*
 

iForest - Biogeosciences and Forestry

*

Impact of rotation length of Eucalyptus globulus Labill. on wood production, kraft pulping, and forest value

Fernando Resquin (1)   , Ismael Fariña (2), Cecilia Rachid-Casnati (1), Agustín Rava (2), Javier Doldán (2), Andrés Hirigoyen (1), Fiorella Inderkum (3), Sofía Alen (3), Virginia Morales Olmos (4), Leonidas Carrasco-Letelier (5)

iForest - Biogeosciences and Forestry, Volume 15, Issue 5, Pages 433-443 (2022)
doi: https://doi.org/10.3832/ifor4040-015
Published: Oct 20, 2022 - Copyright © 2022 SISEF

Research Articles


Most of the wood from Eucalyptus globulus Labill. plantations in Uruguay is harvested for pulp industry at an average age of 11 years. In this study we evaluated the volume and quality of the wood produced and the economic return for owners using different rotation length (from 6 to 13 years) and two different provenances (Jeeralang, Australia and Chivilingo, Chile) in experimental plots planted at two different sites (southwest and southeast of Uruguay). Silvicultural practices, industrial process, and economic aspects of the plantations were evaluated by measuring the following variables: survival, individual and per hectare growth, basic density, cellulose yield, wood consumption, cellulose production per hectare, dry solids content, fiber length, paper resistance, internal rate of return, and soil expectation value. The results showed that an increase in the harvest age generates: (i) an increase in the production of wood and cellulose per hectare at decreasing rates; (ii) an increase in wood density and yield; (iii) a reduction in the consumption of wood and solid contents in the cooking liquor; and (iv) a reduction in economic profitability at the farm level. No differences were found in the fiber length and resistance properties of the paper from wood harvested at different ages.

  Keywords


Eucalyptus globulus, Harvest Age, Pulping Kraft, Fiber Length, Forest Value

Authors’ address

(1)
Fernando Resquin 0000-0002-8141-9617
Cecilia Rachid-Casnati 0000-0002-8621-7061
Andrés Hirigoyen 0000-0002-2116-1095
Programa Nacional de Investigación Forestal, INIA - Instituto Nacional de Investigación Agropecuaria, Ruta 5 km 368, CP 45000,Tacuarembó (Uruguay)
(2)
Ismael Fariña
Agustín Rava
Javier Doldán
Departamento de Proyectos Forestales, Laboratorio Tecnológico del Uruguay, Avenida Italia 6201, 11500, CP 12900, Montevideo (Uruguay)
(3)
Fiorella Inderkum
Sofía Alen
Facultad de Ciencias Agrarias de la Universidad de la Empresa, Av. Dr. Luis Alberto de Herrera 2890, CP 11600 Montevideo (Uruguay)
(4)
Virginia Morales Olmos 0000-0002-3963-7864
PDU Departamento de Ciencias Económicas, CENUR Noreste - Universidad de la República, CP 45000, Tacuarembó (Uruguay)
(5)
Leonidas Carrasco-Letelier 0000-0002-2894-3700
Programa Nacional de Investigación en Producción y Sustentabilidad Ambiental, INIA - Instituto Nacional de Investigación Agropecuaria, Ruta 50 km 11, CP 70000, Colonia (Uruguay)

Corresponding author

 
Fernando Resquin
fresquin@inia.org.uy

Citation

Resquin F, Fariña I, Rachid-Casnati C, Rava A, Doldán J, Hirigoyen A, Inderkum F, Alen S, Morales Olmos V, Carrasco-Letelier L (2022). Impact of rotation length of Eucalyptus globulus Labill. on wood production, kraft pulping, and forest value. iForest 15: 433-443. - doi: 10.3832/ifor4040-015

Academic Editor

Rodolfo Picchio

Paper history

Received: Dec 17, 2021
Accepted: Aug 08, 2022

First online: Oct 20, 2022
Publication Date: Oct 31, 2022
Publication Time: 2.43 months

Breakdown by View Type

(Waiting for server response...)

