30 cm layer.
Article Details
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Those authors who have publications with this journal accept the following terms of the License Attribution-NonCommercial 4.0 International (CC BY-NC 4.0):
You are free to:
- Share — copy and redistribute the material in any medium or format
- Adapt — remix, transform, and build upon the material
The licensor cannot revoke these freedoms as long as you follow the license terms.
Under the following terms:
- Attribution — You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use.
- NonCommercial — You may not use the material for commercial purposes.
- No additional restrictions — You may not apply legal terms or technological measures that legally restrict others from doing anything the license permits.
The journal is not responsible for the opinions and concepts expressed in the works, they are the sole responsibility of the authors. The Editor, with the assistance of the Editorial Committee, reserves the right to suggest or request advisable or necessary modifications. They are accepted to publish original scientific papers, research results of interest that have not been published or sent to another journal for the same purpose.
The mention of trademarks of equipment, instruments or specific materials is for identification purposes, and there is no promotional commitment in relation to them, neither by the authors nor by the publisher.
References
Jiménez AH, Macías LV, Basurto CAN, Mantuano FWV, Cedeño AMG, Arrieta MV, et al. Impactos del cambio de uso de la tierra en la microcuenca Membrillo, Manabí, Ecuador. Cultivos Tropicales. 2017;38(1):59-65.
Viciedo DO, Hernández A, Rodríguez M, Lizcano R, Calero A, Peña K. Effects of land-use change on Nitisols properties in a tropical climate. Revista Facultad Nacional de Agronomía Medellín. 2018;71(3):8601-8.
Bernal-Fundora A, Hernández-Jiménez A. Influencia de diferentes sistemas de uso del suelo sobre su estructura.
Cultivos Tropicales. 2017;38(4):50-7.
Lal R, Follett RF, Stewart BA, Kimble JM. Soil carbon sequestration to mitigate climate change and advance food security. Soil science. 2007;172(12):943-56.
Cerri CC, Bernoux M, Blair GJ. ‘Reservas y flujo de carbono en sistemas naturales y agrícolas del Brasil y las implicaciones para el balance global de CO2. Terra Latinoamericana. 1996;14(1):1-12.
Acevedo DC, Hernández Acosta E, Maldonado Torres R, Álvarez Sánchez ME, Acevedo DC, Hernández Acosta E, et al. Variabilidad espacial del carbono en un suelo después de 10 años de retiro e incorporación de residuos de cosecha. Terra Latinoamericana. 2015;33(3):199-208.
Bojórquez Serrano JI, Castillo Pacheco LA, Hernández Jiménez A, García Paredes JD, Madueño Molina A. Cambios en las reservas de carbono orgánico del suelo bajo diferentes coberturas. Cultivos Tropicales. 2015;36(4):63-9.
Hunziker M, Caviezel C, Kuhn NJ. Shrub encroachment by green alder on subalpine pastures: Changes in mineral soil organic carbon characteristics. Catena. 2017;157: 35-46.
Fujisaki K, Perrin A-S, Garric B, Balesdent J, Brossard M. Soil organic carbon changes after deforestation and agrosystem establishment in Amazonia: An assessment by diachronic approach. Agriculture, Ecosystems & Environment. 2017;245:63-73.
Hernández Jiménez A. Ecosistemas y suelos de laprovincia de Mayabeque, Cuba. In Instituto Nacional de Ciencias Agrícolas; 2020. p. 19.
Hernández-Jiménez A, Vargas-Blandino D, BojórquezSerrano JI, García-Paredes JD, Madueño-Molina A, Morales-Díaz M. Carbon losses and soil property changes in ferralic Nitisols from Cuba under different coverages. Scientia Agricola. 2017;74:311-6.
