Catch and Cover Crops’ Use in the Energy Sector via Conversion into Biogas—Potential Benefits and Disadvantages

Author:

Słomka Alicja1,Pawłowska Małgorzata2

Affiliation:

1. Independent Researcher, 20-824 Lublin, Poland

2. Faculty of Environmental Engineering, Lublin University of Technology, 20-618 Lublin, Poland

Abstract

The development of civilization is related to an increase in energy demand, while its production is still based mainly on fossil fuels. The release of carbon into the environment, which disturbs the balance of the global system, is the consequence of using these fuels. One possible way to reduce the carbon footprint of the energy sector is the widespread use of cover crops’ biomass for energy production. The aim of this paper is to critically review the knowledge on the dissemination of catch and cover crops’ cultivation in different regions of the world, and the yield, chemical composition and biomethane potential of their biomass. Additionally, the environmental benefits, as well as the challenges and opportunities associated with this biomass use in the energy sector, are considered. The review showed that the aboveground biomass of cover and catch crops is a valuable source for the production of bioenergy in biogas plants. However, the key role of these crops is to prevent soil degradation. Therefore, changes in biomass target use must be preceded by a multi-aspect analysis that allows their impact on the environment to be assessed.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference165 articles.

1. Fernández, L. (2023, August 03). Global Primary Energy Consumption 2000–2022. Available online: https://www.statista.com/statistics/265598/consumption-of-primary-energy-worldwide.

2. SRD (2023, September 07). Distribution of Electricity Generation Worldwide in 2022, by Energy Source. Available online: https://www.statista.com/statistics/269811/world-electricity-production-by-energy-source/StatistaResearchDepartment.

3. Masson-Delmotte, V.P., Zhai, H.-O., Pörtner, D., Roberts, J., Skea, P.R., Shukla, A., Pirani, W., Moufouma-Okia, C., Péan, R., and Pidcock, S. (2018). Global Warming of 1.5 °C. An IPCC Special Report on the Impacts of Global Warming of 1.5 °C Above Pre-Industrial Levels and Related Global Greenhouse Gas Emission Pathways, in the Context of Strengthening the Global Response to the Threat of Climate Change, Sustainable Development, and Efforts to Eradicate Poverty, Cambridge University Press.

4. UNCC (2023, August 02). The Paris Agreement. Available online: https://unfccc.int/process-and-meetings/the-paris-agreement.

5. Ritchie, H., Roser, M., and Rosado, P. (2023, September 20). CO2 and Greenhouse Gas Emissions. Published online at OurWorldInData.org. Available online: https://ourworldindata.org/co2-and-greenhouse-gas-emissions.

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