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Titel [sv]
CINDERELLA
Titel [en]
CINDERELLA
Abstract [en]
Conventional agriculture and forestry on drained peatlands cause peat degradation, subsidence (up to 2 cm annually), enormous greenhouse gas (GHG) emissions (20-40 t CO2 per ha and year annually) and eventually often a loss of productive land. Rewetting reduces these effects and simultaneously restores other ecosystem services including water and nutrient retention, water purification, flood control and mesoclimatic cooling. Paludiculture (lat. palus - swamp) is an innovative concept that allows rewetted peatlands to remain productively used. Paludiculture comprises a change to adapted crop species (Reed, Cattail, Reed Canary Grass, Sedges), harvesting machinery and biomass utilisation options.
Publikationer (3 of 3) Visa alla publikationer
Hansson, A. M., Pedersen, E., Karlsson, N. P. E. & Weisner, S. E. B. (2023). Barriers and drivers for sustainable business model innovation based on a radical farmland change scenario. Environment, Development and Sustainability, 25(8), 8083-8106
Öppna denna publikation i ny flik eller fönster >>Barriers and drivers for sustainable business model innovation based on a radical farmland change scenario
2023 (Engelska)Ingår i: Environment, Development and Sustainability, ISSN 1387-585X, E-ISSN 1573-2975, Vol. 25, nr 8, s. 8083-8106Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

The agricultural sector has a critical role in creating social and environmental value of natural resources in addition to its traditional role of creating economic value by supplying food to the ever-increasing world population. In fulfilling this dual role, the agricultural sector often faces competing pressures: to operate financially profitable businesses and to create, maintain, and benefit from ecosystem services (ES) in their operations. This paper analyses these pressures in an examination of drivers and barriers to the initiation of the business model innovation process for sustainability (BMIpfS) as perceived by ten agricultural business managers who operate farms in southern Sweden. The paper explores the interplay between managerial cognition and business decisions as revealed in semi-structured interviews. The new ES in focus connect to radical land-use change, paludiculture, as used in the rewetting of farmland intended to reduce the greenhouse gas emissions that drained peat soil causes. The paper contributes to the literature by identifying drivers and barriers that moderates the initiation of the BMIpfS. Although the managers acknowledge the importance of long-term, sustainable social, and environmental value creation, they have grave doubts about the profitability of activities associated with the preservation of peat soils and connected ES. These managers would benefit from taking a more proactive, long-term approach to business model changes for sustainability and from acquiring more knowledge about market demand for sustainability-oriented ES. Successful facilitation and implementation of knowledge transfer and government subsidies that support ES could improve the turning of profits based on sustainable value creation.

Ort, förlag, år, upplaga, sidor
Dordrecht: Springer, 2023
Nyckelord
Business model innovation process, Sustainable value creation, Agricultural businesses, Rewetting of peat soils, Ecosystem services
Nationell ämneskategori
Miljövetenskap
Identifikatorer
urn:nbn:se:hh:diva-46940 (URN)10.1007/s10668-022-02389-1 (DOI)000795192200001 ()2-s2.0-85132617656 (Scopus ID)
Forskningsfinansiär
Forskningsrådet Formas, 155-2014-1745
Anmärkning

Funding: Open access funding provided by Halmstad University.

Tillgänglig från: 2022-06-07 Skapad: 2022-06-07 Senast uppdaterad: 2025-10-01Bibliografiskt granskad
Martens, M., Karlsson, N., Ehde, P. M., Mattsson, M. & Weisner, S. (2021). The greenhouse gas emission effects of rewetting drained peatlands and growing wetland plants for biogas fuel production. Journal of Environmental Management, 277, Article ID 111391.
Öppna denna publikation i ny flik eller fönster >>The greenhouse gas emission effects of rewetting drained peatlands and growing wetland plants for biogas fuel production
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2021 (Engelska)Ingår i: Journal of Environmental Management, ISSN 0301-4797, E-ISSN 1095-8630, Vol. 277, artikel-id 111391Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Efforts to mitigate greenhouse gas (GHG) emissions are receiving increased attention among governmental and commercial actors. In recent years, the interest in paludiculture, i.e. the use of rewetted peatlands, has grown because of its potential to reduce GHG emissions by stopping soil decomposition. Moreover, cultivating wetland plants on rewetted peatlands for  bioenergy production that replaces fossil fuels in the transport sector, can contribute to additional GHG emission reductions. In this study, an analysis of literature data was conducted to obtain data on GHG emissions (CO2 and CH4) and biomass production from rewetted peatlands cultivated with two different wetland plant species: Phragmites australis (Pa) and Typha latifolia (Tl). In  addition, a  biogas experiment was carried out to investigate the biomethane yield of Pa and Tl biomass, and the reduction of global warming potential (GWP) by using biomethane as vehicle fuel. The results show that peatland rewetting can be an important measure to mitigate the GWP as it reduces GHG emissions from the soil, particularly on a 100-year timescale but also to some extent on a 20-year timescale. More specifically, rewetting of 1 km2 of peatland can result in  a  GWP reduction corresponding to  the  emissions from ±2600 average sized petrol cars annually. Growing Pa on rewetted peatlands reduces soil GHG emissions more than growing Tl, but Pa and Tl produced similar amounts of biomass and biomethane per land area. Our study concludes that Pa, because of a more pronounced GWP reduction, is the most suitable wetland plant to cultivate after peatland rewetting. © 2020 The Author(s). Published by Elsevier Ltd.

