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Mussel-inspired antifouling magnetic activated carbon for uranium recovery from simulated seawater

机译:来自模拟海水的乌蒽恢复的贻贝激发防污磁性活性炭

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Undesirable bio-adhesion of microalgae on adsorbent can influence its adsorption capacity. In this report, we fabricated a novel mussel-inspired antifouling magnetic activated carbons which derived orange peel by integrated biosorption-pyrolysis process (MACs@PDA-Ag), via co-functionalization of poly-dopamine (PDA) and Ag nanoparticles (AgNPs), for the recovery of uranium (VI) from simulated seawater with antimicrobial adhesion performance; this process did not require an additional reducing agent. The effect of pH, concentration, contact time, fouling test against nitzschia closterium f.minutissima (GY-H8) were studied. Compared with MACs (632.91 mg/g at pH 7.0), the calculated maximum adsorption capacity of MACs@PDA-Ag increased to 657.89 mg/g at pH 8.0 and showed good recyclability. These data all fitted well with the Langmuir and pseudo-second order models. The possible removal mechanism by XPS is chelation (catechol hydroxyls, amine/imine units, the metal-oxygen and carboxylic) with uranium (VI). The antifouling tests indicated that the AgNPs-modified materials displayed the antimicrobial adhesion behavior, and the viability of the microorganism was not impacted. Thereby, the direct deposition of AgNPs onto the adsorbent has shown great potential for uranium (VI) recovery with an antifouling benefit and is environmentally friendly. (C) 2018 Published by Elsevier Inc.
机译:微藻对吸附剂上的不希望的生物粘附可影响其吸附能力。在本报告中,我们通过聚 - 多巴胺(PDA)和Ag纳米颗粒(AgNP)的共同官能化,制造了一种新的贻贝式防污磁性活性炭(Macs @ PDA-Ag),其通过集成的生物吸收 - 热解过程(MACS @ PDA-AG)来衍生橙皮。 ,用于从模拟海水中恢复具有抗微生物粘附性能的铀(VI);该过程不需要额外的还原剂。研究了pH,浓度,接触时间,对NITZSCHIA COLLERTIUM F.MINUTISIMA(GY-H8)的污染测试的影响。与MAC(632.91mg / g的pH7.0)相比,MAC的计算最大吸附能力@ PDA-AG在pH 8.0下增加至657.89mg / g,并显示出良好的再循环性。这些数据都适用于Langmuir和伪二次订单模型。通过XPS的可能的去除机理是铀(VI)的螯合(儿茶酚羟基,胺/亚胺单元,金属 - 氧和羧酸)。防污测试表明AgNPS改性材料显示出抗微生物粘附性能,并且微生物的活力不会受到影响。由此,AgNP的直接沉积在吸附剂上表现出铀(VI)回收利用防污益处的巨大潜力,并且是环保的。 (c)2018由elsevier公司出版

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