Eight Up-Coming Biotech Tools to Combat Climate Crisis

Author:

Fuchs Werner1ORCID,Rachbauer Lydia2ORCID,Rittmann Simon K.-M. R.3ORCID,Bochmann Günther1ORCID,Ribitsch Doris4ORCID,Steger Franziska1ORCID

Affiliation:

1. Department IFA-Tulln, Institute of Environmental Biotechnology, University of Natural Resources and Life Sciences, Vienna, Konrad-Lorenz-Strasse 20, 3430 Tulln, Austria

2. Lawrence Berkeley National Laboratory, Deconstruction Division at the Joint Bioenergy Institute, 5885 Hollis Street, Emeryville, CA 94608, USA

3. Archaea Physiology & Biotechnology Group, Department of Functional and Evolutionary Ecology, Universität Wien, Djerassiplatz 1, 1030 Wien, Austria

4. ACIB—Austrian Centre of Industrial Biotechnology, Krenngasse 37, 8010 Graz, Austria

Abstract

Biotechnology has a high potential to substantially contribute to a low-carbon society. Several green processes are already well established, utilizing the unique capacity of living cells or their instruments. Beyond that, the authors believe that there are new biotechnological procedures in the pipeline which have the momentum to add to this ongoing change in our economy. Eight promising biotechnology tools were selected by the authors as potentially impactful game changers: (i) the Wood–Ljungdahl pathway, (ii) carbonic anhydrase, (iii) cutinase, (iv) methanogens, (v) electro-microbiology, (vi) hydrogenase, (vii) cellulosome and, (viii) nitrogenase. Some of them are fairly new and are explored predominantly in science labs. Others have been around for decades, however, with new scientific groundwork that may rigorously expand their roles. In the current paper, the authors summarize the latest state of research on these eight selected tools and the status of their practical implementation. We bring forward our arguments on why we consider these processes real game changers.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference243 articles.

1. Planetary boundaries: Guiding human development on a changing planet;Steffen;Science,2015

2. UNEP (2022, December 21). Emissions Gap Report 2022: The Closing Window—Climate Crisis Calls for Rapid Transformation of Societies. Available online: https://www.unep.org/emissions-gap-report-2022.

3. EurEau (2022, December 21). Europe’s Water in Figures, An Overview of the European Drinking Water and Waste Water Sectors. Available online: https://www.eureau.org/resources/publications/eureau-publications/5824-europe-s-water-in-figures-2021/file.

4. US EPA (2022, December 21). EPA Facility Registry Service (FRS): Wastewater Treatment Plants, Available online: https://edg.epa.gov/data/PUBLIC/OEI/OIC/FRS_Wastewater.zip.

5. Jain, S. (2022, December 21). Global Potential of Biogas. Available online: https://www.worldbiogasassociation.org/wp-content/uploads/2019/09/WBA-globalreport-56ppa4_digital-Sept-2019.pdf.

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