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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Investigation and optimization of particle dimensions for needle trap device as an exhaustive active sampler
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Investigation and optimization of particle dimensions for needle trap device as an exhaustive active sampler

机译:研究和优化作为穷举式主动进样器的捕针器的颗粒尺寸

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摘要

Various needle trap devices (NTDs) with different _designs have been developed during the past _decade. A theoretical model on the fundamentals of the NTD was recently proposed, which employed the theory of frontal (gas-solid) chromatography to describe the sampling process. In the current work, different types of sorbent particles with different _dimensions were packed into the needle as the adsorbent. The effects of particle dimensions, which would affect the packing density and consequently affect the capacity, the extraction efficiency and desorption efficiency of the NTD were experimentally investigated and the proposed theory was validated. The results demonstrated that NTDs packed with small particles possess higher extraction capacity and efficiency but much higher resistances to flow as well. The higher resistance did not necessarily result in poor desorption efficiency. The observed relationships among those physical parameters provide valuable guidance on how to design a NTD with high performance for future applications.
机译:在过去的十年中,已经开发出了具有不同设计的各种针捕集器(NTD)。最近,提出了一种NTD基本原理的理论模型,该模型采用了正面(气固)色谱理论来描述采样过程。在当前的工作中,具有不同尺寸的不同类型的吸附剂颗粒被填充到针中作为吸附剂。实验研究了粒径对填料密度的影响,进而影响了填料的容量,萃取效率和脱附效率,并验证了所提出的理论。结果表明,填充有小颗粒的NTD具有更高的提取能力和效率,但也具有更高的流动阻力。较高的电阻并不一定导致较差的解吸效率。这些物理参数之间观察到的关系为如何为未来应用设计高性能的NTD提供了宝贵的指导。

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