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Fully-continuous supercritical fluid extraction of PAHs from soil slurries.

机译:从土壤泥浆中连续连续超临界流体萃取PAHs。

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The research aimed to implement a functional slurry level control system into a fully-continuous laboratory scale supercritical fluid extraction system. In addition, the ability of the extraction system to remove PAHs (naphthalene and phenanthrene) from slurried soil was investigated. 1.5% spiked soil slurries were extracted with supercritical CO2 at pressures of up to 9.73 MPa and temperatures between 33.8°C and 43.8°C.; Major operational and mass transfer improvements were realised with the implementation of the level control system. The mass transfer coefficient for naphthalene was as high as 5.1 x 10-3 s-1. In addition, the system successfully extracted phenanthrene from the slurry with mass transfer coefficients of up to 4.9 x 10-4 s -1. Specific recommendations were made to improve laboratory system and to advance the technology of fully-continuous SCFE of soil slurries.
机译:该研究旨在将功能性浆料液位控制系统实施到全连续实验室规模的超临界流体萃取系统中。此外,还研究了萃取系统从浆状土壤中去除PAHs(萘和菲)的能力。用超临界二氧化碳在压力高达9.73 MPa和温度在33.8°C和43.8°C之间的条件下提取了1.5%的加标土壤淤浆。液位控制系统的实施极大地改善了操作和传质。萘的传质系数高达5.1 x 10-3 s-1。此外,该系统成功地从浆料中提取了菲,传质系数高达4.9 x 10-4 s -1。提出了一些具体建议,以改善实验室系统并推进土壤泥浆全连续SCFE技术。

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