首页> 外文期刊>Journal of Solution Chemistry >Hydrohysteretic Phenomena of “Extremely Diluted Solutions” Induced by Mechanical Treatments: A Calorimetric and Conductometric Study at 25 ∘C
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Hydrohysteretic Phenomena of “Extremely Diluted Solutions” Induced by Mechanical Treatments: A Calorimetric and Conductometric Study at 25 ∘C

机译:机械处理引起的“极度稀释溶液”的水滞现象:在25 CC下的量热和电导研究

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The purpose of this study was to obtain information about the influence of successive dilutions and succussions (violent shaking) on the structure of water. “Extremely diluted solutions” (EDS) are solutions obtained through the iteration of two processes: 1:100 dilution and succussion. Those two processes are repeated until extreme dilutions are reached, so that the chemical composition of the end solution is identical to that of the solvent. We measured the heats of mixing and the electrical conductivity of basic solutions of such EDS, and compared these results with the analogous heats of mixing and electrical conductivity of the untreated solvent. The measurements were carried out as a function of the age of the samples. We found some relevant exothermic excess heat of mixing, and higher electrical conductivity than those of the untreated solvent, also in function of time. The measurements show a good linear correlation between the two independent physico-chemical quantities, implying a single cause for this behavior of the extremely diluted solutions. The slopes of the linear correlation depend on the age of the EDS. Such a phenomenon could result from a variation of the shape of molecular aggregates that characterize the two different supramolecular structures of the water of different ages. This behavior could provide important support for understanding the nature of the phenomena described herein. A really intriguing phenomenon is the evolution of some physico-chemical properties with time. This hints at a “trigger” effect on the formation of molecular aggregates that result from the succussion procedure. We show that successive dilutions and succussions can permanently alter the physico-chemical properties of the aqueous solvent, the extent of which depends on the age of the samples.
机译:这项研究的目的是获得有关连续稀释和吸附(剧烈摇动)对水结构影响的信息。 “极度稀释的溶液”(EDS)是通过以下两个过程的迭代获得的溶液:1:100稀释和次生。重复这两个过程,直到达到极高的稀释度,以使最终溶液的化学组成与溶剂的化学组成相同。我们测量了此类EDS的混合热和碱性溶液的电导率,并将这些结果与未经处理的溶剂的类似混合热和电导率进行了比较。根据样品的年龄进行测量。我们还发现了一些相关的放热混合过量热量,以及比未经处理的溶剂更高的电导率,而且还随时间变化。测量结果表明,两个独立的物理化学量之间具有良好的线性相关性,这暗示了极度稀释溶液的这种行为的单一原因。线性相关的斜率取决于EDS的寿命。这种现象可能是由于分子聚集体形状的变化而引起的,该分子聚集体具有不同年龄的水的两种不同的超分子结构。此行为可以为理解本文所述现象的性质提供重要支持。一个真正有趣的现象是一些物理化学性质随时间的演变。这暗示了震荡过程对分子聚集体形成的“触发”效应。我们表明,连续的稀释和沉淀可以永久改变水性溶剂的物理化学性质,其程度取决于样品的年龄。

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