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Establishment of Long-Term Preservation for Dimethyl Sulfide by the Solid-Phase Microextraction Method

机译:固相微萃取法建立二甲硫醚的长期保存

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Dimethyl sulfide (DMS) derived from marine biological activity affects radiative forcing of the climate. The general analytical technique for DMS in seawater (purge and trap analytical method, P&T) is complex onboard ship. Thus it is difficult to obtain sufficient data for a comprehensive understanding of the spatiotemporal variability of DMS in the sea surface layer. On the other hand, a new analytical method for DMS using SPME (solid-phase microextraction) has recently been developed as an alternative method to P&T. This method is simpler than P&T because no special or complex apparatus is needed. If it is possible to preserve DMS for an extended period in excess of the duration of the cruise, the SPME method is a promising method for measuring DMS in seawater. We assessed an analytical method which can allow us to preserve DMS on the long-term scale using SPME. In liquid nitrogen (-196 deg C), as preserved environment, for a period of 20 days after sampling, we found the preservation rate of DMS to be 94.7 +- 4.4percent (n velence 6) in this study. Furthermore, estimating the distribution coefficient with respect to the effect of salinity on SPME, we found that DMS changed by 0.1 nM/percent sal, suggesting that salinity has only a minor influence on oceanic DMS measurements in the open ocean because the minimal change of the open ocean salinity is within 2 percent. Applying the SPME method to open ocean samples, we found that there were no significant differences in DMS between the unpreserved and preserved samples (r velence 0.99, n velence 26, SE velence 0.01,p < 0.0001), showing the SPME method has potential for use for open ocean surveys.
机译:来自海洋生物活动的二甲基硫醚(DMS)影响气候的辐射强迫。海水中DMS的一般分析技术(吹扫捕集分析方法,P&T)在船上很复杂。因此,很难获得足够的数据来全面了解海表层中DMS的时空变化。另一方面,最近开发了一种新的使用SPME(固相微萃取)的DMS分析方法,作为P&T的替代方法。该方法比P&T更简单,因为不需要特殊或复杂的设备。如果可以在航行期间延长DMS的保存时间,则SPME方法是一种用于测量海水中DMS的有前途的方法。我们评估了一种分析方法,该方法可以使我们能够使用SPME长期保存DMS。在液态氮(-196摄氏度)中,作为保存环境,在采样后20天的时间内,我们发现本研究中DMS的保存率为94.7±4.4%(nvelence 6)。此外,根据盐度对SPME的影响估算分布系数,我们发现DMS的变化为0.1 nM / sal百分比,这表明盐度对公海中海洋DMS的测量影响较小。公海盐度在2%以内。将SPME方法应用于开阔海洋样品,我们发现未保存和保存的样品之间的DMS差异不显着(见度0.99,见度26,见度0.01,p <0.0001),表明SPME方法具有潜在的潜力。用于公海调查。

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