Modeling adsorption kinetics of trichloroethylene onto biochars derived from soybean stover and peanut shell wastes

  • Ahmad, Mahtab
  • Lee, Sang Soo
  • Oh, Sang-Eun
  • Mohan, Dinesh
  • Moon, Deok Hyun
  • 외 2명
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초록

Trichloroethylene (TCE) is one of the most hazardous organic pollutants in groundwater. Biochar produced from agricultural waste materials could serve as a novel carbonaceous adsorbent for removing organic contaminants from aqueous media. Biochars derived from pyrolysis of soybean stover at 300 A degrees C and 700 A degrees C (S-300 and S-700, respectively), and peanut shells at 300 A degrees C and 700 A degrees C (P-300 and P-700, respectively) were utilized as carbonaceous adsorbents to study batch aqueous TCE remediation kinetics. Different rate-based and diffusion-based kinetic models were adopted to understand the TCE adsorption mechanism on biochars. With an equilibrium time of 8-10 h, up to 69 % TCE was removed from water. Biochars produced at 700 A degrees C were more effective than those produced at 300 A degrees C. The P-700 and S-700 had lower molar H/C and O/C versus P-300 and S-300 resulting in high aromaticity and low polarity accompanying with high surface area and high adsorption capacity. The pseudo-second order and intraparticle diffusion models were well fitted to the kinetic data, thereby, indicating that chemisorption and pore diffusion were the dominating mechanisms of TCE adsorption onto biochars.

키워드

Black carbonCharcoalCrop residueProximate analysisSlow pyrolysisSorption dynamicsSHOOTING RANGE SOILACTIVATED CARBONAQUEOUS-SOLUTIONCONTAMINATED SOILSCR(VI) REDUCTIONRAPESEED RESIDUEZEROVALENT IRONSEGGSHELL WASTEHEAVY-METALSSORPTION
제목
Modeling adsorption kinetics of trichloroethylene onto biochars derived from soybean stover and peanut shell wastes
저자
Ahmad, MahtabLee, Sang SooOh, Sang-EunMohan, DineshMoon, Deok HyunLee, Young HanOk, Yong Sik
DOI
10.1007/s11356-013-1676-z
발행일
2013-12
유형
Article; Proceedings Paper
저널명
Environmental Science and Pollution Research
20
12
페이지
8364 ~ 8373