| Literature DB >> 32501429 |
Anila Venugopal1, Harsha Ganesan1, Suresh Selvapuram Sudalaimuthu Raja2, Vivekanandhan Govindasamy3, Manimekalan Arunachalam4, Arul Narayanasamy5, Palanisamy Sivaprakash6, Pattanathu K S M Rahman7, Abilash Valsala Gopalakrishnan8, Zothan Siama9, Balachandar Vellingiri1.
Abstract
The novel coronavirus disease 2019, a pandemic of global concern, caused by the novel severe acute respiratory syndrome coronavirus 2 has severely revealed the need for public monitoring and efficient screening techniques. Despite the various advancements made in the medical and research field, containment of this virus has proven to be difficult on several levels. As such, it is a necessary requirement to identify possible hotspots in the early stages of any disease. Based on previous studies carried out on coronaviruses, there is a high likelihood that severe acute respiratory syndrome coronavirus 2 may also survive in wastewater. Hence, we propose the use of nanofiber filters as a wastewater pretreatment routine and upgradation of existing wastewater evaluation and treatment systems to serve as a beneficial surveillance tool.Entities:
Keywords: Biofilm; COVID-19; Monitoring tool; Nanofiber; Surveillance; Wastewater treatment
Year: 2020 PMID: 32501429 PMCID: PMC7245214 DOI: 10.1016/j.coesh.2020.05.003
Source DB: PubMed Journal: Curr Opin Environ Sci Health ISSN: 2468-5844
Water treatment methods. The table depicts the various possible techniques available for use in the wastewater treatment process and their impact on microorganisms. BOD, Biological Oxygen Demand.
| Treatments | Action | Pathogen level |
|---|---|---|
| Nanofibre membrane | Capture of high-risk microorganisms for screening | High |
| Sedimentation | Suspended solids removed | High |
| Aeration | BOD reduction | Medium |
| Pathogen removal | ||
| Filtration | Nutrient management | Medium |
| Coagulation | Pathogen removal | Low |
| Flocculation | Pathogen removal | Low |
| Precipitation | Pathogen removal | Low |
| Ion exchange | Pathogen removal | Low |
| Adsorption | Pathogen removal | Low |
| Membrane filtration | Pathogen removal | Low |
| Electrochemical | Pathogen removal | Low |
| Chlorination | Pathogen removal | Low |
| Ozonation | Pathogen removal | Low |
| Ultraviolet radiation | Pathogen removal | Low |
Figure 1An illustration of an upgraded wastewater treatment facility. The figure shows the entire upgraded wastewater treatment routine along with the pretreatment process necessary for environmental surveillance.