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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Preparation and characterizations of thermally regenerable electro-generated adsorbents (EGAs) for a competitor electrocoagulation process
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Preparation and characterizations of thermally regenerable electro-generated adsorbents (EGAs) for a competitor electrocoagulation process

机译:用于竞争对手电凝率的热再生电生吸附剂(EGA)的制备及表征

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The electrochemical preparation of Electro-Generated Adsorbents (EGAs) coupled with regeneration of spent adsorbents was recently shown as an alternative to prepare adsorbents for a competitor electrocoagulation process. In this paper, two EGAs were investigated as thermally regenerable adsorbents. These adsorbents called EGA(Nacl) and EGA(NaNO3), were prepared by electrolysis in NaCl and NaNO3 electrolytes, respectively, with aluminum electrodes. The physical analyses showed that they were mixtures of nano-crystallized AlOOH and three Al(OH)(3). The sedimentation behavior of these adsorbents showed that they were not homogenous materials. Raman spectra revealed that bayerite was the main aluminum hydroxide. Despite analogous XRD patterns of the two investigated EGAs, notable differences could be found during their preparation. The removals of doxycycline (DC) and oxytetracycline (OTC) were performed in six successive regenerations by heating adsorbents at 500 degrees C. OTC removals were constant at 98% and 70%, while DC removals decreased from 98% to 78% and from 96% to 92%, for EGA(Nacl) and EGA(NaNO3), respectively. XRD analysis of the heated adsorbents showed the disappearance of the initial crystalline compounds and the formation of a low amount of crystallized gamma alumina Al2.67O4 which was found to be stable during the following thermal treatments at 500 degrees C. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:最近显示与废吸附剂再生相结合的电生成吸附剂(EGA)的电化学制剂作为制备竞争对手电凝率的吸附剂的替代方案。在本文中,研究了两种EGAS作为热再生吸附剂。这些吸附剂称为EGA(NaCl)和EGA(NANO 3),分别用铝电极电解在NaCl和NaNO 3电解质中制备。物理分析表明它们是纳米结晶的AlOOH和三个Al(OH)(3)的混合物。这些吸附剂的沉降行为表明它们不是均匀的材料。拉曼光谱显示,Bayerite是氢氧化铝的主要铝。尽管两种调查的EGAS具有类似的XRD模式,但在其准备期间可以找到显着的差异。通过在500摄氏度的加热吸附剂中在六个连续的再生中进行多辛环素(DC)和催眠素(OTC)的去除,OTC除去恒定在98%和70%,而DC除去从98%降至78%,从96%降至78%对于EGA(NaCl)和EGA(NANO3)分别为%〜92%。加热吸附剂的XRD分析显示出初始结晶化合物的消失,并形成少量结晶的γ氧化铝Al2.67O4,其在500摄氏度下的下列热处理期间被发现稳定。(c)2019台化学工程师。 elsevier b.v出版。保留所有权利。

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