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Quantitative analysis of methanol in wastewater by GC-MS with direct injection or headspace SPME sample introduction

机译:通过直接进样或顶空SPME进样的GC-MS定量分析废水中的甲醇

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Monitoring methanol (MeOH) concentration in wastewater treatment processes is important because methanol is a widely used carbon source for denitrification. Headspace solid-phase microextraction (HS-SPME) and direct liquid injection coupled with gas chromatography and mass spectrometry (GC/ MS) were studied to analyze methanol in municipal wastewater samples in the μg mL~(-1) range. The conditions applied for both methods are presented. The extraction parameters for the HS-SPME method, such as SPME fiber selection, extraction temperature and time, agitation, pH value of the solution, and salt effect, were investigated. For the liquid injection method, the critical parameter was to select a polar column, the DB-WAX capillary column. Linear calibration curves were obtained over 3 orders of magnitude using methanol-d3 (MeOH-d3) or acetonitrile (ACN) as an internal standard. Both methods were validated with repeatability and recovery experiments. The liquid injection method requires a smaller injection volume and allows for faster analysis and better precision. The HS-SPME method also has reliable performance with less than 10% error. In addition, the comparison of the two methods on practical applications and maintenance is included.
机译:监测废水处理过程中的甲醇(MeOH)浓度非常重要,因为甲醇是反硝化广泛使用的碳源。研究了顶空固相微萃取(HS-SPME)和直接液体进样与气相色谱和质谱(GC / MS)结合使用,以分析μgmL〜(-1)范围的城市废水样品中的甲醇。介绍了适用于这两种方法的条件。研究了HS-SPME方法的萃取参数,例如SPME纤维的选择,萃取温度和时间,搅拌,溶液的pH值和盐效应。对于液体注入方法,关键参数是选择一个极性色谱柱,即DB-WAX毛细管色谱柱。使用甲醇-d3(MeOH-d3)或乙腈(ACN)作为内标,可以在3个数量级上获得线性校准曲线。两种方法均通过重复性和回收率实验验证。液体进样方法需要较小的进样量,并可以进行更快的分析和更高的精度。 HS-SPME方法还具有可靠的性能,误差小于10%。此外,还包括了两种方法在实际应用和维护方面的比较。

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