Carnero-Lazo G, Hernández-Jiménez A, Terry-Alfonso E,Bojórquez-Serrano JI. Changes in organic carbon stocks in lixiviated red ferralitic soils from Mayabeque, Cuba. Revista bio ciencias [Internet]. 2019;6. Available from: https://www.scielo.org.mx/scielo.php?pid=S2007-3380201
&script=sci_arttext
López D. Confección de un Sector de Referencia en la finca “La Rosita” de la UJC Nacional como fundamento para el manejo de los suelos en la producción agropecuaria [Internet] [Maestría]. [Mayabeque, Cuba]: Universidad Agraria de la Habana “Fructuoso Rodríguez Pérez”; 2007. 98 p. Available from: https://scholar. google.com.cu/scholar?hl=es&as_sdt=0%2C5&as_vis=1& q=L%C3%B3pez%2C+D.+Confecci%C3%B3n+de+un+Se ctor+de+Referencia+en+la+finca+%E2%80%9CLa+Rosit a%E2%80%9D+de+la+UJC+Nacional+como+fundamento +para+el+manejo+de+los+suelos+en+la+producci%C3%B3n+agropecuaria.+%5BTesis+de+Maestr%C3%ADa%5D %3B+UNAH.+2007.+98+p.&btnG=
Hernández JA, Pérez JJM, Bosch ID, Castro SN. Clasificación de los suelos de Cuba 2015. Mayabeque, Cuba: Ediciones INCA. 2015;93:91.
Hernández A, Pérez JM, Bosch D, Rivero L. Nueva versión de clasificación genética de los suelos de Cuba, 64pp. AGRINFOR, ISBN. 1999;959-246.
Socarrás Armenteros Y, Hernández Jiménez A, Terry Alfonso E, González Cañizares PJ, Sánchez Iznaga ÁL, Delgado Cabrera O. Cambios en las propiedades morfológicas de suelos Pardos sialíticos sometidos a diferentes manejos agrícolas en Cuba. Idesia (Arica). 2019;37(3):47-53.
Verchinin, PV. Fase sólida del suelo como fundamento de su régimen físico. In: Fundamentos de Agrofísica. Rusia: Fizmatlit; 1959. p. 209-404.
Bojórquez JI, Hernández Jiménez A. La captura de Carbono Orgánico en los Suelos. In Nayarit, México: Escuela de Agricultura de la Universidad Autónoma de Nayarit; 2018. p. 24.
Hernández-Jiménez A, Pérez-Jiménez JM, Bosch-Infante D, Speck NC. La clasificación de suelos de Cuba: énfasis en la versión de 2015. Cultivos Tropicales. 2019;40(1).
Tonkonogov VD, Guerasimova MI. Agrogenic pedognesis and soil evolution. In México: Instituto de Geología, UNAM; 2005. p. 79-80. Available from: http://scielo.sld.cu/ scielo.php?script=sci_arttext&pid=S0258-5936201300030 0007.
Blum WE, Schad P, Nortcliff S. Essentials of Soil Science: soil formation, functions, use and classification (World Reference Base, WRB) [Internet]. Germany: Gebr. Borntraeger Science Publishers; 2017. 171 p. Available from: https://books.google.com.cu/books?hl=es&lr=&id=r6 qeEAAAQBAJ&oi=fnd&pg=PP1&dq=21.+Winfried+E.H.+B lum,+Peter+Schad,+Stephen++Nortcliff.+2018:+Essential s+or+Soil+Science.+Soil+formation,+functions,+use+and+ classification+(Woirld+Reference+Base).+Bomtraeger+Science+Publishers,+Stuttgarrt+2018.+ISBN:+978-3-443-01 090-4.171+p%C3%A1ginas.&ots=D3shPvuFqE&sig=wI0QdUPSfvNfwGXWqpLCZlNiCi0&redir_esc=y#v=onepage&q
&f=false
Fuentes Soto AndrésO, Rosales del Toro U, Rodríguez Lozano D, Castellanos Piña N. Poligono Nacional de conservacion de suelos ,agua y bosques [Internet]. 1st ed. Cuba: INFOIIMA; 2019 [cited 18/10/2022]. 315 p. Available from: https://isbn.cloud/9789592850583/poligo no-nacional-de-conservacion-de-suelos-agua-y-bosques/