The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth

Research output: Book/ReportPh.D. thesisResearch

Standard

The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth. / Hansen, Veronika.

Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, 2015.

Research output: Book/ReportPh.D. thesisResearch

Harvard

Hansen, V 2015, The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth. Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen. <https://soeg.kb.dk/permalink/45KBDK_KGL/fbp0ps/alma99122654340405763>

APA

Hansen, V. (2015). The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth. Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen. https://soeg.kb.dk/permalink/45KBDK_KGL/fbp0ps/alma99122654340405763

Vancouver

Hansen V. The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth. Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, 2015.

Author

Hansen, Veronika. / The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth. Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, 2015.

Bibtex

@phdthesis{b557aa451b6446b3b0849ccbb0c2b292,
title = "The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth",
abstract = "New synergies between agriculture and the energy sector making use of agricultural residues for bioenergy production and recycling recalcitrant residuals to soil may offer climate change mitigation potential through the substitution of fossil fuels and soil carbon sequestration. However, concerns have been raised about the potential negative impacts of incorporating bioenergy residuals (biochar) in soil and increasing the removal of crop residues such as straw, possibly reducing important soil functions and services for maintaining soil quality. Therefore, a combination of incubation studies and pot andfield experiments was used to study the effect of straw and wood biochar on carbon sequestration, soil quality and crop growth. Overall, the biochar amendment improved soil chemical and physical properties and plant growth and showed a potential for soil carbon sequestration without having any negative impact on soil biota. However, the effects of biochar on soil quality and plant growth differed according to the biochar properties and the soil type used. Furthermore, the positive impact on some soil structural properties observed after straw incorporation was not achieved with biochar amendment. Inconclusion, recycling gasification biochar to agricultural soils has the potential for development into a system that combines bioenergy generation and food production while maintaining soil quality.However, annual straw removal needs to be carefully considered in order to avoid soil degradation and the risk of soil compaction or erosion.",
author = "Veronika Hansen",
year = "2015",
language = "English",
publisher = "Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen",

}

RIS

TY - BOOK

T1 - The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth

AU - Hansen, Veronika

PY - 2015

Y1 - 2015

N2 - New synergies between agriculture and the energy sector making use of agricultural residues for bioenergy production and recycling recalcitrant residuals to soil may offer climate change mitigation potential through the substitution of fossil fuels and soil carbon sequestration. However, concerns have been raised about the potential negative impacts of incorporating bioenergy residuals (biochar) in soil and increasing the removal of crop residues such as straw, possibly reducing important soil functions and services for maintaining soil quality. Therefore, a combination of incubation studies and pot andfield experiments was used to study the effect of straw and wood biochar on carbon sequestration, soil quality and crop growth. Overall, the biochar amendment improved soil chemical and physical properties and plant growth and showed a potential for soil carbon sequestration without having any negative impact on soil biota. However, the effects of biochar on soil quality and plant growth differed according to the biochar properties and the soil type used. Furthermore, the positive impact on some soil structural properties observed after straw incorporation was not achieved with biochar amendment. Inconclusion, recycling gasification biochar to agricultural soils has the potential for development into a system that combines bioenergy generation and food production while maintaining soil quality.However, annual straw removal needs to be carefully considered in order to avoid soil degradation and the risk of soil compaction or erosion.

AB - New synergies between agriculture and the energy sector making use of agricultural residues for bioenergy production and recycling recalcitrant residuals to soil may offer climate change mitigation potential through the substitution of fossil fuels and soil carbon sequestration. However, concerns have been raised about the potential negative impacts of incorporating bioenergy residuals (biochar) in soil and increasing the removal of crop residues such as straw, possibly reducing important soil functions and services for maintaining soil quality. Therefore, a combination of incubation studies and pot andfield experiments was used to study the effect of straw and wood biochar on carbon sequestration, soil quality and crop growth. Overall, the biochar amendment improved soil chemical and physical properties and plant growth and showed a potential for soil carbon sequestration without having any negative impact on soil biota. However, the effects of biochar on soil quality and plant growth differed according to the biochar properties and the soil type used. Furthermore, the positive impact on some soil structural properties observed after straw incorporation was not achieved with biochar amendment. Inconclusion, recycling gasification biochar to agricultural soils has the potential for development into a system that combines bioenergy generation and food production while maintaining soil quality.However, annual straw removal needs to be carefully considered in order to avoid soil degradation and the risk of soil compaction or erosion.

UR - https://soeg.kb.dk/permalink/45KBDK_KGL/fbp0ps/alma99122654340405763

M3 - Ph.D. thesis

BT - The Effect of Gasification Biochar on Soil Carbon Sequestration, Soil Quality and Crop Growth

PB - Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen

ER -

ID: 159058559