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Purification of heavy metal loaded wastewater from electroplating industry under synthesis of delafossite (ABO(2)) by 'Lt-delafossite process'

机译:通过“ Lt-delafossite process”纯化铜铁矿(ABO(2))合成中电镀行业的重金属负载废水

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In this study we present a new, environmental friendly and economic method, called Lt-delafossite process to treat industrial wastewater (initial Cu2+-concentrations of 1-15.6 g/1) by subsequent synthesis of nano-crystalline (doped) delafossite (CuFeO2) solely by precipitation and ageing at temperatures between 50 degrees C and 90 degrees C. The reached water purification rates are exclusively >= 99.99% for both wastewater models and wastewaters from electroplating industry. We succeeded to synthesize a mixture of 3R and 2H delafossite at 50 degrees C after 90 h and >= 70 degrees C after 16 h of ageing directly from industrial wastewater without any additional phases. In all cases green rust (GR), a Fe(II-HI) layered double hydroxysulphate, Cu2O (cuprite) and Fe10O14(OH)(2) (ferrihydrite) precipitates first. During ageing of the residues the metastable phases transform to delafossite. The residues are characterized by XRD, FTIR, SEM, TEM, VFTB and Mossbauer measurements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们提出了一种新的,环境友好且经济的方法,称为Lt-褐铁矿工艺,该工艺通过随后合成纳米晶(掺杂的)褐铁矿(CuFeO2)来处理工业废水(初始Cu2 +浓度为1-15.6 g / 1)。仅通过在50摄氏度至90摄氏度之间的温度下的沉淀和老化即可。对于废水模型和电镀行业废水而言,达到的净水率仅> = 99.99%。我们成功地从工业废水中直接老化了90小时后在50℃下合成了3R和2H铜铁矿的混合物,并在不经过任何其他阶段的情况下老化了16 h后≥70℃。在所有情况下,绿锈(GR),Fe(II-HI)层状双羟基硫酸盐,Cu2O(铁氧体)和Fe10O14(OH)(2)(三水铁矿)首先沉淀。在残留物的老化过程中,亚稳相转变为铜铁矿。残留物通过XRD,FTIR,SEM,TEM,VFTB和Mossbauer测量进行表征。 (C)2016 Elsevier Ltd.保留所有权利。

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