Nitrate Removal from Water Using Synthesis Nanoscale Zero-Valent Iron (NZVI)
Shima Ziajahromi, Ali Daryabeigi Zand, Meysam Khanizadeh
Abstract
Shima Ziajahromi, Ali Daryabeigi Zand, Meysam Khanizadeh
Abstract
This study was conducted to investigate chemical reduction efficiency of nitrate by synthesis na noscale zero-valent iron (NZVI) in aqueous solution, under aerobic condition. TEM image shows synthesis nano zero-valent iron has a size in the range of 40–150nm. Experimental results suggest that the reduction efficiency of nitrate decreased quickly with increasing initial pH value from 4 to 10 increased considerably with the increasing dosage of nanoscale zero-valent iron from 0.25 to 1gl -1 and did not vary much with initial nitrate concentration changing from 30 to 50 mg l -1 ( NO 3 -N). With reductive denitrification of nitrate by nano zero-valent iron, the removal rate of nitrate reached 80% in 60 min with nano zero-valent dosage of 1.0gl −1 and pH in 4, in room temperature.
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This study was conducted to investigate chemical reduction efficiency of nitrate by synthesis na noscale zero-valent iron (NZVI) in aqueous solution, under aerobic condition. TEM image shows synthesis nano zero-valent iron has a size in the range of 40–150nm. Experimental results suggest that the reduction efficiency of nitrate decreased quickly with increasing initial pH value from 4 to 10 increased considerably with the increasing dosage of nanoscale zero-valent iron from 0.25 to 1gl -1 and did not vary much with initial nitrate concentration changing from 30 to 50 mg l -1 ( NO 3 -N). With reductive denitrification of nitrate by nano zero-valent iron, the removal rate of nitrate reached 80% in 60 min with nano zero-valent dosage of 1.0gl −1 and pH in 4, in room temperature.
Key concepts: Zerovalent iron, Nitrate, Aqueous solution, Denitrification, Chemistry, Inorganic chemistry, Nitrite, Water treatment