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The Impact of Covid-19 to Domestic Water Usage and Rainwater Harvesting at an Office Building in Jakarta

Open Access
|Jun 2022

References

  1. [1] NASA, Freshwater Availability. Earthdata, 2020, https://earthdata.nasa.gov/learn/toolkits/freshwater-availability.
  2. [2] MATT, F.: Explained. The World Water Crisis, 2018.
  3. [3] BUREK, P. – SATOH, Y. – FISCHER, G. – ET AL.: Final Report. Laxenburg, 2016, pp. 1-113, http://pure.iiasa.ac.at/id/eprint/13008/1/WP-16-006.pdf.
  4. [4] UNITED NATIONS ENVIRONMENT PROGRAMME: Raiwater harvesting and utilisation - An environmentally sound approach for sustainable urban water management: An introductory guide for decision-makers. 2002, https://www.ircwash.org/sites/default/files/213.1-01RA-17421.pdf.
  5. [5] SAMEKTO, C. – WINATA, E.: Potensi Sumber Daya Air di Indonesia, 2016.
  6. [6] PAM JAYA: Air Tanah Jakarta Sudah Disedot Secara Berlebihan. 2017, http://pamjaya.co.id/id/others/do-you-know/jakarta_ground_water_has_been_sucked_up_excessively-34.
  7. [7] SILVA, C. M. – SOUSA, V. – AND CARVALHO, N. V.: Evaluation of rainwater harvesting in Portugal: Application to single-family residences. Resources, Conservation and Recycling, Vol. 94, 2015, pp. 21-34.10.1016/j.resconrec.2014.11.004
  8. [8] SONG, J. – HAN, M. – KIM, T. IL. – ET AL.: Rainwater harvesting as a sustainable water supply option in Banda Aceh. Desalination, Vol. 248, Iss. 1-3, 2009, pp. 233-240, doi: 10.1016/j.desal.2008.05.060.
  9. [9] MEHRABADI, M. H. R. – SAGHAFIAN, B. – FASHI, F. H.: Assessment of residential rainwater harvesting efficiency for meeting non-potable water demands in three climate conditions. Resources, Conservation and Recycling, Vol. 73, 2013, pp. 86-93, doi: https://doi.org/10.1016/j.resconrec.2013.01.015.10.1016/j.resconrec.2013.01.015
  10. [10] STOCKHOLM ENVIRONMENT INSTITUTE: Rainwater Harvesting: A Lifeline for Human Well-Being, 2009, http://www.unep.org/Themes/Freshwater/PDF/Rainwater_Harvesting_090310b.pdf.
  11. [11] APPAN, A.: A dual-mode system for harnessing roofwater for non-potable uses. Urban Water, Vol. 1, Iss. 4, 2000, pp. 317-21, doi: 10.1016/s1462-0758(00)00025-x.
  12. [12] ZHANG, Y. – CHEN, D. – CHEN, L. – ET AL.: Potential for Rainwater Use in High-Rise Buildings in Australian Cities. Journal of Environmental Management, Vol. 91, Iss. 1, 2009, pp. 222-226, doi: 10.1016/j.jenvman.2009.08.008.
  13. [13] FEIZIZADEH, B. – OMARZADEH, D. – RONAGH, Z. – ET AL.: A Scenario-Based Approach For Urban Water Management In The Context Of The COVID-19 Pandemic And A Case Study For The Tabriz Metropolitan Area, Iran, Science of the Total Environment, 2021.10.1016/j.scitotenv.2021.148272
  14. [14] CAMPOS, M. A. S. – CARVALHO, S. L. – MELO, S. K. – ET AL.: Impact of the COVID-19 pandemic on water consumption behaviour. Water Supply, 2021. pp. 4058-4067.10.2166/ws.2021.160
  15. [15] KALBUSCH, A. – HENNING, E. – BRIKALSKI, M. P. – ET AL.: Impact of coronavirus (COVID-19) spread-prevention actions on urban water consumption. Resources, Conservation & Recycling, Vol. 163, 2020.10.1016/j.resconrec.2020.105098
  16. [16] BADAN STANDARDISASI NASIONAL: SNI-03-7065-2005 Tata cara perencanaan sistem plambing, 03-7065th – 20th edition. Jakarta: Badan Standardisasi Nasional, 2005.
  17. [17] SAYEED, A. – RAHMAN, M. H. – BUNDSCHUH, J. – ET AL.: Handwashing with soap: A concern for overuse of water amidst the COVID-19 pandemic in Bangladesh. Groundwater for Sustainable Development, Vol. 13, 2021.10.1016/j.gsd.2021.100561
  18. [18] SOUTH PACIFIC APPLIED GEOSCIENCE COMMISSION: Harvesting the Heavens: Guidelines for Rainwater Harvesting in Pacific Island Countries. 2004.
  19. [19] BADAN STANDARDISASI NASIONAL: SNI 2415:2016 Tata cara perhitungan debit banjir rencana. Jakarta: Badan Standardisasi Nasional, 2016.
  20. [20] KUMAR, M. D.: Roof Water Harvesting for Domestic Water Security: Who Gains and Who Loses? Water International, Vol. 29, Iss. 1, 2004, pp. 43-53.10.1080/02508060408691747
  21. [21] AYAD, A. – KHALIFA, A. – FAWY, M.: A Model - Based Approach for Leak Detection in Water Distribution Networks Based on Optimisation and GIS Applications. Civil and Environmental Engineering, Vol. 17, Iss. 1, 2021, pp. 277-285.10.2478/cee-2021-0029
  22. [22] ZABIDI, H. A. – GOH, H. W. – CHANG, C. K., ET AL.: A Review of Roof and Pond Rainwater Harvesting Systems for Water Security: The Design. Performance and Way Forward. Water, Vol. 12, 2020.10.20944/preprints202009.0549.v1
  23. [23] CHAN, N. W.: The N-Park Negalitres Project: A pilot water-saving initiative using green technology and changing water use behaviour. Water and the Green Economy Capacity Development Aspects. Bonn, UNW-DPC, 2012, pp. 75-90.
  24. [24] YANNOPOULOS, S. – GIANNOPOULOU, I. – SAROPOULOU, M. K.: Investigation of the Current Situation and Prospects for the Development of Rainwater Harvesting as a Tool to Confront Water Scarcity Worldwide. Water, Vol. 11, 2019.10.3390/w11102168
  25. [25] RITCHIE, H. – ROSER, M.: Urbanization. 2018, https://ourworldindata.org/urbanization.
DOI: https://doi.org/10.2478/cee-2022-0030 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 321 - 331
Published on: Jun 29, 2022
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 times per year

© 2022 Vittorio Kurniawan, Arianti Sutandi, Yenny Untari Liucius, Anugerah Tiffanyputri, Channy Saka, Maria Kevinia Sutanto, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.