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鉴定化学生产场地不同单元中的特定有机污染物。

Identification of specific organic contaminants in different units of a chemical production site.

机构信息

Institute of Geology and Geochemistry of Petroleum and Coal, RWTH Aachen University, Lochnerstrasse 4-20, 52056 Aachen, Germany.

出版信息

Environ Sci Process Impacts. 2014 Jul;16(7):1779-89. doi: 10.1039/c4em00034j.

Abstract

Due to the very limited number of studies dealing with the chemical composition of industrial wastewaters, many industrial organic contaminants still escape our view and consequently also our control. We present here the chemical characterization of wastewaters from different units of a chemical complex, thereby contributing to the characterization of industrial pollution sources. The chemicals produced in the investigated complex are widely and intensively used and the synthesis processes are common and applied worldwide. The chemical composition of untreated and treated wastewaters from the chemical complex was investigated by applying a non-target screening which allowed for the identification of 39 organic contaminants. According to their application most of them belonged to four groups: (i) unspecific educts or intermediates of industrial syntheses, (ii) chemicals for the manufacturing of pharmaceuticals, (iii) educts for the synthesis of polymers and resins, and (iv) compounds known as typical constituents of municipal sewage. A number of halogenated compounds with unknown toxicity and with very high molecular diversity belonged to the second group. Although these compounds were completely removed or degraded during wastewater treatment, they could be useful as "alarm indicators" for industrial accidents in pharmaceutical manufacturing units or for malfunctions of wastewater treatment plants. Three potential branch-specific indicators for polymer manufacturing were found in the outflow of the complex. Among all compounds, bisphenol A, which was present in the leachate water of the on-site waste deposit, occurred in the highest concentrations of up to 20 000 μg L(-1). The comparison of contaminant loads in the inflow and outflow of the on-site wastewater treatment facility showed that most contaminants were completely or at least significantly removed or degraded during the treatment, except two alkylthiols, which were enriched during the treatment process. The chemical composition of the inflow samples showed a very heterogenic composition and strongly varied, reflecting that large scale industrial synthesis is carried out in batches. The outflow contained mainly unspecific chlorinated educts or intermediates of industrial syntheses as well as compounds which are known as typical constituents of municipal wastewaters.

摘要

由于研究工业废水中化学组成的研究非常有限,许多工业有机污染物仍然没有被我们发现,因此也无法得到控制。我们在这里介绍了一个化工厂不同单元废水的化学特征,从而有助于对工业污染源进行特征描述。所调查的工厂中生产的化学品被广泛而密集地使用,其合成工艺在全球范围内普遍存在且被广泛应用。通过应用非靶向筛选技术,研究了化工厂未经处理和处理后的废水中的化学物质,从而鉴定出 39 种有机污染物。根据其应用,它们中的大多数属于以下四类:(i)工业合成的通用反应物或中间体,(ii)用于制造药品的化学品,(iii)用于合成聚合物和树脂的反应物,以及(iv)作为城市污水典型成分的化合物。属于第二类的化合物是具有未知毒性和高度分子多样性的大量卤代化合物。尽管这些化合物在废水处理过程中被完全去除或降解,但它们可用作制药厂工业事故或废水处理厂故障的“警报指标”。在工厂的废水流出物中发现了三种潜在的与聚合物制造有关的特定分支指标。在所研究的所有化合物中,双酚 A 存在于现场废物储存场的浸出水中,其浓度高达 20000μg/L。现场废水处理设施的进水和出水污染物负荷的比较表明,除两种烷基硫醇在处理过程中被富集外,大多数污染物在处理过程中被完全或至少显著去除或降解。进水样本的化学成分显示出非常异质的组成且变化很大,这反映了大规模的工业合成是分批进行的。出水主要含有工业合成的通用氯化反应物或中间体以及被认为是城市废水典型成分的化合物。

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