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- W4309762009 abstract "The cyclophosphazene and triazine moieties based inorganic–organic hybrid nanoporous materials (CTHMs) have been synthesized. The material CTHM-2 synthesized by microwave-assisted method at 120 °C with microwave power of 400 W for 60 min possess the BET specific surface area of 95 m2/g. The CTHM-2 could reversibly adsorb Hg2+ ions from its aqueous solution of concentration 2 ppm of Hg2+ solution leaving behind a concentration of Hg2+ < 1 ppb (maximum permissible limit of the USEPA, BIS, and WHO in drinking water) in 90 min at pH of 6. A maximum adsorption capacity of 774 mg g−1 was estimated using a solution of 500 ppm. The adsorbent works well both at low (2 ppm) and high (500 ppm) initial Hg2+ concentrations. A mixed matrix membrane (MMM) prepared using CTHM-2 is capable of achieving the acceptable Hg2+ limit (<1 ppb) for drinking water with an initial concentration of 2 ppm upto 8 h, when 5 L of the feed solution was taken with permeate flux of 16 L m−2h−1 at 2.5 bar. The high and selective adsorption in the presence of interfering ions, easy regeneration and reusability rendered the CTHM-2 a potential adsorbent for removing Hg2+ ions at an industrial scale." @default.
- W4309762009 created "2022-11-29" @default.
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- W4309762009 date "2023-02-01" @default.
- W4309762009 modified "2023-10-16" @default.
- W4309762009 title "Adsorption of Hg2+ on cyclophosphazene and triazine moieties based inorganic-organic hybrid nanoporous materials synthesized by microwave assisted method" @default.
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- W4309762009 doi "https://doi.org/10.1016/j.seppur.2022.122662" @default.
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