Ort, förlag, år, upplaga, sidor
Amsterdam: Elsevier, 2021
Nyckelord
Paludiculture, Greenhouse gas emissions, Peatland, Phragmites australis, Typha latifolia, Biomethane
Nationell ämneskategori
Miljövetenskap Klimatvetenskap
Identifikatorer
urn:nbn:se:hh:diva-43340 (URN)10.1016/j.jenvman.2020.111391 (DOI)000593974400009 ()33049611 (PubMedID)2-s2.0-85092313103 (Scopus ID)
Forskningsfinansiär
Forskningsrådet Formas, 155-2014-1745
Tillgänglig från: 2020-10-26 Skapad: 2020-10-26 Senast uppdaterad: 2025-10-01Bibliografiskt granskad
Eller, F., Ehde, P. M., Oehmke, C., Ren, L., Brix, H., Sorell, B. K. & Weisner, S. (2020). Biomethane yield from different European Phragmites australis genotypes, compared with other herbaceous wetland species grown at different fertilization regimes. Resources, 9(5), Article ID 57.
Öppna denna publikation i ny flik eller fönster >>Biomethane yield from different European Phragmites australis genotypes, compared with other herbaceous wetland species grown at different fertilization regimes
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2020 (Engelska)Ingår i: Resources, ISSN 2079-9276, Vol. 9, nr 5, artikel-id 57Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Phragmites australis, Typha latifolia, T. angustifolia and Arundo donax are tall wetland graminoids with the potential to replace fossil fuels under sustainable cultivation conditions. We investigated the biomethane (CH4) production of these four species, including four different genotypes of P. australis, which represent the high intraspecific diversity of European reed. All plants were grown under three different macronutrient supplies (no nutrients added, an equivalent of 75 kg N ha−1 year−1 added and an equivalent of 500 kg N ha−1 year−1 added). Biomethane production was measured in four independent batch digestion tests. Across all experiments, fertilization regime had little effect on CH4 yield, which was on average 222 ± 31 L kg−1 volatile solids (VS). The lowest yield was produced by T. angustifolia (140 L kgVS−1) receiving no nutrients, while the highest yield was produced by A. donax (305 L kgVS−1) in the highest nutrient treatment. The intraspecific diversity of P. australis did not affect biomethane production. All P. australis genotypes produced on average 226 ± 19 L CH4 kgVS−1, which, although high, was still lower than conventional biogas species. The biomass production of P. australis was less increased by fertilization than that of Typha sp. and A. donax, but all species had similar biomass without fertilization.

Ort, förlag, år, upplaga, sidor
Basel: MDPI, 2020
Nyckelord
Arundo donax, biogas, paludiculture, pretreatment, sustainable agriculture Typha angustifolia, Typha latifolia
Nationell ämneskategori
Bioenergi
Identifikatorer
urn:nbn:se:hh:diva-42055 (URN)10.3390/resources9050057 (DOI)000541018000009 ()2-s2.0-85085639743 (Scopus ID)
Forskningsfinansiär
Forskningsrådet Formas, 155-2014-1745
Anmärkning

This article belongs to the Special Issue Sustainable and Innovative Utilization of Common Reed (Phragmites Australis) in the Bioeconomy.'

Other funders: FACCE-JPI ERA-NET Plus on Climate Smart Agriculture (project CINDERELLA), the Carlsberg Foundation, grant number CF15-0330, the German Federal Minister of Education and Research under Project Number 031A545.

Tillgänglig från: 2020-05-15 Skapad: 2020-05-15 Senast uppdaterad: 2025-10-01Bibliografiskt granskad
ProjektmedarbetareMattsson, Marie
ProjektledareWeisner, Stefan
Koordinerande organisation
Högskolan i Halmstad
Forskningsfinansiär
Tidsperiod
2014-01-01 - 2016-12-31
Nationell ämneskategori
Markvetenskap
Identifikatorer
DiVA, id: project:264Projekt id: 2014-1745_Formas

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