Innovations in nanotechnology for water treatment
Инновации в нанотехнологиях очистки воды
2015-01-01
SCID: 54.1/uuupdve8
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nanobased materialsnanomembranesnanotechnologyphotocatalystswater and wastewater treatment
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Abstract (AI)
Important challenges in the global water situation, mainly resulting from worldwide population growth and climate change, require novel innovative water technologies in order to ensure a supply of drinking water and reduce global water pollution. Against this background, the adaptation of highly advanced nanotechnology to traditional process engineering offers new opportunities in technological developments for advanced water and wastewater technology processes. Here, an overview of recent advances in nanotechnologies for water and wastewater treatment processes is provided, including nanobased materials, such as nanoadsorbents, nanometals, nanomembranes, and photocatalysts. The beneficial properties of these materials as well as technical barriers when compared with conventional processes are reported. The state of commercialization is presented and an outlook on further research opportunities is given for each type of nanobased material and process. In addition to the promising technological enhancements, the limitations of nanotechnology for water applications, such as laws and regulations as well as potential health risks, are summarized. The legal framework according to nanoengineered materials and processes that are used for water and wastewater treatment is considered for European countries and for the USA.
Key Findings
1
European and U.S. legal frameworks for nanomaterials and nanotechnology-based water and wastewater processes require consideration in technology development.
2
Nanotechnology offers new opportunities to improve drinking-water production and reduce pollution by enhancing conventional water and wastewater treatment processes.
3
Potential health risks, legal and regulatory constraints, and uncertainty surrounding nanoengineered materials limit nanotechnology applications in water treatment.
4
Recent advances include nanoadsorbents, nanometals, nanomembranes, and photocatalysts, whose properties may provide advantages over conventional treatment technologies.
5
The implementation of nanomaterials faces technical barriers, and commercialization remains an important factor determining their adoption in water treatment.
Research Object
Nanotechnology-enabled materials and processes applied to water and wastewater treatment (including nanoadsorbents, nanometals, nanomembranes, and photocatalysts)
Research Subject
Recent technological advances, performance benefits, commercialization, technical barriers, regulatory frameworks, and potential health risks
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2015-01-01
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