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Organic compounds generated after the flow of water through micro-orifices: Were they synthesized?

机译:水通过微孔后产生的有机化合物:它们是合成的吗?

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摘要

Micro-fluid mechanics is an important area of research in modern fluid mechanics because of its many potential industrial and biological applications. However, the field is not fully understood yet. In previous work, when passing ultrapure water (UPW) in which air was dissolved (UPW*) through micro-orifices, we found that the flow velocity decreased and stopped over time, and membranes were frequently formed in the orifice when the flow stopped. The membrane came from the dissolved air in UPW*, and membrane formation was closely related to electric charges generated in orifices by the flow. In the present paper, we clarified the components of the membrane and suggested a mechanism for membrane formation. We examined the effect of contaminants on the membrane formation and confirmed our previous results. We identified the chemical components of the membrane and those present in the UPW* itself by using an electron probe microanalyzer and found that the proportion of each element differed between the membrane and UPW*. Raman and infrared (IR) spectroscopy showed that the membrane consisted of organic substances such as carotenoids, amides, esters, and sugars. We irradiated UPW* with ultraviolet light to cut organic chains that may be left in UPW* as contaminants. We found a similar membrane and organic compounds as in nonirradiated UPW*. Furthermore, although the UPW that was kept from contact with air after it was supplied from the UPW maker (UPW0) and bubbled with Ar gas (UPW0 bubbled with Ar) formed no membrane, the UPW0 bubbled with CO2 formed thin membranes, and Raman and IR analysis showed that this membrane contained carboxylic acid salts, carotenoids, or a mixture of both. We found that electric grounding of the orifice reduces the probability of membrane formation and that the jets issuing from an aperture bear negative charges, and we assumed that the micro-orifices possess positive charges generated by flows. Consequently, we suggest that organic compounds are synthesized from nonorganic matter in air or CO2 dissolved in water by the action of hydroxyl radicals generated by flows through micro-orifices.
机译:微流体力学由于其许多潜在的工业和生物学应用而成为现代流体力学研究的重要领域。但是,该领域尚未完全理解。在以前的工作中,当溶解有空气(UPW *)的超纯水(UPW)通过微孔口时,我们发现流速会随着时间的流逝而降低并停止,并且当停止流动时,会在孔口中频繁形成膜。膜来自UPW *中溶解的空气,并且膜的形成与孔中由流动产生的电荷密切相关。在本文中,我们阐明了膜的成分并提出了膜形成的机理。我们检查了污染物对膜形成的影响,并确认了我们先前的结果。我们使用电子探针微分析仪鉴定了膜的化学成分以及UPW *本身中的化学成分,发现膜和UPW *中每种元素的比例都不同。拉曼光谱和红外光谱表明,该膜由有机物质组成,如类胡萝卜素,酰胺,酯和糖。我们用紫外线照射UPW *以切割可能残留在UPW *中的有机链作为污染物。我们发现了与未辐照的UPW *类似的膜和有机化合物。此外,尽管从UPW制造商提供的UPW(UPW0)保持与空气接触并通入氩气(通入Ar的UPW0)后未形成膜,但通入CO 2的UPW0形成了薄膜,拉曼和红外分析表明该膜含有羧酸盐,类胡萝卜素或两者的混合物。我们发现孔的电接地降低了膜形成的可能性,并且从孔发出的射流带有负电荷,并且我们假定微孔具有由流动产生的正电荷。因此,我们建议有机化合物是由空气中的非有机物质或溶解于水中的CO2通过流过微孔而产生的羟基自由基的作用合成的。

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