某纺织企业废水中微纤维和微塑料的检测与分析

Sinem Hazal Akyildiz, R. Bellopede, H. Sezgin, I. Yalcin-Enis, B. Yalçın, S. Fiore
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引用次数: 5

摘要

纺织废水受到无机/有机物质、聚合物、染料和微纤维(MFs)的污染,微纤维是微塑料(MPs)和天然纤维。本研究旨在对纺织工业废水中多聚物(MFs)和多聚物(MPs)进行初步调查,并对现场污水处理厂(WWTP)的去除率进行评价。本文分析了某纺织公司(采用物理化学法)污水处理厂的10个流入和流出样本。首先,样品在25℃下用15%过氧化氢预处理5天,去除有机化合物。其次,通过预筛选离心、密度分离和过滤等方法从水相中回收MFs。与其他回收工艺相比,过滤工艺的性能最好。第三步,通过光学显微镜对MFs进行计数,并通过显微ftir对MPs进行鉴定。流入样品的MFs量在893-4452 MFs/L之间。流出样品(310-2404 MFs/L)与流入样品相比减少了38-65%,表明高达62%的剩余MFs可以进入下水道网络或接收水体。在流入和流出的样品中发现了棉花和羊毛,以及许多MPs(丙烯酸、聚酯、聚丙烯、聚酰胺和粘胶/人造丝)(唯一的例外是“致密”粘胶(人造丝),在流出的样品中未检测到,可能被污水处理系统与污泥一起保留了下来)。这项研究,即使只是初步的,为未来研究纺织废水中MFs/MPs的检测,以及全面的污水处理过程去除它们的性能提供了有趣的提示。
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Detection and Analysis of Microfibers and Microplastics in Wastewater from a Textile Company
Textile wastewater is polluted by inorganic/organic substances, polymers, dyes, and microfibers (MFs), which are microplastics (MPs) and natural fibers. This work is aimed at the preliminary investigation of MFs and MPs in textile industrial wastewater, and at evaluating the removal efficiency of an on-site wastewater treatment plant (WWTP). Ten samples of inflows and outflows of the WWTP of a textile company (applying a physic-chemical process) have been analyzed. Firstly, the samples underwent a pretreatment with 15% hydrogen peroxide at 25 °C for 5 days to remove organic compounds. Secondly, the MFs were recovered from the aqueous phase by pre-screening centrifugation, density separation, and filtration as alternative options. Filtration obtained the best performances, compared to the other recovery processes. Thirdly, the MFs were counted through optical microscopy and the MPs were identified through micro-FTIR. The MFs amount in the inflow samples was in the range of 893–4452 MFs/L. The outflow samples (310–2404 MFs/L) exhibited a 38–65% reduction compared to the inflows, demonstrating that up to 62% of residual MFs can enter the sewer network or the receiving water body. Cotton and wool, and numerous MPs (acrylic, polyester, polypropylene, polyamide, and viscose/rayon) were identified in the inflow and outflow samples (with the only exception of “dense” viscose (rayon), not detected in the outflows, and probably retained by the WWTP with the sludge). This study, even if just preliminary, offers interesting hints for future research on MFs/MPs detection in textile wastewater, and on the performance of a full-scale WWT process for their removal.
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