Testing the feasibility of geothermal heat sinks with concentrated solar power for effective municipal wastewater disinfection: A pilot study

Water-Energy Nexus - Tập 4 - Trang 174-186 - 2021
Samarpan Deb Majumder1, Simran Saha2, Ankit Das3
1Department of Civil and Environmental Engineering, University of Wisconsin Madison, WI, United States
2Department of Computer Engineering, University of California Riverside, CA, United States
3Department of Biomechatronics Engineering, National Taiwan University, Taipei, Taiwan

Tài liệu tham khảo

Afsharnia, 2018, Disinfection of dairy wastewater effluent through solar photocatalysis processes, Water Sci. Eng., 11, 214, 10.1016/j.wse.2018.10.001 Arturo, M.M., Alejandro, G.P., 2010. High-precision solar tracking system. InProceedings of the World Congress on Engineering(Vol. 2, pp. 2-4). Awad, 2019, Environmental and cost life cycle assessment of different alternatives for improvement of wastewater treatment plants in developing countries, Sci. Total Environ., 660, 57, 10.1016/j.scitotenv.2018.12.386 BIS, I. S. D. W. S. (2012). Bureau of Indian Standards. New Delhi, 2-3. Chirisa, 2017, Decentralized domestic wastewater systems in developing countries: the case study of Harare (Zimbabwe), Appl. Water Sci., 7, 1069, 10.1007/s13201-016-0377-4 Chrispim, 2019, Phosphorus recovery from municipal wastewater treatment: Critical review of challenges and opportunities for developing countries, J. Environ. Manage., 248, 109268, 10.1016/j.jenvman.2019.109268 CPHEEO - Central Public Health and & Environmental Engineering Organisation, 2005. Operation and Maintenance of Water Supply Systems Manual, India. Das, 2016, Synthesis and characterization of TiO2–water nanofluids with different surfactants, Int. Commun. Heat Mass Transfer, 75, 341, 10.1016/j.icheatmasstransfer.2016.05.011 ENVIS Centre on Hygiene, 2021 Fernández-Ibáñez, 2015, Solar photocatalyticdisinfection of water using titanium dioxide graphene composites, Chem. Eng. J., 261, 36, 10.1016/j.cej.2014.06.089 Gelover, 2006, A practical demonstration of water disinfection using TiO2 films and sunlight, Water Res., 40, 3274, 10.1016/j.watres.2006.07.006 Giannakis, 2015, Solar disinfection modeling and post-irradiation response of Escherichia coli in wastewater, Chem. Eng. J., 281, 588, 10.1016/j.cej.2015.06.077 Gutiérrez-Alfaro, 2018, Combining sun-based technologies (microalgae and solar disinfection) for urban wastewater regeneration, Sci. Total. Environ., 619–620, 1049, 10.1016/j.scitotenv.2017.11.110 Herez, 2017, Using geothermal energy for cooling-parametric study, Energy Procedia, 119, 783, 10.1016/j.egypro.2017.07.111 Hespanhol, 1994, WHO guidelines and national standards for reuse and water quality, Water Res., 28, 119, 10.1016/0043-1354(94)90125-2 Jia, 2016, Fabrication of TiO2–Bi2WO6 binanosheet for enhanced solar photocatalytic disinfection of E. coli: insights on the mechanism, ACS Appl. Mater. Interfaces, 8, 6841, 10.1021/acsami.6b00004 Kar, 2016, Solar energy market developments in India, Renew. Sustain. Energy Rev., 62, 121, 10.1016/j.rser.2016.04.043 Khraisheh, 2015, Photocatalytic disinfection of Escherichia coli using TiO2 P25 and Cu-doped TiO2, J. Ind. Eng. Chem., 28, 369, 10.1016/j.jiec.2015.02.023 Laxma Reddy, 2017, TiO2-based photocatalytic disinfection of microbes in aqueous media: a review, Environ. Res., 154, 296, 10.1016/j.envres.2017.01.018 McGuigan, 2012, Solar water disinfection (SODIS): A review from bench-top to roof-top, J. Hazard Mater., 235-236, 29, 10.1016/j.jhazmat.2012.07.053 Monteagudo, 2013, Optimization of pharmaceutical wastewater treatment by solar/ferrioxalate photo-catalysis, J. Environ. Manage., 128, 210, 10.1016/j.jenvman.2013.05.013 Osterloh, 2013, Inorganic nanostructures for photoelectrochemical and photocatalytic water splitting, Chem. Soc. Rev., 42, 2294, 10.1039/C2CS35266D Ozgener, 2007, Modeling and performance evaluation of ground source (geothermal) heat pump systems, Energy Build., 39, 66, 10.1016/j.enbuild.2006.04.019 Pablos, 2017, Electrochemical enhancement of photocatalytic disinfection on aligned TiO2 and nitrogen doped TiO2 nanotubes, Molecules, 22, 704, 10.3390/molecules22050704 Piadeh, 2018, Assessment of sustainability of a hybrid of advanced treatment technologies for recycling industrial wastewater in developing countries: Case study of Iranian industrial parks, J. Cleaner Prod., 170, 1136, 10.1016/j.jclepro.2017.09.174 Prieto-Rodríguez, 2013, Application of solar AOPs and ozonation for elimination of micropollutants in municipal wastewater treatment plant effluents, Water Res., 47, 1521, 10.1016/j.watres.2012.11.002 Rohankar, 2016, A study of existing solar power policy framework in India for viability of the solar projects perspective, Renew. Sustain. Energy Rev., 56, 510, 10.1016/j.rser.2015.11.062 Rybach, 2010, Sustainability aspects of geothermal heat pump operation, with experience from Switzerland, Geothermics, 39, 365, 10.1016/j.geothermics.2010.08.002 Sanner, 2003, Current status of ground source heat pumps and underground thermal energy storage in Europe, Geothermics, 32, 579, 10.1016/S0375-6505(03)00060-9 Shahabuddin, M., Riyaz, A., Asim, M., Shadab, M. M., Sarwar, A., Anees, A., 2018. Performance based analysis of solar PV emulators: a review. In2018 International Conference on Computational and Characterization Techniques in Engineering & Sciences (CCTES)(pp. 94-99). IEEE. Smith, 2012, The Murrumbidgee soil moisture monitoring network data set, Water Resour. Res., 48, 10.1029/2012WR011976 Standard Methods for the Examination of Water and Wastewater, 1995.19th ed. American Public Health Association, Washington/American Water Works Association/Water Environment Federation, USA. Zhang, Y., Pinoy, L., Meesschaert, B., Van der Bruggen, B., 2013. A natural driven membrane process for brackish and wastewater treatment: photovoltaic powered ED and FO hybrid system.Environ. Sci. Technol. 47(18), 10548-10555.