首页> 外文期刊>Journal of Hazardous Materials >Assessment of biodegradation of the anionic surfactant sodium lauryl ether sulphate used in two foaming agents for mechanized tunnelling excavation
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Assessment of biodegradation of the anionic surfactant sodium lauryl ether sulphate used in two foaming agents for mechanized tunnelling excavation

机译:机械隧道掘进用两种发泡剂中阴离子表面活性剂月桂基醚硫酸钠的生物降解评估

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摘要

The anionic surfactant sodium lauryl ether sulphate (SLES) is the main component in most foaming agents used for mechanized tunneling excavation. The process produces huge amounts of soil debris that can have a potential impact on ecosystems. The lack of accurate information about SLES persistence in excavated soil has aroused increasing concern about how it is recycled. The objective of this study was to assess SLES biodegradability in two commercial foaming agents (P1 and P2). Microcosm experiments were performed with two different soils collected from a tunnel construction site and conditioned with P1 or P2 (85.0 or 83.0 mg kg (-1) of SLES, respectively). At selected times soil samples were collected for assessing the SLES residual concentration using Pressured Liquid Extraction followed by methylene blue active substance analysis (MBAS). Simultaneously, soil microbial abundance (DAN counts), viability (Live/Dead method), activity (dehydrogenase analysis) and phylogenetic structure (Fluorescent In Situ Hybridization) were evaluated. SLES halved faster in the silty-clay soil (6 d) than in the gravel in a clay-silty-sand matrix (8-9 days). At day 28 it was degraded in both soils. Its biodegradation was ascribed to the significant increase in Gamma-Proteobacteria. At this time, the spoil material can be considered as a by-product.
机译:阴离子表面活性剂月桂基醚硫酸钠(SLES)是大多数用于机械隧道开挖的发泡剂的主要成分。该过程会产生大量的土壤碎片,可能会对生态系统产生潜在的影响。缺乏关于SLES在被挖掘土壤中持久性的准确信息,引起了人们对其回收利用的日益关注。这项研究的目的是评估两种商业发泡剂(P1和P2)中SLES的生物降解性。使用从隧道施工现场收集并用P1或P2(分别为85.0或83.0 mg kg(-1)的SLES)处理的两种不同土壤进行微观实验。在选定的时间收集土壤样品,以使用加压液体萃取,然后进行亚甲基蓝活性物质分析(MBAS)评估SLES残留浓度。同时,评估土壤微生物丰度(DAN计数),生存力(活/死法),活性(脱氢酶分析)和系统发育结构(荧光原位杂交)。在粘土-粉砂-砂基质中(8-9天),粉质粘土(6 d)中的SLES减半比砾石中的快。在第28天,它在两种土壤中均被降解。其生物降解归因于伽玛变形杆菌的显着增加。此时,可以将废料视为副产物。

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