Practical Ways to Assess Sustainability

Agroscope has developed the foundation of a methodology for assessing the sustainability of Swiss farms. From summer 2016, a set of indicators will be tested on around ten farms. Sustainably managed farms form an important basis for healthy, fit-for-the-future food production.

The assessment of a farm’s sustainability is a vital step in its optimisation. Here, equal consideration must be given to the criteria concerning the three dimensions of environment, economy and society. Agroscope has developed appropriate indicators, and published these in May 2016 in the ‘Agroscope Science’ publication series.

These indicators are the foundation for enabling farmers, consumers and associations as well as interested actors and stakeholders from production, processing and trade to develop a comprehensive farm sustainability assessment. Particular attention is devoted by Agroscope to the social dimension. This field still lacks sufficient resilient and practical indicators that are tailor-made for Swiss farms.

Well-being concept for human well-being

Four project teams developed indicators for assessing social sustainability, with a focus on the three areas of human well-being, animal welfare, and landscape aesthetics. Here, it was shown that the Well-being Concept of the Organization for Economic Cooperation and Development (OECD) represents a good basis for depicting the various aspects of human well-being. To this end, key questions allowing the relevant topics to be described simply and concisely were developed for each sub-aspect such as e.g. work/life balance, social relationships and subjective well-being. 

Owing to the relevance of the topic for agriculture, a project team devoted itself to the calculation of temporal workload. On the basis of the ‘ART Work Budget’ software developed by Agroscope to calculate the expected working time, we derived an indicator by comparing the theoretically derived working-time input and the workforce available on the farm. 

Point system for animal welfare

A further project team noted that using a simple indicator to assess animal welfare cannot cover all of the requirements. The researchers therefore propose a point system that manages without observations or measurements on the animal itself. In this system, points are awarded to measures with an anticipated positive impact on one of the twelve animal welfare aspects taken into account in the existing Welfare®-Quality Protocol measuring instrument, e.g. freedom of movement or the absence of pain.  In order for points to be awarded, the anticipated animal welfare must go beyond the minimum stipulated in the Swiss Animal Protection Law. Follow-up projects will now aim to determine whether a correlation does in fact exist between the number of points awarded and the level of animal welfare.

Indicators for the economy and environment

Agroscope has also developed indicators for the economic and environmental dimensions; detailed information on these can be found in the relevant Agroscope publication of May 2016. The economic sustainability of a farm can be illustrated by two key figures in each of the following areas: profitability (earned income per family labour unit and total return on capital); liquidity (cashflow-turnover rate and dynamic gearing ratio), and stability (investment intensity and investment coverage). The environmental dimension of sustainability encompasses the components of resource efficiency, effects on climate, nutrients, and ecotoxicity, as well as biodiversity and soil quality. 

Practicability, utility, acceptance

Practical testing of the indicator set is carried out in close cooperation with the involved farmers. The test determines the practicability, utility and acceptance of a sustainability assessment at farm level. In addition to the refinement of the indicator set, a scientific analysis of the results is planned. The project will be concluded with an in-depth report at the end of 2019. The results obtained are meant to contribute to the implementation of a practical solution for assessing sustainability on a large number of farms. The project is financially supported by the Migros Cooperative Association (MGB). IP-Suisse is actively involved in data acquisition.

Further information:

Publications Erich Szerencsits

Churko G., Haibach G., Bär M., Szerencsits E., Schmidt B. R.
Use of agricultural fields by Natterjack toads: Implications for pesticide exposure.
Agriculture, Ecosystems & Environment, 369, 2024, 1-12.

Aldrich A., Schmidt B. R., Szerencsits E., Churko G., Altermatt K., Bänziger S., Bär M., Bozzuto C., Haibach G., Vimercati G.
Amphibien in der Agrarlandschaft: Risikominderung im Pflanzenschutz und Förderung der Populationen.
Agroscope Science, 178, 2024, 1-102.

Churko G., Szerencsits E., Aldrich A., Schmidt B. R.
Spatial analysis of the potential exposure of amphibians to plant protection products at the landscape scale.
Basic and Applied Ecology, 76, 2024, 14-24.

Fabian Y., Roberti G., Zorn A., Szerencsits E., Gramlich A.
Die Nutzung von vernässenden Ackerflächen neu denken.
Geomatik Schweiz, 121, (7-8), 2023, 161-164.

Fabian Y., Roberti G., Jacot-Ammann K., Gramlich A., Benz R., Szerencsits E., Churko G., Prasuhn V., Leifeld J., Zorn A., Walter T., Herzog F.
Ripensare l’utilizzo delle superfici coltive periodicamente inondate: Sintesi del progetto «superfici (coltive) umide».
Agroscope Science, 145, 2022, 1-18.

