Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis

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Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis. / Cong, Ronggang; Caro, Dario; Thomsen, Marianne.

In: Journal of Cleaner Production, Vol. 165, 24.07.2017, p. 1025-1035.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Cong, R, Caro, D & Thomsen, M 2017, 'Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis', Journal of Cleaner Production, vol. 165, pp. 1025-1035. https://doi.org/10.1016/j.jclepro.2017.07.183

APA

Cong, R., Caro, D., & Thomsen, M. (2017). Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis. Journal of Cleaner Production, 165, 1025-1035. https://doi.org/10.1016/j.jclepro.2017.07.183

Vancouver

Cong R, Caro D, Thomsen M. Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis. Journal of Cleaner Production. 2017 Jul 24;165:1025-1035. https://doi.org/10.1016/j.jclepro.2017.07.183

Author

Cong, Ronggang ; Caro, Dario ; Thomsen, Marianne. / Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis. In: Journal of Cleaner Production. 2017 ; Vol. 165. pp. 1025-1035.

Bibtex

@article{190c663ee3174ea18e598bae430f8ab9,
title = "Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis",
abstract = "Denmark is ambitious in the green transition of its transport sector. The biogas has potentials to substitute diesel as the vehicle fuel. In this paper, we examine the whole chain of biogas utilisation (biomass supply, biogas production and distribution, and fuel substitution) from both environmental and economic perspectives. We find that with low/high biomass supply potentials, the saved greenhouse gas emissions range from 0.89 to 1.66 million tons/2.19 to 4.27 million tons CO2e (carbon dioxide equivalent). The soil carbon stock could increase 52310/124770 tons with low/high biomass supply potentials (measured as remaining carbon in soil in 100 years after application of digestate into soil). The biogas plant owners can obtain a return of investment ranging from 10.78% to 13.62% depending on biomass supply potentials and biogas production technologies. The farmers can save up to 717.93 and 1382.1 million DKK (Danish krone) by substituting mineral P (phosphorus) and N (nitrogen) fertilisers with low biomass supply potential and 1.74 and 3.44 billion DKK with high biomass supply potential. Finally, the vehicle users have incentives to use biogas because of its cost advantage. However, there are also some potential barriers and uncertainties in achieving the green transition, e.g. initial investment for CO2 conversion equipment and diesel-vehicle users' sunk costs, which could require suitable policy supports. We suggest that using biogas in heavy-duty vehicles could be an effective way to reduce carbon emissions in the transport sector.",
author = "Ronggang Cong and Dario Caro and Marianne Thomsen",
year = "2017",
month = jul,
day = "24",
doi = "10.1016/j.jclepro.2017.07.183",
language = "English",
volume = "165",
pages = "1025--1035",
journal = "Journal of Cleaner Production",
issn = "0959-6526",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Is it beneficial to use biogas in the Danish transport sector? - an environmental-economic analysis

AU - Cong, Ronggang

AU - Caro, Dario

AU - Thomsen, Marianne

PY - 2017/7/24

Y1 - 2017/7/24

N2 - Denmark is ambitious in the green transition of its transport sector. The biogas has potentials to substitute diesel as the vehicle fuel. In this paper, we examine the whole chain of biogas utilisation (biomass supply, biogas production and distribution, and fuel substitution) from both environmental and economic perspectives. We find that with low/high biomass supply potentials, the saved greenhouse gas emissions range from 0.89 to 1.66 million tons/2.19 to 4.27 million tons CO2e (carbon dioxide equivalent). The soil carbon stock could increase 52310/124770 tons with low/high biomass supply potentials (measured as remaining carbon in soil in 100 years after application of digestate into soil). The biogas plant owners can obtain a return of investment ranging from 10.78% to 13.62% depending on biomass supply potentials and biogas production technologies. The farmers can save up to 717.93 and 1382.1 million DKK (Danish krone) by substituting mineral P (phosphorus) and N (nitrogen) fertilisers with low biomass supply potential and 1.74 and 3.44 billion DKK with high biomass supply potential. Finally, the vehicle users have incentives to use biogas because of its cost advantage. However, there are also some potential barriers and uncertainties in achieving the green transition, e.g. initial investment for CO2 conversion equipment and diesel-vehicle users' sunk costs, which could require suitable policy supports. We suggest that using biogas in heavy-duty vehicles could be an effective way to reduce carbon emissions in the transport sector.

AB - Denmark is ambitious in the green transition of its transport sector. The biogas has potentials to substitute diesel as the vehicle fuel. In this paper, we examine the whole chain of biogas utilisation (biomass supply, biogas production and distribution, and fuel substitution) from both environmental and economic perspectives. We find that with low/high biomass supply potentials, the saved greenhouse gas emissions range from 0.89 to 1.66 million tons/2.19 to 4.27 million tons CO2e (carbon dioxide equivalent). The soil carbon stock could increase 52310/124770 tons with low/high biomass supply potentials (measured as remaining carbon in soil in 100 years after application of digestate into soil). The biogas plant owners can obtain a return of investment ranging from 10.78% to 13.62% depending on biomass supply potentials and biogas production technologies. The farmers can save up to 717.93 and 1382.1 million DKK (Danish krone) by substituting mineral P (phosphorus) and N (nitrogen) fertilisers with low biomass supply potential and 1.74 and 3.44 billion DKK with high biomass supply potential. Finally, the vehicle users have incentives to use biogas because of its cost advantage. However, there are also some potential barriers and uncertainties in achieving the green transition, e.g. initial investment for CO2 conversion equipment and diesel-vehicle users' sunk costs, which could require suitable policy supports. We suggest that using biogas in heavy-duty vehicles could be an effective way to reduce carbon emissions in the transport sector.

U2 - 10.1016/j.jclepro.2017.07.183

DO - 10.1016/j.jclepro.2017.07.183

M3 - Journal article

VL - 165

SP - 1025

EP - 1035

JO - Journal of Cleaner Production

JF - Journal of Cleaner Production

SN - 0959-6526

ER -

ID: 297008509