Nanoarchitectonics of porous carbon derived from urea-impregnated microporous triazine polymer in KOH activator for adsorptive removal of sulfonamides from water

  • Ahmed, Imteaz; 
  • Jhung, Sung Hwa
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초록

A microporous covalent-organic polymer (triazine polymer, referred to as MCTP), was synthesized and subsequentlycarbonized, after loading urea and KOH (serving as an additional nitrogen source and activator,respectively), through high-temperature pyrolysis. This process resulted in materials named KUCDCs, whichexhibited high porosity and a broader range of pore sizes compared to carbon materials produced without theaddition of urea and KOH, referred to as CDC. KUCDCs, CDC, and commercially available activated carbon (AC)were evaluated for their ability to remove sulfonamide drugs, sulfamethoxazole (SMX) and sulfachlorpyridazine(SCP), from aqueous solution. Among these materials, KUCDC-800, which was carbonized at a temperature of800 ◦C, demonstrated superior adsorption performances for sulfonamides, attributed to its high porosity, nitrogencontent, and presence of surface oxygen groups. The adsorption capacities for SMX and SCP on KUCDCwere notably higher than those on AC and MDC, with maximum capacities (Q0) of 619 and 554 mg/g for SMXand SCP, respectively. Notably, KUCDC-800 stands out as a recyclable adsorbent with the highest reported Q0 forSMX to date under near-neutral conditions. The exceptional performance of KUCDC in adsorbing SMX could beexplained by its high porosity and surface functionalities for hydrogen bonding interactions with the adsorbate.

키워드

Adsorption; Covalent-organic polymer; porous carbon with N doping; Pyrolysis; Sulfonamide antibiotics; METAL-ORGANIC FRAMEWORKS; SULFAMETHOXAZOLE; DENITROGENATION; PERFORMANCE; MOFS
제목
Nanoarchitectonics of porous carbon derived from urea-impregnated microporous triazine polymer in KOH activator for adsorptive removal of sulfonamides from water
저자
Ahmed, Imteaz; Jhung, Sung Hwa
DOI
10.1016/j.jiec.2024.08.041
발행일
2025-03-25
유형
Article
저널명
Journal of Industrial and Engineering Chemistry
권
143
페이지
392 ~ 402