Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics

Bioenergy can produce at least 25% of the global energy demand to combat climate change through reducing emissions in the energy sector. However, information on the bioenergy production potential of woody species and their suitability for silviculture on various soils in the humid tropics is limited...

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Main Authors: Nils Borchard, Medha Bulusu, Ann-Michelle Hartwig, Matthias Ulrich, Soo Min Lee, Himlal Baral
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Forests
Subjects:
Online Access:http://www.mdpi.com/1999-4907/9/10/594
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spelling doaj-e7f85347ee8c4eb4ba5f0bbff7fb69212020-11-25T00:16:18ZengMDPI AGForests1999-49072018-09-0191059410.3390/f9100594f9100594Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the TropicsNils Borchard0Medha Bulusu1Ann-Michelle Hartwig2Matthias Ulrich3Soo Min Lee4Himlal Baral5Center for International Forestry Research, Jalan CIFOR, Situ Gede, Sindang Barang, Bogor 16115, IndonesiaCenter for International Forestry Research, Jalan CIFOR, Situ Gede, Sindang Barang, Bogor 16115, IndonesiaRuhr-University Bochum, Institute of Geography, Soil Science/Soil Ecology, Universitätsstrasse 150, 44801 Bochum, GermanyInstitute of Plant Production and Agroecology in the Tropics and Subtropics, University of Hohenheim, 70593 Stuttgart, GermanyNational Institute of Forest Science, 57 Heogi-ro, Dongdaemu-gu, Seoul 02455, KoreaCenter for International Forestry Research, Jalan CIFOR, Situ Gede, Sindang Barang, Bogor 16115, IndonesiaBioenergy can produce at least 25% of the global energy demand to combat climate change through reducing emissions in the energy sector. However, information on the bioenergy production potential of woody species and their suitability for silviculture on various soils in the humid tropics is limited. This review aims to identify tree species suitable for bioenergy production under these conditions. Data were compiled from 241 publications and nine freely available databases to assess environmental and silvicultural information on tropical tree species. Energy outputs were derived from the estimated productivity of the reviewed species and ranged from 0.2 to 24.0 Mg biomass ha−1 yr−1, 0.1 to 9.0 Mg bio-oil ha−1 yr−1, and 0.2 to 20.0 Mg sugar ha−1 yr−1, equivalent to an energy yield between 2 and 444 GJ ha−1 yr−1. As such, these bioenergy yields are within the range reported for the lignocellulosic biomass of energy crops cultivated in Europe, the USA, and Brazil. Our review identified some high-yielding species (e.g., Dyera polyphylla (Miq.) Steenis, Metroxylon sagu (Rottb.), Pongamia pinnata (L.)) and leguminous species that could be beneficial in mixed stands (e.g., Elaeis oleifera (Kunth) and Pongamia pinnata) or are suitable species to grow on wet or re-wetted peatland (Dyera polyphylla). However, there are limitations to cultivate woody bioenergy species on wet peatland. Sustainable methods for managing and harvesting forests, particularly on wet or re-wetted peatland, need to be developed.http://www.mdpi.com/1999-4907/9/10/594tropicspaludiculturebiomassbiofuelbiodieselbioethanol
collection DOAJ
language English
format Article
sources DOAJ
author Nils Borchard
Medha Bulusu
Ann-Michelle Hartwig
Matthias Ulrich
Soo Min Lee
Himlal Baral
spellingShingle Nils Borchard
Medha Bulusu
Ann-Michelle Hartwig
Matthias Ulrich
Soo Min Lee
Himlal Baral
Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
Forests
tropics
paludiculture
biomass
biofuel
biodiesel
bioethanol
author_facet Nils Borchard
Medha Bulusu
Ann-Michelle Hartwig
Matthias Ulrich
Soo Min Lee
Himlal Baral
author_sort Nils Borchard
title Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
title_short Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
title_full Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
title_fullStr Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
title_full_unstemmed Screening Potential Bioenergy Production of Tree Species in Degraded and Marginal Land in the Tropics
title_sort screening potential bioenergy production of tree species in degraded and marginal land in the tropics
publisher MDPI AG
series Forests
issn 1999-4907
publishDate 2018-09-01
description Bioenergy can produce at least 25% of the global energy demand to combat climate change through reducing emissions in the energy sector. However, information on the bioenergy production potential of woody species and their suitability for silviculture on various soils in the humid tropics is limited. This review aims to identify tree species suitable for bioenergy production under these conditions. Data were compiled from 241 publications and nine freely available databases to assess environmental and silvicultural information on tropical tree species. Energy outputs were derived from the estimated productivity of the reviewed species and ranged from 0.2 to 24.0 Mg biomass ha−1 yr−1, 0.1 to 9.0 Mg bio-oil ha−1 yr−1, and 0.2 to 20.0 Mg sugar ha−1 yr−1, equivalent to an energy yield between 2 and 444 GJ ha−1 yr−1. As such, these bioenergy yields are within the range reported for the lignocellulosic biomass of energy crops cultivated in Europe, the USA, and Brazil. Our review identified some high-yielding species (e.g., Dyera polyphylla (Miq.) Steenis, Metroxylon sagu (Rottb.), Pongamia pinnata (L.)) and leguminous species that could be beneficial in mixed stands (e.g., Elaeis oleifera (Kunth) and Pongamia pinnata) or are suitable species to grow on wet or re-wetted peatland (Dyera polyphylla). However, there are limitations to cultivate woody bioenergy species on wet peatland. Sustainable methods for managing and harvesting forests, particularly on wet or re-wetted peatland, need to be developed.
topic tropics
paludiculture
biomass
biofuel
biodiesel
bioethanol
url http://www.mdpi.com/1999-4907/9/10/594
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