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使用二氢左旋葡萄糖酮(Cyrene)对非均质地层水系统中非水相液体(NAPL)污染进行绿色修复的微流控研究

Microfluidic Study on Green Remediation of Nonaqueous Phase Liquid (NAPL) Contamination in Heterogeneous Groundwater Systems Using Dihydrolevoclucosenone (Cyrene).

作者信息

Wang Xiaopu, Zhao Hailong, Zheng Tianyuan, Li Yan, Wang Xu, Wang Qingxuan, Long Tao, Tsakiroglou Christos, Luo Jian

机构信息

State Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China), Qingdao 266580, China.

School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, China.

出版信息

Environ Sci Technol. 2025 Apr 8;59(13):6850-6862. doi: 10.1021/acs.est.4c11735. Epub 2025 Mar 27.

Abstract

One of the primary challenges in conventional remediation of nonaqueous phase liquid (NAPL) contamination in groundwater is the heterogeneous nature of the groundwater system. Conventional remediation agents are often carried away by groundwater flow in high-permeability layers, making it difficult to access NAPL contaminants in low-permeability layers and are prone to generate secondary contamination. This study explores the use of dihydrolevoclucosenone (Cyrene), a bioderived green solvent, as an alternative to traditional remediating agents for NAPL remediation. Through microfluidic experiments and accompanying numerical modeling, we demonstrate that Cyrene enhances the dissolution and mobilization of NAPL contaminants, particularly in low-permeability zones, achieving residual NAPL reductions of up to 80% compared with water and Tween 80 solutions. These findings underscore Cyrene's dual environmental benefits as an eco-friendly solvent for both treating solid waste (e.g., stalks) and for NAPL remediation, paving the way for sustainable and green solutions in environmental management.

摘要

传统的地下水非水相液体(NAPL)污染修复面临的主要挑战之一是地下水系统的非均质性。传统修复剂常常被高渗透层中的地下水流带走,难以接触到低渗透层中的NAPL污染物,并且容易产生二次污染。本研究探索使用二氢左旋葡萄糖酮(Cyrene),一种生物衍生的绿色溶剂,作为传统修复剂的替代品用于NAPL修复。通过微流体实验及伴随的数值模拟,我们证明Cyrene能增强NAPL污染物的溶解和迁移,特别是在低渗透区域,与水和吐温80溶液相比,可使残留NAPL减少高达80%。这些发现凸显了Cyrene作为一种环保溶剂在处理固体废物(如秸秆)和NAPL修复方面的双重环境效益,为环境管理中的可持续和绿色解决方案铺平了道路。

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