Hélène Niculita-Hirzel
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Recent Grants
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Technology evaluation for vapor-water mixing device to remove and control biofilms and scale in shower systems
Open Date: 2022-05-01
Close Date: 2022-11-01
Grant: Close
Gjosa a revolution in the world of showering: the combination of a new experience with the most ecologically friendly shower
Open Date: 2018-02-01
Close Date: 2021-06-01
Grant: Close
Acquisition of a Vitrocell equipment for in vitro exposure of human respiratory cells to aerosols
Open Date: 2014-01-01
Close Date: 2014-01-01
Grant: Close
Immune response to a combine exposure of microbial compounds: assessment of occupational health risk to complex bioaerosols
Open Date: 2013-02-01
Close Date: 2015-02-01
Grant: Close
AirFusTox " Risk Assessment of risk exposure to air micro-organisms in the grain industry. Focus on the most common toxic mold in the Northern Hemisphere: Fusarium spp”
Open Date: 2011-12-01
Close Date: 2014-12-01
Articles (10)
The Accumulation of Heavy Metals in Shower System Biofilms: Implications for Emissions and Indoor Human Exposure
Biofilms play a crucial role in absorbing various metals from water, including copper, lead, iron, chromium, nickel, zinc, cadmium, and barium. While their presence was revealed in shower system biofilms, the factors affecting metal accumulation in shower system biofilms were poorly explored. This study aimed to investigate the capacity of shower hose biofilms to accumulate heavy metals, in particular in biofilms growing in energy-efficient showerhead systems, and evaluate the potential emission in water and aerosols of metal pollutants during showering. The adsorption efficiency of various metals in biofilms was assessed by ICP/MS and revealed that biofilms accumulate metals as they age and as biofilm biomass increases, indicating a potential influence of heavy metals on biofilm ecology. Furthermore, the study examined the emission of heavy metals during showering and found that it was sporadic and limited primarily to copper and zinc. These findings raise concerns regarding the role of biofilms in both retaining and releasing metal contaminants in water distribution systems, as well as the associated risk of inhalation during showering. By shedding light on the accumulation dynamics of heavy metals in shower hose biofilms and their potential emission patterns, this research highlights the need for further investigation into the impact of biofilms on water quality and human exposure to metal pollutants. The findings underscore the importance of considering biofilm-related processes when addressing the overall management of heavy metal contamination in shower systems and its potential implications for public health.
Year:
2023
Collaborators (8)
Florent Mazel
University of Lausanne
Nicolas GUEX
Head, Bioinformatics Competence Center
University of Lausanne
Heidi Mod
University of Helsinki
David Singer
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Gabriel Bekö
Technical University of Denmark
ALLEGRA Séverine
Professeure des Universités
Université Jean Monnet Saint-Etienne
Pawel Wargocki
Technical University of Denmark
Martin Täubel
Chief researcher
Finnish Institute for Health and Welfare

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