Study on the Application and Sustainable Benefits of Greywater Management Integrate with Green Walls
DOI:
https://doi.org/10.61173/2dmb1436Keywords:
Greywater management, green wall, sustainability, environmentAbstract
In the context of global climate change, population growth and socio-economic development, many cities are facing increasing water stress and water scarcity. Greywater, which makes up a substantial proportion of domestic wastewater, has the potential to be reused for non-potable purposes. Therefore, greywater management has received increasing attention in recent years and combining it with green walls is considered an innovative approach. Based on the perspective of sustainable development and by reviewing a series of existing studies, this paper analyzes the technology, application, and perpetual benefits of using green walls for greywater management. The feasibility of this approach is confirmed by modular and standing green wall facilities and systems that have been commercially applied. Greywater treatment with green walls provides a range of environmental benefits by removing more than half of the major pollutants and meeting local non-potable water quality standards in a cost-effective manner. At the same time, the use of greywater to irrigate green wall plants could benefit their growth to a certain extent, which can also have positive socio-economic benefits. However, the lack of infrastructure, technology, or policy support in some developing or underdeveloped regions may have a negative impact on its application. Nevertheless, in the future, the combination of greywater management and green walls has a relatively wide application and promotion prospects in water-scarce urban areas.References
[1] Elhegazy, H., & Eid, M. M. A state-of-the-art-review on grey water management: A survey from 2000 to 2020s. Water Science and Technology, 2020, 82(12): 2786-2797.
[2] Prodanovic, V., Hatt, B., McCarthy, D., Zhang, K., & Deletic, A. Green walls for greywater reuse: Understanding the role of media on pollutant removal. Ecological Engineering, 2017, 102: 625-635.
[3] Paulo, P. L., Azevedo, C., Begosso, L., Galbiati, A. F., Boncz, M. A. Natural systems treating greywater and blackwater on-site: Integrating treatment, reuse and landscaping, Ecological Engineering, 2013, 50: 95-100.
[4] Prodanovic, V., McCarthy, D., Hatt, B., & Deletic, A. Designing green walls for greywater treatment: The role of plants and operational factors on nutrient removal. Ecological Engineering, 2019,130: 184-195.
[5] Anangadan, S. M., Pradhan, S., Saththasivam, J., McKay, G., & Mackey, H. R. Evaluation of Greywater as a Sustainable Source of Irrigation for Ornamental Crops in Green Walls—A Study of Plant and Soil Using Ruellia Tuberosa. Sustainability, 2024, 16(3): 1183.
[6] Mankiewicz, P., Borsuk, A., Ciardullo, C., Hénaff, E., & Dyson, A. Developing design criteria for active green wall bioremediation performance: Growth media selection shapes plant physiology, water and air flow patterns. Energy and Buildings, 2022, 260: 111913.
[7] Sami, M., Hedström, A., Kvarnström, E., McCarthy, D. T., & Herrmann, I. Greywater treatment in a green wall using different filter materials and hydraulic loading rates. Journal of Environmental Management, 2023, 340: 117998.
[8] Irawati, E. B. & Basuki. Plant Characteristics for Green Wall Systems. Proceeding International Conference on Science and Engineering. 2020, 3: 77-80.
[9] Rysulova, M., Kaposztasova, D., & Vranayova, Z. Green walls as an approach in grey water treatment. In IOP Conference Series: Materials Science and Engineering, 2017, 245(7): 072049
[10] Prodanovic, V., Zhang, K., Hatt, B., McCarthy, D., & Deletic, A. Optimisation of lightweight green wall media for greywater treatment and reuse. Building and Environment, 2018, 131: 99-107.
[11] Khajvand, M., Mostafazadeh, A. K., Drogui, P., & Tyagi, R. D. Management of greywater: environmental impact, treatment, resource recovery, water recycling, and decentralization. Water Science & Technology, 2022, 86(5): 909-937.
[12] Prodanovic, V., Hatt, B., McCarthy, D., & Deletic, A. Green wall height and design optimisation for effective greywater pollution treatment and reuse. Journal of Environmental Management, 2020, 261: 110173.
[13] Masi, F., Bresciani, R., Rizzo, A., Edathoot, A., Patwardhan, N., Panse, D., & Langergraber, G. Green walls for greywater treatment and recycling in dense urban areas: a casestudy in Pune. Journal of Water, Sanitation and Hygiene for Development, 2016, 6(2): 342-347.
[14] Lakho, F. H., Vergote, J., Khan, H. I. U. H., Depuydt, V., Depreeuw, T., Van Hulle, S. W., & Rousseau, D. P. Total value wall: Full scale demonstration of a green wall for grey water treatment and recycling. Journal of Environmental Management, 2021, 298: 113489.
[15] Yadav, R. K., Sahoo, S., Yadav, A. K., & Patil, S. A. Green wall system coupled with slow sand filtration for efficient greywater management at households. NPJ Clean Water, 2023, 6(1): 73.
[16] Madungwe, E., & Sakuringwa, S. Greywater reuse: A strategy for water demand management in Harare?. Physics and Chemistry of the Earth, Parts A/B/C, 2007, 32(15-18): 1231- 1236.
[17] Filali, H., Barsan, N., Souguir, D., Nedeff, V., Tomozei, Dean&Francis Ruoqian Lu C., & Hachicha, M. Greywater as an alternative solution for a sustainable management of water resources—a review. Sustainability, 2022, 14(2): 665.
[18] Mckenzie, RS. & Wegelin, W. Challenges facing the implementation of water demand management initiatives in Gauteng Province. Water SA, 2009, 35(2): 168-174.
[19] Ascione, F., De Masi, R. F., Mastellone, M., Ruggiero, S., & Vanoli, G. P. Green walls, a critical review: Knowledge gaps, design parameters, thermal performances and multi-criteria design approaches. Energies, 2020, 13(9): 2296.
[20] Liu, Y., Zheng, H., & Zhao, J. Reframing water demand management: a new co-governance framework coupling supplyside and demand-side solutions toward sustainability. Hydrology and Earth System Sciences, 2024, 28(10): 2223-2238.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 by the authors.

This work is licensed under a Creative Commons Attribution 4.0 International License.
