This study examines the feasibility of a novel nanofiltration membrane bioreactor (NF-MBR) followed by reverse osmosis (RO) process for water reclamation at 90% recovery and using an ultrafiltration MBR (UF-MBR)+RO as baseline for comparison. Both MBRs adopted the same external hollow fiber membrane configurations and operating conditions. The collected permeates of the MBRs were subsequently fed to the respective RO systems. The results showed that the NF-MBR (operated at a constant flux of 10 L/m2h) achieved superior MBR permeate quality due to enhanced biodegradation and high rejection capacity of the NF membrane, leading to lower RO fouling rates (∼3.3 times) as compared to the UF-MBR. Further analysis indicated that the cake layer foul...
Recent studies have confirmed the advantages of low-pressure nanofiltration (NF) membranes in integr...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...
This study examines the feasibility of a novel nanofiltration membrane bioreactor (NF-MBR) followed ...
In this study, a novel nanofiltration membrane bioreactor (NF-MBR) was developed and integrated wit...
Global water use has been increasing at a rapid rate due to population growth, and more areas are fa...
2019-02-02Urban reliance on imported water and increasing water supply variability due to climate ch...
© 2014 Balaban Desalination Publications. All rights reserved. Abstract: This research was carried o...
WOS: 000431401200010Recovery of wastewater has become compulsory due to the reasons like lowered dis...
WOS: 000471238800030Membrane bioreactor (MBR) effluents of industrial wastewaters generally include ...
The use of recycled ultrafiltration (r-UF) membranes, originating from end-of-life reverse osmosis m...
Rising water demand due to population growth has driven the development of water technology with the...
The aim of this study was to demonstrate the complementarities of combining membrane bioreactor (MBR...
In this study, permeate from a hollow fiber polyethylene (PE) membrane bio-reactor (MBR) system trea...
WOS: 000471238800029In this study, some field tests were conducted at ITOB Organized Industrial Zone...
Recent studies have confirmed the advantages of low-pressure nanofiltration (NF) membranes in integr...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...
This study examines the feasibility of a novel nanofiltration membrane bioreactor (NF-MBR) followed ...
In this study, a novel nanofiltration membrane bioreactor (NF-MBR) was developed and integrated wit...
Global water use has been increasing at a rapid rate due to population growth, and more areas are fa...
2019-02-02Urban reliance on imported water and increasing water supply variability due to climate ch...
© 2014 Balaban Desalination Publications. All rights reserved. Abstract: This research was carried o...
WOS: 000431401200010Recovery of wastewater has become compulsory due to the reasons like lowered dis...
WOS: 000471238800030Membrane bioreactor (MBR) effluents of industrial wastewaters generally include ...
The use of recycled ultrafiltration (r-UF) membranes, originating from end-of-life reverse osmosis m...
Rising water demand due to population growth has driven the development of water technology with the...
The aim of this study was to demonstrate the complementarities of combining membrane bioreactor (MBR...
In this study, permeate from a hollow fiber polyethylene (PE) membrane bio-reactor (MBR) system trea...
WOS: 000471238800029In this study, some field tests were conducted at ITOB Organized Industrial Zone...
Recent studies have confirmed the advantages of low-pressure nanofiltration (NF) membranes in integr...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...
Increasing water shortages drive the need for water reuse. Membranes are a very suitable technology ...