Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland
Biomass collection could contribute to the reduction of wildfire prevention costs by obtaining solid biofuels from shrublands that pose a high fire risk, using mechanical harvesting methods that have not been sufficiently tested in shrub formations. The objective of this study is to evaluate the per...
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doaj-eaa2358b8f2a47c385552e4d9e9155852021-01-28T08:22:31ZengUniversity of Zagreb, Faculty of ForestryCroatian Journal of Forest Engineering1845-57191848-96722020-01-0141211310.5552/crojfe.2020.68815Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) ShrublandRaquel Bados0Eduardo Tolosana1Luis Saúl Esteban2CEDER-CIEMAT Autovía A-15, salida 56 42290 Lubia, Soria SPAINUniversidad Politécnica de Madrid E.T.S.I. Montes, Forestal y del Medio Natural Campus Ciudad Universitaria C/ José Antonio Novais 10 28010 Madrid SPAINCEDER-CIEMAT Autovía A-15, salida 56 42290 Lubia, Soria SPAINBiomass collection could contribute to the reduction of wildfire prevention costs by obtaining solid biofuels from shrublands that pose a high fire risk, using mechanical harvesting methods that have not been sufficiently tested in shrub formations. The objective of this study is to evaluate the performance of a harvester-baler system (Biobaler WB55) for collecting rockrose (Cistus laurifolius L.) shrublands biomass, to asses the influence of the cutting rotor tool (blades or hammers) on weight and surface productivities and operating costs, as well as to determine the influence of the standing shrub biomass load on productivity and biomass collection efficiency. A 31-hour test was conducted on 21 ha of a typical Mediterranean shrubland in the centre of Spain. Data collection included time study, daily collected area, fuel consumption and bale measurements. Samples of fresh biomass from bales were collected for the determination of moisture content. The average collected biomass was 2.3 tDM·ha-1 (tonnes of dry matter per hectare), with an average productivity of 1.6 tDM·PMH-1 and an average yield of 0.7 ha·PMH-1. Better results were obtained with blades than with hammers in the cutting rotor tool (35% more collected biomass, 42% higher weight productivity, 61% higher collection efficiency and 14% greater surface productivity). The average harvest-baling costs with blades were estimated at 99.5 €∙PMH-1, 142.1 €∙ha-1 and 53.9 €∙tDM-1 (34.0 €∙tWM-1, € per tonne of wet matter), and with hammers 91.5 €∙PMH-1, 152.5 €∙ha-1 and 81.4 €∙tDM-1 (51.1 €∙tWM-1). The analysed harvester-baler was operated without difficulty in this type of vegetation and was able to collect up to 31% of the shrub biomass load in the study area. The amount of uncollected biomass and the decrease in biomass collection efficiency, as shrub biomass load increases, suggest that possible mechanical improvements are needed to improve biomass collection efficiency.https://hrcak.srce.hr/file/348774forest biomass, wildfire, fuel reduction, clearing, debrushing, baling, cost analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Raquel Bados Eduardo Tolosana Luis Saúl Esteban |
spellingShingle |
Raquel Bados Eduardo Tolosana Luis Saúl Esteban Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland Croatian Journal of Forest Engineering forest biomass, wildfire, fuel reduction, clearing, debrushing, baling, cost analysis |
author_facet |
Raquel Bados Eduardo Tolosana Luis Saúl Esteban |
author_sort |
Raquel Bados |
title |
Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland |
title_short |
Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland |
title_full |
Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland |
title_fullStr |
Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland |
title_full_unstemmed |
Evaluation of a Harvester-Baler System Operating in a Rockrose (Cistus laurifolius L.) Shrubland |
title_sort |
evaluation of a harvester-baler system operating in a rockrose (cistus laurifolius l.) shrubland |
publisher |
University of Zagreb, Faculty of Forestry |
series |
Croatian Journal of Forest Engineering |
issn |
1845-5719 1848-9672 |
publishDate |
2020-01-01 |
description |
Biomass collection could contribute to the reduction of wildfire prevention costs by obtaining solid biofuels from shrublands that pose a high fire risk, using mechanical harvesting methods that have not been sufficiently tested in shrub formations. The objective of this study is to evaluate the performance of a harvester-baler system (Biobaler WB55) for collecting rockrose (Cistus laurifolius L.) shrublands biomass, to asses the influence of the cutting rotor tool (blades or hammers) on weight and surface productivities and operating costs, as well as to determine the influence of the standing shrub biomass load on productivity and biomass collection efficiency.
A 31-hour test was conducted on 21 ha of a typical Mediterranean shrubland in the centre of Spain. Data collection included time study, daily collected area, fuel consumption and bale measurements. Samples of fresh biomass from bales were collected for the determination of moisture content. The average collected biomass was 2.3 tDM·ha-1 (tonnes of dry matter per hectare), with an average productivity of 1.6 tDM·PMH-1 and an average yield of 0.7 ha·PMH-1. Better results were obtained with blades than with hammers in the cutting rotor tool (35% more collected biomass, 42% higher weight productivity, 61% higher collection efficiency and 14% greater surface productivity). The average harvest-baling costs with blades were estimated at 99.5 €∙PMH-1, 142.1 €∙ha-1 and 53.9 €∙tDM-1 (34.0 €∙tWM-1, € per tonne of wet matter), and with hammers 91.5 €∙PMH-1, 152.5 €∙ha-1 and 81.4 €∙tDM-1 (51.1 €∙tWM-1).
The analysed harvester-baler was operated without difficulty in this type of vegetation and was able to collect up to 31% of the shrub biomass load in the study area. The amount of uncollected biomass and the decrease in biomass collection efficiency, as shrub biomass load increases, suggest that possible mechanical improvements are needed to improve biomass collection efficiency. |
topic |
forest biomass, wildfire, fuel reduction, clearing, debrushing, baling, cost analysis |
url |
https://hrcak.srce.hr/file/348774 |
work_keys_str_mv |
AT raquelbados evaluationofaharvesterbalersystemoperatinginarockrosecistuslaurifoliuslshrubland AT eduardotolosana evaluationofaharvesterbalersystemoperatinginarockrosecistuslaurifoliuslshrubland AT luissaulesteban evaluationofaharvesterbalersystemoperatinginarockrosecistuslaurifoliuslshrubland |
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