Article Usage

Total Article Views: 506
(from publication date up to now)

Breakdown by View Type
HTML Page Views: 0
Abstract Page Views: 0
PDF Downloads: 324
Citation/Reference Downloads: 0
XML Downloads: 182

Web Metrics
Days since publication: 546
Overall contacts: 506
Avg. contacts per week: 6.49

Article Citations

Article citations are based on data periodically collected from the Clarivate Web of Science web site
(last update: Nov 2020)

(No citations were found up to date. Please come back later)


 

Publication Metrics

by Dimensions ©

Articles citing this article

List of the papers citing this article based on CrossRef Cited-by.

 
(1)
Alencar GSB (2002)
Produção de celulose relacionada a precocidade na seleção de um hibrido Eucalyptus grandis × Eucalyptus urophylla [Study of wood quality for the cellulose production related to the precocity of a Eucalyptus grandis × Eucalyptus urophylla hybrid selection]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 88. [in Portuguese]
Online | Gscholar
(2)
Barrichelo LEG, Brito JO (1976)
A madeira das espécies de Eucalipto como matéria prima para a industria de celulose e papel [Wood from eucalypts species as raw material for the pulp and paper industry]. Serie Divulgaçao PRODEPEF no. 13, Projeto de Desenvolvimento e Pesquisa Florestal, Brasília, DF, Brazil, pp. 145. [in Portuguese]
Gscholar
(3)
Bassa A (2002)
Processos de polpação kraft convencional e modificado com madeiras de E. grandis e híbrido (E. grandis × E. urophylla) [Conventional and modified pulping process of Eucvalyptus grandis and hybrid (Eucalyptus grandis × Eucalyptus urophylla)]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 120. [in Portuguese]
Online | Gscholar
(4)
Bassa AGMC (2006)
Misturas de madeira de Eucalyptus grandis × Eucalyptus urophylla, Eucalyptus globulus e Pinus taeda para produção de celulose kraft através do processo lo-solids® [Mixture of Eucalyptus grandis × Eucalyptus urophylla, Eucalyptus globulus and Pinus taeda wood chips for the production of Kraft pulp through Lo-Solids® process]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 170. [in Portuguese]
Online | Gscholar
(5)
Carrillo I, Aguayo MG, Valenzuela S, Elissetche JP (2015)
Variations in wood anatomy and fiber biometry of Eucalyptus globulus genotypes. Wood Research 60 (1): 1-10.
Gscholar
(6)
Castaño JP, Ceroni A, Furest M, Aunchayna J, Bidegain R (2011)
Caracterización agroclimática del Uruguay 1980-2009. [Agroclimatic Characterization of Uruguay 1980-2009]. Serie Técnica INIA 193: 33. pp. 40. [in Spanish]
Online | Gscholar
(7)
Dieste A, Baño V, Cabrera MN, Clavijo L, Palombo V, Moltini G, Casella F (2018)
Forest-based bioeconomy areas. Strategic products from a technological point of view. Universidad de la República, Facultad de Ingeniería, Montevideo, Uruguay, pp. 64.
Gscholar
(8)
Dieste A, Cabrera MN, Clavijo L, Cassella N (2019)
Analysis of wood products from an added value perspective: the Uruguayan forestry case. Maderas: Ciencia y Tecnologia 21 (3): 305-16.
CrossRef | Gscholar
(9)
Doldán J (2003)
Indicadores de calidad de madera Eucalyptus grandis de Río Negro, Uruguay. Contenido de humedad, densidad, contracción y largo de fibras [Wood quality indicators Eucalyptus grandis from Río Negro, Uruguay. Moisture content, density, shrinkage and fiber length]. Proyecto de Productos Forestales Tecnología de Ensayo LATU-JICA (1998-2003), 2003. Informe de Investigación no 9, Publicaciones LATU, Montevideo, Uruguay, pp. 42.
Gscholar
(10)
Doldán J (2007)
