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Transdisciplinary collaboration in architecture: Integrating microalgae biotechnologies for human and non-human perspectives Cover

Transdisciplinary collaboration in architecture: Integrating microalgae biotechnologies for human and non-human perspectives

Open Access
|Jun 2023

References

  1. Acién, F. G., Molina, E., Reis, A., Torzillo, G., Zittelli, G., Sepúlveda, J., Masojídek, J. (2017) ‘Photobioreactors for the production of microalgae’. In: Gonzalez-Fernandez, C., Muñoz, R. (eds) ‘Microalgae-based Biofuels and Bioproducts: From Feedstock Cultivation to End-products’, Woodland Publishing, Cambridge, UK, pp. 1–44.
  2. Araújo, R., Vázquez Calderón, F., Sánchez López. J., Azevedo, I. C., Bruhn, A., Fluch, S., Garcia Tasende, M., Ghaderiardakani, F., Ilmjärv, T., Laurans, M., Mac Monagail, M., Mangini, S., Peteiro, C., Rebours, C., Stefansson, T., Ullmann, J. (2021) ‘Current Status of the Algae Production Industry in Europe: An Emerging Sector of the Blue Bioeconomy’. Frontiers in Marine Science, Vol. 7. https://www.doi.org/10.3389/fmars.2020.626389
  3. Arup (2013) ‘Worldwide first façade system to cultivate micro-algae to generate heat and biomass as renewable energy sources’, SolarLeaf, Hamburg, Germany. [online] Available at: https://www.arup.com/projects/solar-leaf
  4. Christenson, L., Sims, R. (2011) ‘Production and harvesting of microalgae for wastewater treatment, biofuels, and bioproducts’. Biotechnology Advances, 29(6), pp. 686-702. https://www.doi.org/10.1016/j.biotechadv.2011.05.015
  5. Davis, H., Turpin, E. (2014): ‘Art in the Anthropocene: Encounters Among Aesthetics, Politics, Environments and Epistemologies’, Open Humanities Press, London, UK.
  6. European Environmental Agency (2019) ‘Soil, Land and the Climate Change’. [online] Available at: https://www.eea.europa.eu/signals/signals-2019-content-list/articles/soil-land-and-climate-change [30 Sep 2019, Modified: 11 May 2021]
  7. Eurostat Statistics Explained (2023) ‘Quarterly greenhouse gas emissions in the EU’. [online] Available at: https://ec.europa.eu/eurostat/statistics-explained/index.php?title=Quarterly_greenhouse_gas_emissions_in_the_EU [Modified: Feb 2023]
  8. Ezbahn, M. (2019) ‘Catalythic Polycultures in Aquaculture Landscapes: Fish Farms and the Public Realm’, pp. 26–31. Routledge, Abington, UK. [online] Available at: http://kongkic2.sg-host.com/wp-content/uploads/2020/08/1-TChung-Floating-Fields-Catalytic-Polycultures-Aquaculture-Landscapes.pdf
  9. Fabris, M., Abbriano Raffaela, M., Pernice, M., Sutherland, D. L., Commault, A. S., Hall, C. H. C., Labeeuw, L., McCauley, J. I., Kuzhiuparambil, U., Ray, P., Kahlke, T., Ralph, P. J. (2020) ‘Emerging Technologies in Algal Biotechnology: Toward the Establishment of a Sustainable, Algae-Based Bioeconomy’, Frontiers in Plant Science, Vol. 11. https://doi.org/10.3389/fpls.2020.00279
  10. Haraway, D. (2016) ‘Staying with the Trouble: Making Kin in the Chthulucene’, Duke University Press, Durham, USA. https://doi.org/10.1215/9780822373780
  11. ITB (2022) ‘Zelený Wallenrod je odteraz ešte zelenší‘ (Green Wallenrod is now even greener). [online] Available at: https://www.itb.sk/zi-sitb/zeleny-wallenrod-je-odteraz-este-zelensi (in Slovak)
