H2020Individual fellowship2018–2020

SABIR · Dynamic sustainability assessment tool for the case studies of biorefinery supply chains from agricultural wastes

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2018-06-01 → 2020-05-31
EU contribution
€200,195
Participants
1
Scheme
MSCA-IF-EF-ST

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Results in brief

Dynamic sustainability assessment tool for the case studies of biorefinery supply chains from agricultural wastes

Since the pioneering work of D. Meadows, there is continuous refining and development of novel methodologies in the field of sustainability. Sustainability remains a disputable topic, even when researchers agree on one common definition of sustainability since different sustainability aspects can be evaluated differently. The SABIR project presents a novel, dynamic sustainability assessment tool. This tool combines temporal soil carbon modelling and greenhouse gas modelling with system dynamics models. The case studies of green biorefineries and the agriculture sector in Denmark and Latvia are used to approbate this tool. Agriculture is the primary supply of nutrition and bioenergy and a substantial contributor to the bioeconomy. Yet, agriculture is also linked with environmental, economic, and social aspects of climate change. Therefore, climate change and agriculture are linked by complex relations, which can be difficult to define or measure. Biorefinery case studies are chosen because currently, most of the energy carriers and raw materials are supplied using non-renewable sources. At the same time, just to start using renewables instead does not mean to have sustainable systems per se. We need systems that can transform local resources efficiently, provide work-spaces and operate economically justified. Here biorefinery is viewed as a concept for sustainable, large-scale production of high added value bio-based products and fuels. Nevertheless, the overall environmental, economic and social consequences of implementing such biorefinery systems are poorly understood. Therefore, SABIR project will aim to give two major benefits. Firstly, to present novel sustainability assessment tool by the introduction of feedback loops and, secondly, to advance studies on biorefinery concept, by outlining possible impacts and solutions. To achieve the project’s aim six objectives are fulfilled: 1) a reference system is defined, 2) a dynamic sustainability assessment tool for the case studies is developed, 3) the developed tool is validated, 4) sensitivity analysis for the developed tool is carried out, 5) policy scenario assessment is done the developed tool and recommendations for involved stakeholders are developed, and 6) knowledge transfer and training is carried out.

Data: CORDIS, © European Union

Project objective

There is continuous refining and development of novel methodologies in the field of sustainability. From these methodologies, life cycle assessment is one of the most commonly used today. Over past decades researchers have “upgraded” life cycle assessment to life cycle sustainability assessment; later method combines 3 pillars of sustainability: environment, society and economy. While current methodologies looks at the impacts of analysed product or service in more holistic way, this approach is still lacking one important issue – dynamic feedback loops. The bottleneck of life cycle sustainability assessment method is rooted in the assumption that values for the impact categories remain constant, that is assuming a constant marginal impact or that no other sustainability information changes the overall system, and thus also the individual impacts. The aim of SABIR is to develop a novel, dynamic sustainability assessment tool, that uses life cycle sustainability assessment and system dynamic analysis tools at the same time in one model. To validate this tool two case studies of biorefinery supply chains from agricultural wastes will be used.Biorefinery case studies are chosen because these systems are increasingly seen as pivotal technologies to strengthen the growth in the area of bio-economy. Nevertheless, the overall environmental, economic and social consequences of implementing such biorefinery systems are poorly understood. Therefore, this project will aim to give two major benefits (1) to advance life cycle sustainability assessment methodology by introduction of feedback loops, (2) to advance studies on biorefinery concept, by outlining possible impacts and solutions.

Original text from CORDIS.

Participants

  • AARHUS UNIVERSITET · Aarhus CCoordinatorDenmark

Links

Data: CORDIS, © European Union