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首页> 外文期刊>Journal of separation science. >Use of two different coating temperatures for a cold fiber headspace solid-phase microextraction system to determine the volatile profile of Brazilian medicinal herbs
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Use of two different coating temperatures for a cold fiber headspace solid-phase microextraction system to determine the volatile profile of Brazilian medicinal herbs

机译:两种不同的涂层温度用于冷纤维顶空固相微萃取系统,以确定巴西草药的挥发性

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摘要

In this study, the experimental extraction conditions on applying headspace solid-phase microextraction and cold fiber headspace solid-phase microextraction (CF-HS-SPME) procedures to samples of six medicinal herbs commonly found in southern Brazil were optimized. The optimized conditions for headspace solid-phase microextraction were found to be an extraction temperature of 60°C and extraction time of 40 min. For CF-HS-SPME, the corresponding values were 60°C and 15 min. In the case of the coating temperature for the CF-HS-SPME system, two approaches were investigated: (i) Temperature of 5°C applied during the whole extraction procedure; and (ii) the use of two fiber temperatures in the same extraction procedure with the aim of extracting the volatile and semivolatile compounds, the ideal condition being 60°C for the first 7.5 min and 5°C for the final 7.5 min. The three extraction procedures were compared. The CF-HS-SPME procedure had good performance only for the more volatile compounds whereas the strategy using two coating temperatures in the same procedure showed good performance for all compounds studied. It was also possible to determine the profile for the volatile fraction of each herb studied applying this technique followed by GC-MS.
机译:在这项研究中,优化了将顶空固相微萃取和冷纤维顶空固相微萃取(CF-HS-SPME)程序应用于巴西南部常见的六种草药样品的实验提取条件。发现顶空固相微萃取的最佳条件是萃取温度为60°C,萃取时间为40分钟。对于CF-HS-SPME,相应的值为60°C和15分钟。对于CF-HS-SPME系统的涂层温度,研究了两种方法:(i)在整个萃取过程中施加5°C的温度; (ii)在相同的提取程序中使用两种纤维温度,目的是提取挥发性和半挥发性化合物,理想的条件是最初的7.5分钟为60°C,最后的7.5分钟为5°C。比较了三种提取程序。 CF-HS-SPME方法仅对挥发性较高的化合物具有良好的性能,而在同一过程中使用两种涂覆温度的策略对所有研究的化合物均具有良好的性能。还可以使用该技术,然后进行GC-MS,确定所研究的每种草药的挥发性成分的分布。

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