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在连续流动超临界水氧化反应器中破坏和脱除全氟烷基物质(PFAS)基质:操作温度的影响。

Destruction and defluorination of PFAS matrix in continuous-flow supercritical water oxidation reactor: Effect of operating temperature.

机构信息

University of Washington, Mechanical Engineering Department, Seattle, WA, 98195, USA.

University of Washington, Mechanical Engineering Department, Seattle, WA, 98195, USA; Key Laboratory of Thermo-Fluid Science and Engineering of MOE, Energy and Power Engineering, Xi'an Jiaotong University, 28 Xianning West Road, Xi'an, 710049, China.

出版信息

Chemosphere. 2023 Jun;327:138358. doi: 10.1016/j.chemosphere.2023.138358. Epub 2023 Mar 9.

Abstract

Cleanup and disposal of stockpiles and waste streams containing per- and polyfluoroalkyl substances (PFAS) require effective end-of-life destruction/mineralization technologies. Two classes of PFAS, perfluoroalkyl carboxylic acids (PFCAs) and perfluoroalkyl sulfonic acids (PFSAs), are commonly found in legacy stockpiles, industrial waste streams, and as environmental pollutants. Continuous flow supercritical water oxidation (SCWO) reactors have been shown to destroy several PFAS and aqueous film-forming foams. However, a direct comparison of the SCWO efficacy for PFSAs and PFCAs has not been reported. We show the effectiveness of continuous flow SCWO treatment for a matrix of model PFCAs and PFSAs as a function of operating temperature. PFSAs appear to be significantly more recalcitrant than PFCAs in the SCWO environment. The SCWO treatment results in a destruction and removal efficiency of 99.999% at a T > 610 °C and at a residence time of ∼30 s. Fluoride recovery lags destruction PFAS at 510 °C and reaches >100% above 610 °C, confirming the formation of liquid and gaseous phase intermediate product during lower temperature oxidation. This paper establishes the threshold for destroying PFAS-containing liquids under SCWO conditions.

摘要

清理和处置含有全氟和多氟烷基物质 (PFAS) 的库存和废水流需要有效的寿命终结破坏/矿化技术。两类 PFAS,即全氟烷基羧酸 (PFCAs) 和全氟烷基磺酸 (PFSAs),通常存在于旧库存、工业废水中,并且是环境污染物。连续流动超临界水氧化 (SCWO) 反应器已被证明可破坏几种 PFAS 和水成膜泡沫。然而,尚未报道过 PFSAs 和 PFCAs 的 SCWO 效果的直接比较。我们展示了连续流动 SCWO 处理作为模型 PFCAs 和 PFSAs 矩阵的功能,作为操作温度的函数。在 SCWO 环境中,PFSAs 似乎比 PFCAs 更具抗降解性。在 T > 610°C 和停留时间约为 30 s 的情况下,SCWO 处理可实现 99.999%的破坏和去除效率。在 510°C 时,氟化物的回收滞后于破坏 PFAS,在 610°C 以上时回收率超过 100%,这证实了在较低温度氧化过程中形成了液态和气态中间产物。本文确定了在 SCWO 条件下破坏含 PFAS 液体的阈值。

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