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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Odour-causing organic compounds in wastewater treatment plants: Evaluation of headspace solid-phase microextraction as a concentration technique
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Odour-causing organic compounds in wastewater treatment plants: Evaluation of headspace solid-phase microextraction as a concentration technique

机译:废水处理厂中引起气味的有机化合物:顶空固相微萃取作为浓缩技术的评估

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摘要

Odorous emissions from wastewater collection systems and treatment facilities affecting quality of life have given local populations reasons to complain for decades. In order to characterise the composition of such malodorous emissions, a method based on headspace solid-phase microextraction (HS-SPME) and gas chromatography coupled to mass spectrometry (GC-MS) has been developed to determine a list of compounds belonging to different chemical families, which have been previously described as potentially responsible for odour complaints, in wastewater matrices. Some parameters affecting the chromatographic behaviour of the target compounds were studied (e.g. splitless time). Experimental conditions affecting the extraction process (temperature, time and salt content) were evaluated by applying a factorial design at two levels. Using a DVB/CAR/PDMS fibre and the optimised HS-SPME conditions, calibration curves were constructed with detection limits in the range of 0.003-0.6μgL~(-1). Recovery values higher than 70% and relative standard deviation values between 5 and 16% (n=5) were obtained for all compounds and found to be satisfactory. In wastewater samples, a decrease in the concentration of the analysed compounds through the different treatments was observed. Most of the target analytes were found in influent samples while only octanal and carvone were detected in samples from the plant effluent.
机译:废水收集系统和处理设施的恶臭排放影响了生活质量,数十年来一直使当地居民有抱怨的理由。为了表征这种恶臭排放物的成分,已经开发了一种基于顶空固相微萃取(HS-SPME)和气相色谱-质谱联用技术(GC-MS)的方法,以确定属于不同化学物质的化合物列表废水基质中以前被描述为可能引起气味投诉的家庭。研究了影响目标化合物色谱行为的一些参数(例如不分流时间)。通过在两个级别上应用析因设计来评估影响提取过程的实验条件(温度,时间和盐含量)。使用DVB / CAR / PDMS光纤和优化的HS-SPME条件,建立了检出限为0.003-0.6μgL〜(-1)的校准曲线。对于所有化合物,回收率均高于70%,相对标准偏差在5%至16%之间(n = 5),发现令人满意。在废水样品中,观察到通过不同处理后所分析化合物的浓度降低。在进水样品中发现了大多数目标分析物,而在工厂废水中的样品中仅检测到了辛酸和香芹酮。

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