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AUTOMATED HIGH PERFORMANCE, HIGH-TEMPERATURE COMBUSTION TOTAL ORGANIC CARBON ANALYZER

机译:全自动高性能,高温燃烧全有机碳分析仪

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A high-temperature combustion (HTC) total organic carbon analyzer, which has significant design improvements over existing systems, was developed. The new injection system directly connects a loop-type autoinjector to the head of the HTC column. This connection facilitates the coupling of an autosampler to the injection system. The entire injection process is closed to the atmosphere, thereby improving the precision and eliminating potential contamination during injection. Injections can be made every 3-5 min, depending on the injection and inorganic carbon sparging modes used. The HTC column was designed without a ''cold'' zone or dead space at the top. These improvements eliminated the memory (or carry-over) effect, which is a potential problem in some HTC column designs. The HTC column is packed with pure quartz beads instead of a relatively expensive Pt-based catalyst, without loss in the oxidation efficiency, as indicated by 100% recovery for various compounds with different refractory properties and by intercomparison with Pt-based HTC systems. The precision for seawater is similar to+/-0.6% (RSD) at the 80 mu M C level, Typically, greater than 5000 injections of seawater can be made without significant deterioration of column performance, The effects of column temperature and carrier gas now rate on the oxidation efficiency, sensitivity, and reproducibility are reported. Finally, evidence is presented that suggests that there is a relationship between the refractory nature of pure compounds and the peak width. This potential relationship may be a useful tool for quantifying the refractory nature of organic carbon in natural waters.
机译:开发了一种高温燃烧(HTC)总有机碳分析仪,该分析仪对现有系统进行了重大设计改进。新的进样系统将回路型自动进样器直接连接到HTC色谱柱的顶部。这种连接有利于自动进样器与进样系统的耦合。整个注射过程都与大气隔离,从而提高了精度并消除了注射过程中的潜在污染。可以每3-5分钟进行一次注入,具体取决于注入方式和所用的无机碳喷射方式。 HTC色谱柱的设计没有顶部“冷”区或死角。这些改进消除了记忆(或残留)效应,这在某些HTC色谱柱设计中是一个潜在问题。 HTC色谱柱填充了纯石英珠,而不是相对昂贵的Pt基催化剂,而没有氧化效率的下降,这是由具有不同耐火性能的各种化合物的100%回收率以及与Pt基HTC系统的比较所表明的。在80微米MC水平下,海水的精密度类似于+/- 0.6%(RSD)。通常,在不显着降低色谱柱性能的情况下,可以进行超过5000次的海水注入。现在,色谱柱温度和载气的影响率在不断提高。报告了氧化效率,灵敏度和可重复性。最后,提供的证据表明纯化合物的耐火性质与峰宽之间存在关联。这种潜在的关系可能是量化天然水中有机碳的耐火性质的有用工具。

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