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首页> 外文期刊>Journal of the American Oil Chemists' Society >ANALYSIS OF NONIONIC SURFACTANTS IN BENCH-SCALE BIOTREATER SAMPLES
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ANALYSIS OF NONIONIC SURFACTANTS IN BENCH-SCALE BIOTREATER SAMPLES

机译:大规模生物样品中非离子表面活性剂的分析

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摘要

The effluents and activated sludges used in bench-scale biotreater units have been analyzed for nonionic alcohol ethoxylates and their residues. Separate bench-scale units were fed linear alcohol ethoxylates (AE), highly branched and branched nonylphenol ethoxylates. Effluents and sludges were first pretreated by a foam sublation technique to provide a gross separation of surfactants from the environmental matrix. This step was followed by normal-phase high-performance liquid chromatography (HPLC) with either fluorescence detection (FD) or evaporative light-scattering detection (ESLD). The AEs were derivatized with phenylisocyanate and analyzed by normal-phase HPLC coupled with FD. At extremely low surfactant levels, pretreatment of large sample volumes resulted in interferences on derivatization. Hence, a normal-phase HPLC method with ELSD was developed. Although some interferences do appear using ELSD, this method appears to be a more viable alternative to derivatization/FD for very low levels of AE. HPLC with FD and ELSD detection methods are more quantitative and provide information on the polyoxyethylene chain than is possible with traditional methods like cobalt-thiocyanate active substance. [References: 13]
机译:已对台式生物处理装置中使用的废水和活性污泥中的非离子醇乙氧基化物及其残留物进行了分析。在单独的台式规模的装置中进料线性醇乙氧基化物(AE),高度支化和支化的壬基酚乙氧基化物。首先通过泡沫升华技术对废水和污泥进行预处理,以使表面活性剂与环境基质完全分离。此步骤之后是具有荧光检测(FD)或蒸发光散射检测(ESLD)的正相高效液相色谱(HPLC)。用苯异氰酸酯衍生出AE,并通过正相HPLC和FD进行分析。在极低的表面活性剂水平下,大量样品的预处理会导致衍生化干扰。因此,开发了使用ELSD的正相HPLC方法。尽管使用ELSD确实会出现一些干扰,但是对于非常低的AE水平,此方法似乎是衍生化/ FD的更可行的替代方法。与传统方法(如硫氰酸钴活性物质)相比,采用FD和ELSD检测方法的HPLC具有更高的定量性,并能提供有关聚氧乙烯链的信息。 [参考:13]

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