首页> 外文期刊>Journal of Hazardous Materials >Environmental risk assessment of the anionic surfactant sodium lauryl ether sulphate in site-specific conditions arising from mechanized tunnelling
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Environmental risk assessment of the anionic surfactant sodium lauryl ether sulphate in site-specific conditions arising from mechanized tunnelling

机译:机械化隧穿在特定地点条件下阴离子表面活性剂月桂基醚硫酸钠的环境风险评估

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摘要

Sodium lauryl ether sulphate (SLES) is the anionic surfactant commonly utilized as the main synthetic chemical component in most foaming agents used in mechanized tunnelling. This produces huge amounts of soil debris which can contain residual concentrations of SLES. The absence of environmental quality standards for soil and water and the limited information about SLES persistence in real excavated soils do not facilitate any re-use of soil debris as by-products. The environmental risk assessment (ERA) of foaming agents containing SLES can be a valid tool for this purpose. In this study, an ERA analysis of SLES in 12 commercial formulations (cf) used for tunnelling excavation was performed. Various soils from different tunnel excavation sites were conditioned with the selected foaming agents containing SLES. Predicted or measured environmental concentrations (PECs, MECs) were determined and then compared with the Predicted No Effect Concentrations (PNECs) for both the terrestrial and aquatic compartments. The results indicate a reduction of the potential risk over time for these ecosystems, with differences depending on both the commercial foaming formulation and the spoil material characteristics. However, because potential threats to the natural environment cannot be excluded, some risk management and mitigation actions are discussed.
机译:月桂基醚硫酸钠(SLES)是阴离子表面活性剂,通常被用作机械隧道掘进中大多数发泡剂的主要合成化学成分。这会产生大量的土壤碎片,其中可能包含SLES的残留浓度。缺乏土壤和水的环境质量标准,以及在实际挖掘的土壤中关于SLES持久性的信息有限,因此不利于土壤碎屑作为副产品的再利用。为此,包含SLES的发泡剂的环境风险评估(ERA)可能是有效的工具。在这项研究中,对用于隧道开挖的12种商业配方(cf)中的SLES进行了ERA分析。用选定的含SLES发泡剂对不同隧道开挖地点的各种土壤进行处理。确定了预测或测量的环境浓度(PEC,MEC),然后将其与陆地和水生区室的预测无影响浓度(PNEC)进行了比较。结果表明,随着时间的推移,这些生态系统的潜在风险有所降低,差异取决于商业发泡配方和破坏材料的特性。但是,由于无法排除对自然环境的潜在威胁,因此讨论了一些风险管理和缓解措施。

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