Evaluación de parámetros de calidad de Eucalyptus globulus y Eucalyptus maidenii de plantaciones uruguayas para pulpa de celulosa [Evaluation of quality parameters of Eucalyptus globulus and Eucalyptus maidenii from Uruguayan plantations for cellulose pulp]. Nota Técnica no. 8, Publicaciones LATU, Montevideo, Uruguay, pp. 8.
Gscholar
(11)
Foelkel CEB (1978)
Madeira do eucalipto: da floresta ao digestor [Eucalypt wood: from the forest to the digester]. In: “I Congresso Brasileiro Sobre a Qualidade da Madeira. Promoção IPEF - ABCP, XI Congresso Anual Da ABCP”. São Paulo (Brazil) 22-25 Nov 1978. Boletim Informativo IPEF, Piracicaba, Brazil, vol. 6, pp. E1-E25. [in Portuguese]
Gscholar
(12)
Foelkel CEB (2007)
As fibras dos eucaliptos e as qualidades requeridas na celulose kraft para a fabricação de papel [Eucalypt’s fibers and the qualities required in kraft pulp for paper production]. Eucalyptos Online Book and Newsletter, ABTCP - Associação Brasileira Técnica de Celulose e Papel, pp. 48. [in Portuguese]
Online | Gscholar
(13)
Foelkel CEB (2009a)
Propriedades papeleiras das Árvores, madeiras e fibras celulósicas dos eucaliptos [Paper properties of eucalypts trees, wood and cellulosic fibers]. Eucalyptus Online Book and Newsletter, ABTCP - Associação Brasileira Técnica de Celulose e Papel, pp. 111. [in Portuguese]
Online | Gscholar
(14)
Foelkel CEB (2009b)
Individualização das fibras da madeira do eucalipto para a produção de celulose kraft [Individualization of eucalypts wood fibers for kraft cellulose production]. Eucalyptos Online Book and Newsletter, ABTCP - Associação Brasileira Técnica de Celulose e Papel, pp. 108. [in Portuguese]
Online | Gscholar
(15)
Gomide JL, Colodette JL, Oliveira CR, Silva CM (2005)
Caracterização tecnológica, para produção de celulose, da nova geração de clones de Eucalyptus do Brasil [Technological characterization of the new generation of Eucalyptus clones in Brazil for kraft pulp production]. Árvore 29 (1): 129-37.
Gscholar
(16)
Hirigoyen A, Franco J, Diéguez U (2018)
Modelo dinámico de rodal para Eucalyptus globulus (L.) en Uruguay [Dynamic stand model for Eucalyptus globulus (L.) in Uruguay]. Agrociencia Uruguay 22 (1): 63-80.
Gscholar
(17)
ISO (2005)
ISO 5269-1:2005: Pulps - Preparation of laboratory sheets for physical testing - Part 1: Conventional sheet-former method. Geneva, Switzerland, pp. 7.
Gscholar
(18)
ISO (2002)
ISO 5264-2:2002: Pulps - Laboratory beating - Part 2: PFI mill method. Geneva, Switzerland, pp. 16.
Gscholar
(19)
ISO (1998)
ISO 5270:1998: Pulps - Laboratory sheets -Determination of physical properties. Geneva, Switzerland, 8p.
Gscholar
(20)
Kibblewhite RP, Johnson BI, Shelbourne CJA (2001)
Kraft pulp qualities of Eucalyptus nitens, E. globulus, and E. maidenii, at ages 8 and 11 years. New Zealand Forest Research Institute 30 (3): 447-57.
Gscholar
(21)
Kottek M, Grieser J, Beck C, Rudolf B, Rubel F (2006)
World map of the Köppen-Geiger climate classification updated. Meteorologische Zeitschrift 15 (3): 259-63.
CrossRef | Gscholar
(22)
Leonello EC, Palma HAL, Ballarin AW (2008)
Delimitação da madeira juvenil e adulta de Eucalyptus grandis em São Paulo, Brasil [Juvenile-mature wood demarcation in Eucalyptus grandis in São Paulo, Brasil]. Revista Forestal Venezolana 52 (1): 93-98. [in Portuguese]
Gscholar
(23)
Lopes ED, Laia ML, Dos Santos AS, Soares GM, Leite RWP, Martins NS (2017)
Influência do espaçamento de plantio na produção energética de clones de Corymbia e Eucalyptus [Influence of planting spacing on energy production of Corymbia and Eucalyptus clones]. Floresta 47 (1): 95-104. [in Portuguese]
