Page 58 - JCAU-5-1
P. 58
Journal of Chinese
Architecture and Urbanism Microbial technologies: Toward a regenerative architecture
19: 701-715. https://doi.org/10.3390/electronics12041049
Koffi, N’D.J., & Okabe, S. (2020). High voltage generation from Potter, M.C. (1911). Electrical effects accompanying the
wastewater by microbial fuel cells equipped with a newly decomposition of organic compounds. Proceedings of the
designed low voltage booster multiplier (LVBM). Scientific Royal Society B, 571(84): 260-276.
Reports, 10: 18985. Santoro, C., Winfield, J., Theodosiou, P., & Ireopoulos, I.
https://doi.org/10.1038/s41598-020-75916-7 (2019). Supercapactitive paper based microbial fuel cell:
High current/power production within a low cost design.
Kumari, M., Ghosh, P., & Thakur I.S. (2018). Application of Bioresource Technology Reports, 7, 100297. https://doi.
microbes in remediation of hazardous wastes: A review. In: SJ org10.1016/j.biteb.2019.100297
Varjani, AK Agarwal, E Gnansounou and B Gurunthan (eds.).
Bioremediation: Applications for Environmental Protection and Singh, A.M., & Sharma, V.N. (2010). Treatment of brewery
Management Projects. Singapore: Springer Nature, p. 223-241. wastewater and production of electricity through microbial
fuel cell technology. International Journal of Biotechnology
https://doi.org/10.1007/978-981-10-7485-1_11
and Biochemistry, 6(1): 71-80.
Lahiji, N., & Friedman, V. (1997). Plumbing: Sounding Modern Stewart, A. (2016). The Living Concrete that can Heal Itself,
Architecture. New York: Princeton Academic Press. CNN, 7 March: Available from: https://edition.cnn.
Lennon, J.T., & Locey, K.L. (2018). There are More Microbial com/2015/05/14/tech/bioconcrete-delft-jonkers/index.html
Species on Earth than Stars in the Galaxy. Aeon. Available [Last accessed: 2023 Feb 11].
from: https://aeon.co/ideas/there-are-more-microbial- Timmis, K., Cavicchioli, R., Garcia, J.L., Nogales, B.,
species-on-earth-than-stars-in-the-sky [Last accessed on Chavarría, M., Stein, L., et al. (2019) The urgent need
2023 Apr 13]. for microbiology literacy in society. Environmental
Margulis, L. (1981). Symbiosis in Cell Evolution: Life and its Microbiology, 21(5): 1513-1528.
Environment on the Early Earth. San Francisco: W H Waldrop, M.M. (2021). Microbes for better sewage treatment.
Freeman, p. 347. Proceedings of the National Academy of Sciences of the Unites
Oxfam International. (2015). Pee Power” to Light Camps in States of America, 118(32): e2112863118.
Disaster Zones. Oxfam International: United Kingdom. https://doi.org/10.1073/pnas.2112863118
Available from: https://www.oxfam.org/en/press-releases/
pee-power-light-camps-disaster-zones. [Last accessed: Walter, X.A., Merino-Jimenez, I., Greenman, J., &
2023 Feb 11]. Ieropoulos, I. (2018). PEE POWER® Urinal II-urinal
scale-up with microbial fuel cell scale-down for improved
Pasternak, G., Greenman, J., & Ieropoulos, I. (2019). Removal of lighting. Journal of Power Sources, 392: 150-158.
Hepatitis B virus surface HBsAg and core HBcAg antigens
using microbial fuel cells producing electricity from human Wolverton, B.C., & Nelson, M. (2020). Using plants and soil
urine. Scientific Reports, 9(1): 11787. microbes to purify indoor air: Lessons from NASA and
Biosphere 2 experiments. Field Actions Science Reports,
https://doi.org/10.1038/s41598-019-48128-x 21: 54-59.
Penesyan, A., Paulsen, I.T., Kjelleberg, S., & Gillings, M. (2021). Yang, L., Park, D., & Qin Z. (2021). Material function of
Three faces of biofilms: A microbial lifestyle, a nascent mycelium-based bio-composite: A review. Frontiers in
multicellular organism, and an incubator for diversity. NPJ Materials, 8: 737377.
Biofilms and Microbiomes, 7(1): 80.
https://doi.org/10.3389/fmats.2021.737377
https://doi.org/10.1038/s41522-021-00251-2
You, J., Rimbu, G.A., Wallis, L., Greenman, J., & Ieropoulos, I.
Pham, T.H., Rabaey, K., Aelterman, P., Clauwert, P., De (2019). Living architecture: Toward energy generating
Schamphelaire, L., Boon, N., et al. (2006). Microbial fuel cells buildings powered by microbial fuel cells. Frontiers in
in relation to conventional anaerobic digestion technology. Energy Research, 7: 94.
Engineering in Life Sciences, 6(3): 285-292.
https://doi.org/10.3389/fenrg.2019.00094
Pharkphoumy, S. Jarnardhanam, V., Jang T.H., & Shim,
K.H. (2023). Correlation of crystal defects with device Zhou, T., Han, H., Liu, P., Xiong, J., Tian, F., & Li, X. (2017).
performance of AlGaN/GaN high-electron-mobility Microbial fuels cell-based biosensor for toxicity detection:
transistors fabricated on silicon and sapphire substrates. A review. Sensors (Basel), 17(10): 2230.
Electronics, 12(4): 1049. https://doi.org/10.3390/s17102230
Volume 5 Issue 1 (2023) 14 https://doi.org/10.36922/jcau.157

