Efficiency of Bank Filtration and Post-Treatment
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2019Beskrivning: 1 electronic resource (352 p.)Innehållstyp: - text
- computer
- online resource
- 9783039213054
- 9783039213061
- Technology, Engineering, Agriculture, Industrial processes
- Technology: general issues
- History of engineering and technology
- Damodar
- Ganga
- Krishna River
- LC-OCD
- Nakdong River
- PARAFAC-EEM
- PHREEQC
- Yamuna
- analytical method
- anoxic
- attenuation
- bank filtrate
- bank filtrate portion
- bank filtration
- biofilm
- climate change
- clogging
- collector wells
- column experiments
- decentralized capillary nanofiltration
- disinfection
- disinfection by-products
- dissolved organic carbon (DOC)
- dissolved organic matter
- drinking water hydropower
- drinking water treatment
- droughts
- electro-chlorination
- energy efficiency
- energy generation
- entrance velocity
- environmental monitoring
- filter cake
- floods
- fluorescence excitation-emission matrix
- gabapentin
- groundwater
- heavy metals
- high temperature
- hydrochemistry
- hydrological trends
- in membrane comparison
- inline electrolysis
- inorganic chemicals
- iron
- manganese
- microorganisms
- micropollutants
- mirror-image method
- nitrate
- online monitoring
- optimization
- organic carbon
- organic matter composition
- organic matter degradation
- organic micropollutants
- out
- oxypurinol
- pathogen barrier
- performance
- pesticides
- pharmaceutical residues
- pharmaceutic
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Riverbank filtration (RBF) schemes for the production of drinking water are increasingly challenged by new constituents of concern, such as organic micropollutants and pathogens in the source water and hydrological flow variations due to weather extremes. RBF and new technology components are integrated and monitoring and operating regimes are adopted to further optimize water treatment in bank filtration schemes for these new requirements. This Special Issue presents results from the EU project AquaNES "Demonstrating synergies in combined natural and engineered processes for water treatment systems" (www.aquanes.eu). Additionally, papers from other research groups cover the efficiency of bank filtration and post-treatment, advantages and limitations of combining natural and engineered processes, parameter-specific assessment of removal rates during bank filtration, and the design and operation of RBF wells. The feasibility, design, and operation of RBF schemes under specific site conditions are highlighted for sites in the US, India, and South Korea
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