textGranular activated carbon (GAC) is commonly used to remove synthetic organic chemicals (SOCs) from contaminated water. Replacement and subsequent disposal of spent GAC is expensive. By increasing the service life of the GAC, costs can be decreased. Encouragement of biodegradation (metabolism and cometabolism) where one or more of the SOCs are biodegradable can lengthen the GAC service life for some SOC mixtures. The service life increases because a biofilm that forms on the GAC can biodegrade SOCs, thereby reducing competition for GAC adsorption sites and allowing any remaining SOCs to adsorb onto the GAC to a greater extent than in the absence of biodegradation. SOCs in both the aqueous phase and adsorbed on the GAC are availa...
The presence of micropollutants in surface water threatens the production of high quality and safe d...
The impact of anaerobic biological activity on the capacity of granular activated carbon (GAG) to ad...
Granular activated carbon (GAC) filtration is an important technology for micropollutant removal fro...
textGranular activated carbon (GAC) is commonly used to remove synthetic organic chemicals (SOCs) f...
The purpose of this paper is to clarify the effect of the two different GAC types (steam activated o...
Granular activated carbon (GAC) adsorption has found wide application as a treatment process for the...
The disposal of spent activated carbon (AC) will inevitably create secondary pollution. In overcomin...
Natural organic matter (NOM) in surface waters negatively impacts drinking water treatment and is a ...
This paper examines the potential of a biological activity control system (BACS) for biological act...
Ozone, electrolysis and granular activated carbon (GAC) were examined as potential post-treatments t...
This paper shows there is excellent potential to remove organic carbon by biological activated carbo...
Biological activated carbon (BAC) filters can be used to remove residual total organic carbon (TOC) ...
The presence of micropollutants in surface water is a potential threat for the production of high qu...
Drinking water treatment plants use granular activated carbon (GAC) to adsorb micropollutants, but t...
Since the increasing pollutions from industrials, agricultures and domestic discharge, water supplie...
The presence of micropollutants in surface water threatens the production of high quality and safe d...
The impact of anaerobic biological activity on the capacity of granular activated carbon (GAG) to ad...
Granular activated carbon (GAC) filtration is an important technology for micropollutant removal fro...
textGranular activated carbon (GAC) is commonly used to remove synthetic organic chemicals (SOCs) f...
The purpose of this paper is to clarify the effect of the two different GAC types (steam activated o...
Granular activated carbon (GAC) adsorption has found wide application as a treatment process for the...
The disposal of spent activated carbon (AC) will inevitably create secondary pollution. In overcomin...
Natural organic matter (NOM) in surface waters negatively impacts drinking water treatment and is a ...
This paper examines the potential of a biological activity control system (BACS) for biological act...
Ozone, electrolysis and granular activated carbon (GAC) were examined as potential post-treatments t...
This paper shows there is excellent potential to remove organic carbon by biological activated carbo...
Biological activated carbon (BAC) filters can be used to remove residual total organic carbon (TOC) ...
The presence of micropollutants in surface water is a potential threat for the production of high qu...
Drinking water treatment plants use granular activated carbon (GAC) to adsorb micropollutants, but t...
Since the increasing pollutions from industrials, agricultures and domestic discharge, water supplie...
The presence of micropollutants in surface water threatens the production of high quality and safe d...
The impact of anaerobic biological activity on the capacity of granular activated carbon (GAG) to ad...
Granular activated carbon (GAC) filtration is an important technology for micropollutant removal fro...