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Sorption and Desorption Kinetics of Naphthalene and Phenanthrene on Black Carbon in Sediment
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  • Sorption and Desorption Kinetics of Naphthalene and Phenanthrene on Black Carbon in Sediment
  • Sorption and Desorption Kinetics of Naphthalene and Phenanthrene on Black Carbon in Sediment
저자명
오상화,송동익,신원식,Oh. Sang-Hwa,Wu. Qi,Song. Dong-Ik,Shin. Won-Sik
간행물명
지하수토양환경
권/호정보
2011년|16권 6호|pp.79-94 (16 pages)
발행정보
한국지하수토양환경학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Black carbon (BC), a kind of high surface area carbonaceous material (HSACM), was isolated from Andong lake sediment. Sorption and desorption kinetics of naphthalene (Naph) and phenanthrene (Phen) in organic carbon (OC) and BC in the Andong lake sediment were investigated. Several kinetic models such as one-site mass transfer model (OSMTM), two-compartment first-order kinetic model (TCFOKM), and a newly proposed modified two-compartment first-order kinetic model (MTCFOKM) were used to describe the sorption and desorption kinetics. The MTCFOKM was the best fitting model. The MTCFOKM for sorption kinetics showed that i) the sorbed amounts of PAHs onto BC were higher than those onto OC, consistent with BET surface area; ii) the equilibration time for sorption onto BC was longer than those onto OC due to smaller size of micropore ($11.67{AA}$) of BC than OC ($38.18{AA}$); iii) initial sorption velocity of BC was higher than OC; and iv) the slow sorption velocity in BC caused the later equilibrium time than OC even though the fast sorption velocity was early completed in both BC and OC. The MTCFOKM also described the desorption of PAHs from the OC and BC well. After desorption, the remaining fractions of PAHs in BC were higher than those in OC due to stronger PAHs-BC binding. The remaining fractions increased with aging for both BC and OC.