Title of article :
Well-head arsenic removal units in remote villages of Indian subcontinent: Field results and performance evaluation
Author/Authors :
Sudipta Sarkar، نويسنده , , Anirban Gupta، نويسنده , , Ranjan K. Biswas، نويسنده , , Arun K. Deb، نويسنده , , John E. Greenleaf، نويسنده , , Arup K. SenGupta، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
11
From page :
2196
To page :
2206
Abstract :
Since 1997, over 135 well-head arsenic removal units have been installed in remote villages in the Indian state of West Bengal bordering Bangladesh. Every component of the arsenic removal treatment system including activated alumina sorbent is procured indigenously. Each unit serves approximately 200–300 households and contains about 100 L of activated alumina. No chemical addition, pH adjustment or electricity is required for operating these units. The arsenic concentration in the influent varies from around 100 μg/L to greater than 500 μg/L. In the treated water, arsenic concentration is consistently below 50 μg/L. The units are capable of removing both arsenites and arsenates from the contaminated groundwater for several months, often exceeding 10,000 bed volumes. In the top portion of the column, the dissolved iron present in ground water is oxidized by atmospheric oxygen into hydrated Fe(III) oxides or HFO particles which in turn selectively bind both As(III) and As(V). Upon exhaustion, these units are regenerated by caustic soda solution followed by acid wash. The arsenic-laden spent regenerant is converted into a small volume sludge (less than 500 g) and contained over a coarse sand filter in the same premise requiring no disposal. Many units have been operating for several years without any significant operational difficulty. The treated water is used for drinking and cooking. Most importantly, the villagers are responsible for the day to day operation and the upkeep of the units.
Keywords :
Arsenic removal , India , Bangladesh , Well-head unit , activated alumina , Hydrated iron oxides , Arsenic(III) , Arsenic(V) , ion exchange , Arsenic crisis
Journal title :
Water Research
Serial Year :
2005
Journal title :
Water Research
Record number :
772443
Link To Document :
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