首页> 外文会议>V Latin American Congress on Biomedical Engineering >Magnetic Nanophases of Iron Oxide Embedded in Polymer. Effects of Magneto-hydrodynamic Treatment of Pure and Wastewater
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Magnetic Nanophases of Iron Oxide Embedded in Polymer. Effects of Magneto-hydrodynamic Treatment of Pure and Wastewater

机译:嵌入聚合物中的氧化铁磁性纳米酶。磁力 - 水动力处理纯净废水的影响

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Noticeable effects over some characteristics of pure water such as pH and conductivity were observed after a magneto-hydrodynamic treatment with nanophases of ferro-magnetic γ-Fe2O3 embedded in a granulated polymer. Unex-pected alterations on pH (6,2-10,9) and conductivity (0,06 -0,4) of pure water (de-ionized and bi-distilled) were observed after the first cycle of treatment with more aged (24 h) sample of magnetic nanophases. On the subsequent cycles those values were stabilized and persistent 24 h later. Some specie of memory effect does appear be present 24 h later on a sample of treated water because both pH and conductivity get back slowly to near values to the originais after cycling trough column. In addition an increment on corrosive poner was observed via linear variation voltammetry over a piece of carbon steel immersed under a sample of magnetically treated water. The former memory effect was noted too in voltammetry ex-periments. For lasting a bactericide effect was proved for passing an infected wastewater with fecal coliforms trough a column packed with magnetic nanophases embedded in granulated polymer. A difference on behavior was observed between tvvo samples of magnetic nanophases with different time of age run out in parallel experiments with infected wastewater. The sample with age of 24 h, depleted out roughly two logarithmic units of cell/100 mL of coliforms in a few minutes. On the contrary the sample with 1 h aged didn't remove any coliform in equal time from infected wastewater. The experience was applied at major scale with similar results in experiments run out on 1 m~3 of re-infected wastewater taken from an inside city river during more than 500 hour of operations over an in-serial battery of three interconnected columns loaded with 200 mL of granulated polymer with ferromagnetic nanophases embedded in polymer each one.
机译:在用颗粒聚合物中嵌入颗粒聚合物的铁磁性γ-Fe2O3的纳米酶的磁性流体动力处理之后,观察到纯净纯水的一些特征的显着效果。在第一次治疗循环后,在更老化的循环后观察到对pH(6,2-10,9,9)和电导率(0,06-0,4)的纯水(脱离和双蒸馏)进行的UNEX PH(6,2-10,9)和电导率(0,06-0,4)。 24小时)磁性纳米类样品。在随后的循环上,这些值稳定并持续24小时。一些物种的记忆效果似乎在处理过的水样品上呈现24小时,因为在循环槽柱后,pH和电导率慢慢地慢慢恢复到ORIGINIS附近。另外,通过线性变化伏安法在浸在磁处理水样品下浸没的碳钢上的线性变化伏安法观察到腐蚀性耦合的增量。在伏安ex-permiment中也注明了前记忆效应。为了持续杀菌的效果,证明了将受感染的废水通过粪便大肠菌槽槽填充有颗粒聚合物中的磁性纳米粒子的柱。在具有不同时代的磁性纳米碱基样品之间观察到对TVVO样本之间的差异在具有受感染废水的平行实验中耗尽。患有24小时的样品,几分钟内耗尽大约两种细胞/ 100ml大肠杆菌的对数单位。相反,具有1小时的样品未在受感染的废水的同等时间内除去任何大肠菌。该经验以主要规模应用,实验结果在一扇门城市河内的1米〜3中耗尽的实验中,在500多小时的运营中,在加载的三个互连柱的连续三个互连柱上的一次运营中将颗粒聚合物M1颗粒聚合物,其嵌入聚合物中的一体中。

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