Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density

Perennial tree crops develop through growth phases that differ in the rate of biomass and carbon build-up, and in the relative contribution of various pools and fluxes to nutrient cycles and nutrient supply for plant growth. To define these phases in peach palm (Bactris gasipaes) agroecosystems for heart-of-palm production, we estimated biomass in stands up to 20 years of age in the humid tropical lowlands of Costa Rica. Dry biomass of foliage, petioles and stems were estimated using allometric equations which have been previously generated by applying nonlinear seemingly unrelated regression procedures to data from harvests of peach palm plants. Total aboveground biomass trajectories through time were fitted by a three-parameter logistic function with total biomass stabilizing at about 6.3 Mg/ha. There were no differences in standing biomass between stands on Andisols and Ultisols. Trends in nutrient pools through time were similar to those for biomass. Peach palm plant bases and coarse roots are relatively large fractions of total plant biomass, and consequently of sequestered carbon and nutrients. The amount of carbon per unit area in plant tissue in peach palm agroecosystems in the Atlantic region of Costa Rica was about 8% of the carbon in forests of the same region.

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Main Authors: 43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos), 49897 Boniche, J. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica), 95017 Molina, E. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica), 132636 Yost, R.S. (autor/a) University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, San José (Costa Rica)
Format: Texto biblioteca
Language:eng
Published: Amsterdam Elsevier 2002
Subjects:BACTRIS GASIPAES, ARECACEAE, AGROECOSISTEMAS, BIOMASA, CARBONO, ALMACENAMIENTO, PALMITOS, CICLO NUTRIENTES EN ECOSISTEMAS, SECUESTRO DE CARBONO, ALOMETRIA, MODELOS, MODELOS DE REGRESION, ECUACIONES ALOMETRICAS, BIOMASA AEREA, NUTRIENTES, AGROECOSYSTEMS, BIOMASS, CARBON, STORAGE, PALM HEARTS, ALLOMETRY, MODELS, ALLOMETRIC EQUATIONS, NUTRIENTS,
Online Access:http://orton.catie.ac.cr/repdoc/A11146i/A11146i.pdf
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spelling KOHA-OAI-BVE:1361602022-03-15T05:37:11ZBactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density 43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos) 49897 Boniche, J. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica) 95017 Molina, E. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica) 132636 Yost, R.S. (autor/a) University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, San José (Costa Rica) textAmsterdam Elsevier2002engpdfPerennial tree crops develop through growth phases that differ in the rate of biomass and carbon build-up, and in the relative contribution of various pools and fluxes to nutrient cycles and nutrient supply for plant growth. To define these phases in peach palm (Bactris gasipaes) agroecosystems for heart-of-palm production, we estimated biomass in stands up to 20 years of age in the humid tropical lowlands of Costa Rica. Dry biomass of foliage, petioles and stems were estimated using allometric equations which have been previously generated by applying nonlinear seemingly unrelated regression procedures to data from harvests of peach palm plants. Total aboveground biomass trajectories through time were fitted by a three-parameter logistic function with total biomass stabilizing at about 6.3 Mg/ha. There were no differences in standing biomass between stands on Andisols and Ultisols. Trends in nutrient pools through time were similar to those for biomass. Peach palm plant bases and coarse roots are relatively large fractions of total plant biomass, and consequently of sequestered carbon and nutrients. The amount of carbon per unit area in plant tissue in peach palm agroecosystems in the Atlantic region of Costa Rica was about 8% of the carbon in forests of the same region.31 referencias bibliográficas en las páginas 21-22.Perennial tree crops develop through growth phases that differ in the rate of biomass and carbon build-up, and in the relative contribution of various pools and fluxes to nutrient cycles and nutrient supply for plant growth. To define these phases in peach palm (Bactris gasipaes) agroecosystems for heart-of-palm production, we estimated biomass in stands up to 20 years of age in the humid tropical lowlands of Costa Rica. Dry biomass of foliage, petioles and stems were estimated using allometric equations which have been previously generated by applying nonlinear seemingly unrelated regression procedures to data from harvests of peach palm plants. Total aboveground biomass trajectories through time were fitted by a three-parameter logistic function with total biomass stabilizing at about 6.3 Mg/ha. There were no differences in standing biomass between stands on Andisols and Ultisols. Trends in nutrient pools through time were similar to those for biomass. Peach palm plant bases and coarse roots are relatively large fractions of total plant biomass, and consequently of sequestered carbon and nutrients. The amount of carbon per unit area in plant tissue in peach palm agroecosystems in the Atlantic region of Costa Rica was about 8% of the carbon in forests of the same region.BACTRIS GASIPAES ARECACEAEAGROECOSISTEMASBIOMASA CARBONOALMACENAMIENTOPALMITOSCICLO NUTRIENTES EN ECOSISTEMASSECUESTRO DE CARBONOALOMETRIA MODELOSMODELOS DE REGRESIONECUACIONES ALOMETRICASBIOMASA AEREANUTRIENTESAGROECOSYSTEMSBIOMASSCARBONSTORAGEPALM HEARTSALLOMETRYMODELSALLOMETRIC EQUATIONSNUTRIENTSField Crops Researchhttp://orton.catie.ac.cr/repdoc/A11146i/A11146i.pdf
