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Removal of Arsenic Using a Cationic Polymer Gel Impregnated with Iron Hydroxide
Published on: June 28, 2019
L-cysteine-grafted polyacrylonitrile sheets with amphoteric adsorption sites enabling efficient removal of Hg(II)
Zhimin Wang1, Zijun Lu1, Yufen Xia1
1State Key Laboratory of Chemo/Biosensing and Chemometrics, Hunan University, Changsha 410082, PR China.
Abstract:
Conventional adsorbents for Hg(II) are not suitable for acidic environments because they degrade and lose activity. In this study, high-density sulfur and nitrogen-containing porous polyacrylonitrile sheet (HSN-PANS) was developed by grafting l-cysteine. The amphoteric HSN-PANS adsorbent can effectively remove Hg(II) from acidic wastewater, reducing its concentration from 11 mg/L to below the drinking water standard of 1 μg/L at pH 2. It shows high adsorption capacity (764 mg/g), strong anti-interference properties, and excellent selectivity. The adsorption mechanism involves coordination and electrostatic interactions. Thanks to its stable structure and efficient desorption, HSN-PANS demonstrates excellent acid resistance and reusability, retaining 99.9 % adsorption efficiency after 43 cycles. Furthermore, it performs reliably in industrial wastewater treatment. Notably, an HSN-PANS-packed column can treat about 5845 bed volumes (69 L) of Hg(II)-spiked acidic wastewater until reaching a breakthrough point of 1 μg/L, concentrating the adsorbed Hg(II) into 1.8 L of desorbent. This study demonstrates the potential of HSN-PANS as an effective adsorbent for directly and efficiently removing Hg(II) from acidic wastewater, providing a promising solution to reduce Hg(II) emissions in industrial processes.
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