Roberti G., Gramlich A., Benz R., Szerencsits E., Churko G., Prasuhn V., Leifeld J., Zorn A., Jacot-Ammann K., Herzog F., Fabian Y.
Entscheidungshilfe für feuchte und nasse Ackerflächen: Unterstützung bei der Identifikation von Flächen, auf denen Alternativen zur Entwässerung in Betracht zu ziehen sind.
Agroscope Transfer, 449, 2022, 1-68.
other Languages: french | italian

Fabian Y., Roberti G., Jacot-Ammann K., Gramlich A., Benz R., Szerencsits E., Churko G., Prasuhn V., Leifeld J., Zorn A., Walter T., Herzog F.
Die Nutzung von vernässenden Ackerflächen neu denken: Synthese des Projektes «Feucht(Acker)Flächen».
Agrarforschung Schweiz, 13, 2022, 198-209.
other Languages: french

Fabian Y., Herzog F., Jacot-Ammann K., Szerencsits E.
Feucht(Acker)Flächen – Keine leichte Entscheidung!
In: Nachhaltigkeitstagung 22. 27. Januar, Agroscope Reckenholz Affoltern Zürich. 2022.

Helfenstein J., Diogo V., Bürgi M., Verburg P. H., Schüpbach B., Szerencsits E., Mohr F., Siegrist M., Swart R., Herzog F.
An approach for comparing agricultural development to societal visions.
Agronomy for Sustainable Development, 42, 2022, 1-17.

Rolo V., Roces-Diaz J., Torralba M., Kay S., Fagerholm N., Aviron S., Burgess P., Crous-Duran J., Ferreiro-Dominguez N., Graves A., Hartel T., Mantzanas K., Mosquera-Losada M. R., Palma J. H., Sidiropoulou A. and others
Mixtures of forest and agroforestry alleviate trade-offs between ecosystem services in European rural landscapes.
Ecosystem Services, 50, 2021, 101318.

Churko G., Walter T., Szerencsits E., Gramlich A.
Improving wetland connectivity through the promotion of wet arable land.
Wetlands Ecology and Management, online, 2020, 1-25.

Kay S., Kühn E., Albrecht M., Sutter L., Szerencsits E., Herzog F.
Agroforestry can enhance foraging and nesting resources for pollinators with focus on solitary bees at the landscape scale.
Agroforestry Systems, 94, 2020, 379-387.

Schüpbach B., Roesch A., Herzog F., Szerencsits E., Walter T.
Development and application of indicators for visual landscape quality to include in life cycle sustainability assessment of Swiss agricultural farms.
Ecological Indicators, 110, 2020, 1-11.

Kay S., Graves A., Palma J.H.N., Moreno G., Roces-Díaz J.V., Aviron S., Chouvardas D., Crous-Duran J., Ferreiro-Domínguez N., García de Jalón S., Măcicăşan V., Mosquera-Losada M.R., Pantera A., Santiago-Freijanes J.J., Szerencsits E. and others
Agroforestry is paying off – Economic evaluation of ecosystem services in European landscapes with and without agroforestry systems.
Ecosystem Services, 36, (April), 2019, 1-10.

Kay S., Rega C., Moreno G., den Herder M., Palma J., Borek R., Crous-Duran J., Freese D., Giannitsopoulos M., Graves A., Jäger M., Lamersdorf N., Memedemin D., Mosquera-Losada R., Pantera A. and others
Agroforestry creates carbon sinks whilst enhancing the environment in agricultural landscapes in Europe.
Land Use Policy, 83, 2019, 581-593.

Szerencsits E., Prasuhn V., Churko G., Herzog F., Utiger C., Zihlmann U., Walter T., Gramlich A.
Karte potentieller Feucht-(Acker-)Flächen in der Schweiz.
Agroscope Science, 72, 2018, 1-68.

Churko G., Szerencsits E., Gramlich A., Prasuhn V., Walter T.
Arten der Feucht-(Acker-) Flächen in der Schweiz und Korridore zwischen Schutzobjekten.
Agroscope Science, 76, 2018, 1-39.

Kay S., Crous-Duran J., García de Jalón S., Graves A., Palma J.H.N., Roces-Díaz J.V., Szerencsits E., Weibel R., Herzog F.
Landscape-scale modelling of agroforestry ecosystems services in Swiss orchards: a methodological approach.
Landscape Ecology, 33, (9), 2018, 1633-1644.

Kay S., Crous-Duran J., Ferreiro-Domínguez N., García de Jalón S., Graves A., Moreno G., Mosquera-Losada R., Palma J., Roces-Díaz J., Santiago-Freijanes J., Szerencsits E., Weibel R., Herzog F.
Spatial similarities between European agroforestry systems and ecosystem services at the landscape scale.
Agroforestry Systems, 92, (4), 2018, 1075-1089.

Herzog F., Lüscher G., Arndorfer M., Bogers M., Balázs K., Bunce R. G. H., Dennis P., Falusi E., Friedel J. K., Geijzendorffer I. R., Gomiero T., Jeanneret P., Moreno G., Oschatz M. L., Paoletti M. G. and others
European farm scale habitat descriptors for the evaluation of biodiversity.
Ecological Indicators, 76, 2017, 205-217.

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