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人造煤气厂焦油综合数据库。B部分。脂肪族和芳香族化合物。

Comprehensive database of Manufactured Gas Plant tars. Part B. Aliphatic and aromatic compounds.

作者信息

Gallacher Christopher, Thomas Russell, Lord Richard, Kalin Robert M, Taylor Chris

机构信息

Department of Civil and Environmental Engineering, University of Strathclyde, 75 Montrose St., Glasgow, G1 1XJ, UK.

WSP/Parsons Brinckerhoff, Kings Orchard, 1 Queen St, Bristol, BS2 0HQ, UK.

出版信息

Rapid Commun Mass Spectrom. 2017 Aug 15;31(15):1239-1249. doi: 10.1002/rcm.7900.

Abstract

RATIONALE

Coal tars are a mixture of organic and inorganic compounds that were produced as a by-product from the manufactured gas and coke making industries. The composition of the tar produced varies depending on many factors; these include the temperature of production and the type of retort used. As different production processes produce different tars, a comprehensive database of the compounds present within coal tars from different production processes is a valuable resource. Such a database would help to understand how their chemical properties differ and what hazards the compounds present within these tars might pose. This study focuses on the aliphatic and aromatic compounds present in a database of 16 different tars from five different production processes.

METHODS

Samples of coal tar were extracted using accelerated solvent extraction (ASE) and derivatised post-extraction using N,O-bis(trimethylsilyl)trifluoroacetamide (BSTFA) with 1% trimethylchlorosilane (TMCS). The derivatised samples were analysed using two-dimensional gas chromatography combined with time-of-flight mass spectrometry (GCxGC/TOFMS).

RESULTS

A total of 198 individual aliphatic and 951 individual aromatic compounds were detected within 16 tar samples produced by five different production processes. The polycyclic aromatic hydrocarbon (PAH) content of coal tars varies greatly depending on the production process used to obtain the tars and this is clearly demonstrated within the results. The aliphatic composition of the tars provided an important piece of analytical information that would have otherwise been missed with the detection of petrogenic compounds such as alkyl cyclohexanes.

CONCLUSIONS

The aromatic compositions of the tar samples varied greatly between the different production processes investigated and useful analytical information was obtained about the individual production process groups. Alkyl cyclohexanes were detected in all samples from sites known to operate Carbureted Water Gas plants and not detected in those that did not. This suggests that petrogenic material may be expected at many UK gaswork sites.

摘要

原理

煤焦油是有机和无机化合物的混合物,是煤气制造和炼焦行业的副产品。所生产焦油的成分因许多因素而异;这些因素包括生产温度和所用蒸馏釜的类型。由于不同的生产工艺产生不同的焦油,一个包含来自不同生产工艺的煤焦油中所含化合物的综合数据库是一项宝贵的资源。这样的数据库将有助于了解它们的化学性质如何不同,以及这些焦油中所含化合物可能构成何种危害。本研究聚焦于来自五种不同生产工艺的16种不同焦油数据库中的脂肪族和芳香族化合物。

方法

使用加速溶剂萃取(ASE)法提取煤焦油样品,并在萃取后使用含1%三甲基氯硅烷(TMCS)的N,O-双(三甲基硅基)三氟乙酰胺(BSTFA)进行衍生化处理。使用二维气相色谱结合飞行时间质谱(GCxGC/TOFMS)对衍生化后的样品进行分析。

结果

在由五种不同生产工艺生产的16个焦油样品中,共检测到198种单个脂肪族化合物和951种单个芳香族化合物。煤焦油中多环芳烃(PAH)的含量因用于获取焦油的生产工艺不同而有很大差异,这在结果中得到了清楚的证明。焦油的脂肪族组成提供了一条重要的分析信息,否则在检测诸如烷基环己烷等成岩化合物时就会遗漏。

结论

在所研究的不同生产工艺之间,焦油样品的芳香族组成差异很大,并获得了有关各个生产工艺组的有用分析信息。在已知运营水煤气厂的所有场地的样品中均检测到烷基环己烷,而在未运营的场地的样品中未检测到。这表明在英国许多煤气厂场地可能会有石油成因物质。

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