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Formation of cerussite and hydrocerussite during adsorption of lead from aqueous solution on oxidized carbons by cold oxygen plasma

机译:冷氧等离子体吸附水溶液中的铅到氧化碳上的过程中形成陶粒和陶粒

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A new procedure of elimination of Pb2+ from aqueous solution using carbon adsorbents, in which high amounts of cerussite and hydrocerussite are deposited on the carbon surfaces, is reported. The procedure includes the preparation of carbons from selected lignocellulosic wastes (pecan nut shells and peach stones) by single carbonization and further oxidation with cold oxygen plasma. The materials prior and after the oxidation treatment were characterized using elemental analysis, FT-IR spectroscopy, SEM/EDX analysis, adsorption of N-2 at -196 degrees C and X-ray photoelectron spectroscopy. The adsorption of Pb2+ was carried out in batch systems under constant agitation. The formation of cerussite and hydrocerussite on the spent carbon surfaces was confirmed by XRD, SEM/EDX and FT-IR. A Pb2+ removal mechanism is proposed in which a co-precipitation of lead nitrate and calcium carbonate would render the formation of the lead carbonates. In such mechanism, the occurrence of CaCO3 on the surface of the adsorbents plays a crucial role. The presence of calcium carbonate on the precursors is understood on the basis of the thermal evolution of calcium oxalate originally present in the biomass. The oxygen plasma treatment helps to expose the calcium carbonate nanocrystals thus improving dramatically the removal capacity of Pb2+. Accordingly, retention capacities as high as 63 mg of Pb2+ per gram of adsorbent have been attained. (C) 2016 Elsevier B.V. All rights reserved.
机译:报道了一种使用碳吸附剂从水溶液中消除Pb2 +的新方法,其中大量的陶粒和水陶粒沉积在碳表面。该程序包括通过单次碳化并用冷氧等离子体进一步氧化,从选定的木质纤维素废料(山核桃果壳和桃子石)中制备碳。使用元素分析,FT-IR光谱,SEM / EDX分析,-196℃下的N-2吸附和X射线光电子能谱对氧化处理前后的材料进行了表征。 Pb2 +的吸附在间歇搅拌下在间歇系统中进行。 XRD,SEM / EDX和FT-IR证实了在废碳表面上的陶粒和水陶粒的形成。提出了一种Pb2 +去除机理,其中硝酸铅和碳酸钙的共沉淀将导致碳酸铅的形成。在这种机理中,在吸附剂表面上CaCO 3的存在起着至关重要的作用。基于最初存在于生物质中的草酸钙的热释放,可以理解前体中碳酸钙的存在。氧等离子体处理有助于暴露碳酸钙纳米晶体,从而大大提高了Pb2 +的去除能力。因此,已经实现了每克吸附剂高达63 mg的Pb2 +保留能力。 (C)2016 Elsevier B.V.保留所有权利。

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