CrossRef | Gscholar
(24)
Magaton ADA, Colodette JL, Gouvêa ADFG, Gomide JL, Muguet MCDS, Pedrazzi C (2009)
Eucalyptus wood quality and its impact on kraft pulp production and use. Tappi Journal (Aug 2009): 32-40.
Gscholar
(25)
Megown KA, Turner P, Male JR, Retief JR (2000)
The impact of site index and age on the wood, pulp and pulping properties of a Eucalyptus grandis clone (Tag 5). In: Proceedings of the IUFRO Conference “Forest Genetics for the Next Millennium”. Durban (South Africa) 8-13 Oct 2000, pp. 169-173.
Gscholar
(26)
MGAP/DIEA (2020)
Anuario Estadístico Agropecuario [Agricultural statistical yearbook]. Montevideo, Uruguay, pp. 270. [in Spanish]
Gscholar
(27)
Miranda I, Pereira H (2002)
Variation of pulpwood quality with provenances and site in Eucalyptus globulus. Annals of Forest Science 59: 283-291.
CrossRef | Gscholar
(28)
Mokfienski A, Colodette JL, Gomide JL, Carvalho AML (2008)
Relative importance of wood density and carbohydrate content on pulping yield and product quality. Ciência Florestal 18 (3): 401-413.
Gscholar
(29)
Morais PHD (2008)
Efeito da idade da madeira de eucalipto na sua química e polpabilidade, e branqueabilidade e propriedades fisicas da polpa [Effect of age of the wood of eucalypt in its chemical and pulpability, and bleachability and properties of the pulp]. Universidade Federal de Viçosa, Minas Gerais, Brasil, pp. 79. [in Portuguese]
Online | Gscholar
(30)
Morais PHD, Longue Junior D, Colodette JL, Morais EHC, Jardim CM (2017)
Influence of clone harvesting age of Eucalyptus grandis and hybrids of Eucalyptus grandis × Eucalyptus urophylla in the wood chemical composition and in kraft pulpability. Ciência Florestal 27 (1): 237-248.
Gscholar
(31)
Palermo GPM, Latorraca JVF, De Carvalho AM, Calonego FW, Severo ETD (2015)
Anatomical properties of Eucalyptus grandis wood and transition age between the juvenile and mature woods. European Journal of Wood and Wood Products 73 (6): 775-780.
CrossRef | Gscholar
(32)
R Core Team (2020)
R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria.
Online | Gscholar
(33)
Reina L, Galetta A, Vinciguerra V, Resquin F (2014)
The relationship between Eucalyptus grandis lignin structure and kraft pulping parameters. Journal of Analytical and Applied Pyrolysis 107: 284-288.
CrossRef | Gscholar
(34)
Rencoret J, Gutiérrez A, Nieto L, Jiménez-Barbero J, Faulds CB, Kim H, Ralph J, Martínez AT, Del Río JC (2011)
Lignin composition and structure in young versus adult Eucalyptus globulus plants. Plant Physiology 155 (2): 667-682.
CrossRef | Gscholar
(35)
Resquin F, Navarro-Cerrillo RM, Carrasco-Letelier L, Rachid-Casnati C (2019)
Influence of contrasting stocking densities on the dynamics of above-ground biomass and wood density of Eucalyptus benthamii, Eucalyptus dunnii, and Eucalyptus grandis for bioenergy in Uruguay. Forest Ecology and Management 438: 63-74.
CrossRef | Gscholar
(36)
Resquin F, Barrichelo LEG, Da Silva Jr FG, Brito JO, Sansigolo CA (2006)
Wood quality for kraft pulping of Eucalyptus globulus origins planted in Uruguay. Scientia Forestalis/Forest Sciences, no 72: 57-66.
Gscholar
(37)
Resquin F, Fariña I, Rachid C, Rava A, Doldán J (2012)
Influencia de la edad de corte en el pulpeo de Eucalyptus globulus plantado en Uruguay [Influence of harvest age on kraft pulp production for Eucalyptus globulus planted in Uruguay]. Agrociencia Uruguay 16 (2): 27-38. [in Spanish]
Gscholar
(38)
Río JC, Gutiérrez A, Hernando M, Landín P, Romero J, Martínez AT (2005)