institution IICA
collection Koha
country Costa Rica
countrycode CR
component Bibliográfico
access En linea
En linea
databasecode cat-sibiica
tag biblioteca
region America Central
libraryname Sistema de Bibliotecas IICA/CATIE
language eng
topic BACTRIS GASIPAES
ARECACEAE
AGROECOSISTEMAS
BIOMASA
CARBONO
ALMACENAMIENTO
PALMITOS
CICLO NUTRIENTES EN ECOSISTEMAS
SECUESTRO DE CARBONO
ALOMETRIA
MODELOS
MODELOS DE REGRESION
ECUACIONES ALOMETRICAS
BIOMASA AEREA
NUTRIENTES
AGROECOSYSTEMS
BIOMASS
CARBON
STORAGE
PALM HEARTS
ALLOMETRY
MODELS
ALLOMETRIC EQUATIONS
NUTRIENTS
BACTRIS GASIPAES
ARECACEAE
AGROECOSISTEMAS
BIOMASA
CARBONO
ALMACENAMIENTO
PALMITOS
CICLO NUTRIENTES EN ECOSISTEMAS
SECUESTRO DE CARBONO
ALOMETRIA
MODELOS
MODELOS DE REGRESION
ECUACIONES ALOMETRICAS
BIOMASA AEREA
NUTRIENTES
AGROECOSYSTEMS
BIOMASS
CARBON
STORAGE
PALM HEARTS
ALLOMETRY
MODELS
ALLOMETRIC EQUATIONS
NUTRIENTS
spellingShingle BACTRIS GASIPAES
ARECACEAE
AGROECOSISTEMAS
BIOMASA
CARBONO
ALMACENAMIENTO
PALMITOS
CICLO NUTRIENTES EN ECOSISTEMAS
SECUESTRO DE CARBONO
ALOMETRIA
MODELOS
MODELOS DE REGRESION
ECUACIONES ALOMETRICAS
BIOMASA AEREA
NUTRIENTES
AGROECOSYSTEMS
BIOMASS
CARBON
STORAGE
PALM HEARTS
ALLOMETRY
MODELS
ALLOMETRIC EQUATIONS
NUTRIENTS
BACTRIS GASIPAES
ARECACEAE
AGROECOSISTEMAS
BIOMASA
CARBONO
ALMACENAMIENTO
PALMITOS
CICLO NUTRIENTES EN ECOSISTEMAS
SECUESTRO DE CARBONO
ALOMETRIA
MODELOS
MODELOS DE REGRESION
ECUACIONES ALOMETRICAS
BIOMASA AEREA
NUTRIENTES
AGROECOSYSTEMS
BIOMASS
CARBON
STORAGE
PALM HEARTS
ALLOMETRY
MODELS
ALLOMETRIC EQUATIONS
NUTRIENTS
43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos)
49897 Boniche, J. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
95017 Molina, E. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
132636 Yost, R.S. (autor/a) University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, San José (Costa Rica)
Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
description Perennial tree crops develop through growth phases that differ in the rate of biomass and carbon build-up, and in the relative contribution of various pools and fluxes to nutrient cycles and nutrient supply for plant growth. To define these phases in peach palm (Bactris gasipaes) agroecosystems for heart-of-palm production, we estimated biomass in stands up to 20 years of age in the humid tropical lowlands of Costa Rica. Dry biomass of foliage, petioles and stems were estimated using allometric equations which have been previously generated by applying nonlinear seemingly unrelated regression procedures to data from harvests of peach palm plants. Total aboveground biomass trajectories through time were fitted by a three-parameter logistic function with total biomass stabilizing at about 6.3 Mg/ha. There were no differences in standing biomass between stands on Andisols and Ultisols. Trends in nutrient pools through time were similar to those for biomass. Peach palm plant bases and coarse roots are relatively large fractions of total plant biomass, and consequently of sequestered carbon and nutrients. The amount of carbon per unit area in plant tissue in peach palm agroecosystems in the Atlantic region of Costa Rica was about 8% of the carbon in forests of the same region.
format Texto
topic_facet BACTRIS GASIPAES
ARECACEAE
AGROECOSISTEMAS
BIOMASA
CARBONO
ALMACENAMIENTO
PALMITOS
CICLO NUTRIENTES EN ECOSISTEMAS
SECUESTRO DE CARBONO
ALOMETRIA
MODELOS
MODELOS DE REGRESION
ECUACIONES ALOMETRICAS
BIOMASA AEREA
NUTRIENTES
AGROECOSYSTEMS
BIOMASS
CARBON
STORAGE
PALM HEARTS
ALLOMETRY
MODELS
ALLOMETRIC EQUATIONS
NUTRIENTS
author 43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos)
49897 Boniche, J. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
95017 Molina, E. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
132636 Yost, R.S. (autor/a) University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, San José (Costa Rica)
author_facet 43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos)
49897 Boniche, J. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
95017 Molina, E. (autor/a) Universidad de Costa Rica. Centro de Investigaciones Agronómicas José, San José (Costa Rica)
132636 Yost, R.S. (autor/a) University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, San José (Costa Rica)
author_sort 43912 Ares, A. University of Hawaii at Manoa. Department of Tropical Plant and Soil Sciences, Honolulu (Estados Unidos)
title Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
title_short Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
title_full Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
title_fullStr Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
title_full_unstemmed Bactris gasipaes agroecosystems for heart-of-palm production in Costa Rica : changes in biomass, nutrient and carbon pools with stand age and plant density
title_sort bactris gasipaes agroecosystems for heart-of-palm production in costa rica : changes in biomass, nutrient and carbon pools with stand age and plant density
publisher Amsterdam Elsevier
publishDate 2002
url http://orton.catie.ac.cr/repdoc/A11146i/A11146i.pdf
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