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All Outputs (7)

The control of pathogens in stored rainwater using direct electrochemical activation (2022)
Conference Proceeding
Clayton, G., Fox, B., Steer, M., Thorn, R., & Reynolds, D. (2022). The control of pathogens in stored rainwater using direct electrochemical activation. In IWRA Proceedings

Purpose of study or research hypothesis: The main study aim was to control waterborne pathogens using small-scale direct electrochemical activation. Key issue(s) or problem(s) addressed: Rainwater harvesting systems enable households o... Read More about The control of pathogens in stored rainwater using direct electrochemical activation.

Clean water for all (2022)
Digital Artefact
Clayton, G., Steven, J., Thorn, R., & Reynolds, D. (2022). Clean water for all. [Website]

The World Health Organization (WHO) and the United Nations Children’s Fund (UNICEF) estimated that, as of 2020, 2 billion people across the globe did not have access to safely managed drinking water. Ideally, safely managed drinking water should b... Read More about Clean water for all.

Managing potential pathogens in stored rainwater using small-scale in-situ electrochemical activation (2022)
Presentation / Conference
Clayton, G., Fox, B., Steer, M., Thorn, R., & Reynolds, D. (2022, September). Managing potential pathogens in stored rainwater using small-scale in-situ electrochemical activation. Presented at International Water Association World Water Congress and Exhibition, Copenhagen

Rainwater can be a lifeline for many people who do not have piped water supplies, experience dry seasons, or live-in fresh water scarce areas. The quality of stored rainwater can deteriorate over time, due to increasing concentrations of contaminants... Read More about Managing potential pathogens in stored rainwater using small-scale in-situ electrochemical activation.

The control of waterborne pathogenic bacteria in fresh water using a biologically active filter (2022)
Journal Article
Steven, J. A. C., Thorn, R. M. S., Robinson, G. M., Turner, D., Lee, J. E., & Reynolds, D. M. (2022). The control of waterborne pathogenic bacteria in fresh water using a biologically active filter. npj Clean Water, 5(1), 30. https://doi.org/10.1038/s41545-022-00169-y

The aim of this study was to investigate the control of three species of bacteria commonly associated with biologically contaminated water, using biofiltration. In this study, a laboratory-scale biofilter system was used to investigate the control of... Read More about The control of waterborne pathogenic bacteria in fresh water using a biologically active filter.

A case study: The deployment of a novel in situ fluorimeter for monitoring biological contamination within the urban surface waters of Kolkata, India (2022)
Journal Article
Fox, B., Thorn, R., Dutta, T., Bowes, M., Read, D., & Reynolds, D. (2022). A case study: The deployment of a novel in situ fluorimeter for monitoring biological contamination within the urban surface waters of Kolkata, India. Science of the Total Environment, 842, 156848. https://doi.org/10.1016/j.scitotenv.2022.156848

The quality and health of many of our vital freshwater systems are poor. To tackle this with ever increasing pressures from anthropogenic and climatic changes, we must improve water quality monitoring and devise and implement more appropriate water q... Read More about A case study: The deployment of a novel in situ fluorimeter for monitoring biological contamination within the urban surface waters of Kolkata, India.

The in situ production of aquatic fluorescent organic matter in a simulated freshwater laboratory model (2022)
Journal Article
Perrin, E. M., Thorn, R. M., Sargeant, S. L., Attridge, J. W., & Reynolds, D. M. (2022). The in situ production of aquatic fluorescent organic matter in a simulated freshwater laboratory model. Frontiers in Microbiology, 13, Article 817976. https://doi.org/10.3389/fmicb.2022.817976

Dissolved organic matter (DOM) is ubiquitous throughout aquatic systems. Fluorescence techniques can be used to characterize the fluorescing proportion of DOM, aquatic fluorescent organic matter (AFOM). AFOM is conventionally named in association wit... Read More about The in situ production of aquatic fluorescent organic matter in a simulated freshwater laboratory model.