Determining the influence of eucalypt lignin composition in paper pulp yield using Py-GC/MS. Journal of Analytical and Applied Pyrolysis 74: 110-115.
CrossRef | Gscholar
(39)
Santos MD (2011)
Efeito do espaçamento de plantio na biomassa do fuste de um clone híbrido interespecífico de Eucalyptus grandis e Eucalyptus urophylla [Effect of the plantation spacing in the stem biomass of a hybrid clone interspecific of Eucalyptus grandis and Eucalyptus urophylla]. Universidade Estadual Paulista “Júlio de Mesquita filho”, Faculdade de Ciências Agronômicas, Campus de Botucatu, São Paulo, Brasil, pp. 152. [in Portuguese]
Online | Gscholar
(40)
Santos SR (2005)
Influência da qualidade da madeira de híbridos de Eucalyptus grandis × Eucalyptus urophylla e do processo kraft de polpação na qualidade da polpa branqueada [Wood quality influence of Eucalyptus grandis × Eucalyptus urophylla hybrids and kraft pulping process in bleached pulp quality]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 178. [in Portuguese]
Online | Gscholar
(41)
Silva Jr FG (1994)
Conversão do processo kraft em soda DDA (Sal Disódico de 1.4-di-hidro-9-10-di-hidroxiantraceno) para madeira de Eucalipto [Conversion of the Kraft process in soda-DDA (Di-sodium salt of 1.4-dihydroxianthracene) for Eucalyptus]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 194. [in Portuguese]
Online | Gscholar
(42)
Silva MG (2011)
Produtividade, idade e qualidade da madeira de eucalyptus destinada à produção de polpa celulósica branqueada [Productivity, age and wood quality of Eucalyptus for bleached pulp production]. Universidade de São Paulo, Escola Superior de Agricultura “Luiz de Queiroz”, Piracicaba, São Paulo, Brasil, pp. 95. [in Portuguese]
Online | Gscholar
(43)
Souza MT, Lima JT, Soares BCD, Goulart SL, Lima LC (2017)
Statistical delimitation of juvenile and mature wood of Eucalyptus and Corymbia. Scientia Forestalis/Forest Sciences 45 (116): 611-618.
Gscholar
(44)
TAPPI (2006)
Standard test methods. Technical Association of the Pulp and Paper Industry - TAPPI, Atlanta, GA, USA. [Cd-rom]
Gscholar
(45)
Tomazello Filho M (1987)
Variação radial da densidade básica em estrutura anatômica da madeira do Eucalyptus globulus, E. pellita e E. acmenioides [Radial variation of wood density in anatomical structure of Eucalyptus globulus, E. pellita and E. acmenioides wood]. Ipef 36: 35-42. [in Portuguese]
Gscholar
(46)
Trevisan R, Rosa M, Haselein CR, Santini J, Gatto DA (2017)
Dimensões das fibras e sua relação com a idade de transição entre lenho juvenil e adulto de Eucalyptus grandis W. Hill Ex Maiden [Fiber dimensions and their relationship with the transition age between juvenile and mature wood of Eucalyptus grandis W. Hill ex Maiden]. Ciencia Florestal 27 (4): 1385-1393. [in Portuguese]
Gscholar
(47)
Villacura L (2012)
Determinación de la edad de rotación óptima para dos variedades híbridas del género Populus ubicadas en el valle central de la Región Del Maule [Determination of the optimal rotation age for two hybrid varieties of the genus Populus Located in the central valley of the Maule Region]. Universidad Austral de Chile, Facultad de Ciencias Forestales, Valdivia, Chile, pp. 70. [in Spanish]
Online | Gscholar
(48)
Xie Y, Wu H, Zeng Z, Lai Y (2000)
Effect of wood age on the pulping characteristic and chemical composition of Eucalyptus globulus. Chemistry and Industry of Forest Products 20 (1): 21-26.
Gscholar
 

This website uses cookies to ensure you get the best experience on our website. More info