Enhanced sulfamethazine removal by steam-activated invasive plant-derived biochar

  • Rajapaksha, Anushka Upamali
  • Vithanage, Meththika
  • Ahmad, Mahtab
  • Seo, Dong-Cheol
  • Cho, Ju-Sik
  • 외 3명
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초록

Recent investigations have shown frequent detection of pharmaceuticals in soils and waters posing potential risks to human and ecological health. Here, we report the enhanced removal of sulfamethazine (SMT) from water by physically activated biochar. Specifically, we investigated the effects of steam-activated biochars synthesized from an invasive plant (Sicyos angulatus L) on the sorption of SMT in water. The properties and sorption capacities of steam-activated biochars were compared with those of conventional non-activated slow pyrolyzed biochars. Sorption exhibited pronounced pH dependence, which was consistent with SMT speciation and biochar charge properties. A linear relationship was observed between sorption parameters and biochar properties such as molar elemental ratios, surface area, and pore volumes. The isotherms data were well described by the Freundlich and Temkin models suggesting favorable chemisorption processes and electrostatic interactions between SMT and biochar. The steam-activated biochar produced at 700 degrees C showed the highest sorption capacity (37.7 mg g(-1)) at pH 3, with a 55% increase in sorption capacity compared to that of non-activated biochar produced at the same temperature. Therefore, steam activation could potentially enhance the sorption capacities of biochars compared to conventional pyrolysis. (C) 2015 Elsevier B.V. All rights reserved.

키워드

Activated carbonBlack carbonCharcoalEmerging contaminantsSlow pyrolysisVeterinary antibioticsADSORPTIONSORPTIONSOILPYROLYSISCARBONSULFAMETHOXAZOLEIMMOBILIZATIONCONTAMINANTSWATERLEAD
제목
Enhanced sulfamethazine removal by steam-activated invasive plant-derived biochar
저자
Rajapaksha, Anushka UpamaliVithanage, MeththikaAhmad, MahtabSeo, Dong-CheolCho, Ju-SikLee, Sung-EunLee, Sang SooOk, Yong Sik
DOI
10.1016/j.jhazmat.2015.02.046
발행일
2015-06-15
유형
Article
저널명
Journal of Hazardous Materials
290
페이지
43 ~ 50