  12. Karyono, T. (2015) ‘Architecture and Technology: The impact of modern technology on global warming’, International Conference on Technology and Local wisdom, University of Sains Al Quran Wonosobo, Indonesia. [online] Available at: https://www.researchgate.net/publication/280711716_Architecture_and_Technology_The_impact_of_modern_technology_on_global_warming
  13. Koller, M. (2015) ‘Design of Closed Photobioreactors for Algal Cultivation’. In: Prokop, A., Bajpai, R., Zappi, M. (eds.), ‘Algal Biorefineries’, Springer, Cham, Switzerland, pp. 133-186. https://doi.org/10.1007/978-3-319-20200-6_4
  14. Leong, Y. K., Chang, J. S., Lee, D. J. (2023) ‘Chapter 3 - Types of photobioreactors’. In: Sirohi, R., Pandey, A., Sim, S., Chang, J. S., Lee, D. J., ‘Photobiore-actors: Design and Applications’, Current Developments in Biotechnology and Bioengineering; Photobioreactors : Design and Applications, pp. 33–58. https://doi.org/10.1016/B978-0-323-99911-3.00007-5
  15. Loke Show, P. (2022) ‘Global market and economic analysis of microalgae technology: Status and perspectives’, Bioresource Technology, Vol. 357. https://doi.org/10.1016/j.biortech.2022.127329
  16. Lowenfels, J., Lewis, W. (2010) ‘Teaming with Microbes: The Organic Gardener's Guide to the Soil Food Web’, Timber Press, Portland, USA, p. 13.
  17. Narala, R. R., Garg, S., Sharma, K. K., Thomas-Hall, S. R., Deme, M., Li Y., Schenk, P. M. (2016) ‘Comparison of Microalgae Cultivation in Photobioreactor, Open Raceway Pond, and a Two-Stage Hybrid System’, Frontiers in Energy Research, Vol. 4. https://www.doi.org/10.3389/fenrg.2016.00029
  18. Peruccio, P. P., Vrenna, M. (2019) ‘Design and microalgae: Sustainable systems for cities’. AGATHÓN – International Journal of Architecture, Art and Design, 6, pp. 218-227. https://www.doi.org/10.19229/2464-9309/6212019
  19. Pišteková, D., Tholt, T. (2022) ‘Biotopia už nie je len utópia’ (Biotopia is no longer just a utopia), ARCH, (27)3, p. 96. [online] Available at: https://sebolichy.sk/wp-content/uploads/2022/10/ARCH-03.22-BIOTOPIA.pdf (in Slovak)
  20. Raupach, M., Davis, S., Peters, G., Andrew, R. M., Canadell, J .G., Ciais, P., Friedlingstein, P., Jotzo, F., van Vuuren, D. P., Le Quéré, C. (2014) ‘Sharing a quota on cumulative carbon emissions’, Nature Climate Change, 4, pp. 873–879. https://doi.org/10.1038/nclimate2384
  21. Santos, L., Mendes, A., Mendes, J. (2020) ‘Algae in building façades - A review on the potential of microalgae incorporation in building envelopes’, Renewable and Sustainable Energy Reviews, 120. https://www.doi./10.1016/j.rser.2019.109671
  22. Singh, U. B., Ahluwalia, A. (2013) ‘Microalgae: A promising tool for carbon sequestration’, Mitigation and Adaptation Strategies for Global Change, 18, pp. 73-95. https://doi.org/10.1007/s11027-012-9393-3
  23. Tsing, A. L. (2015) ‘The mushroom at the end of the world’, Princeton University Press, Princeton, USA.
  24. Wijffels, R. H., Barbosa, M. J. (2010) ‘An outlook on microalgal biofuels’, Science, Vol. 329(5993), pp. 796-799.
Language: English
Page range: 10 - 20
Submitted on: Apr 14, 2023
Accepted on: Jun 12, 2023
Published on: Jun 19, 2023
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Veronika Miškovičová, Jiří Masojídek, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution 4.0 License.