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Raw and treated marble wastes reuse as low cost materials for phosphorus removal from aqueous solutions: Efficiencies and mechanisms

机译:原大理石和经处理的大理石废料可作为低成本材料重复使用,以从水溶液中去除磷:效率和机理

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Phosphorus removal from synthetic solutions by raw and calcined powdered marble wastes (RPMW and CPMW) has been investigated in batch mode under different experimental conditions. The results showed that RPMW and CPMW have high removal efficiencies, especially in acidic media. The maximum phosphorus removal capacities were evaluated to 103.9 and 181.2 mg.g(-1) at an initial pH and an aqueous concentration of 5 and 350 mg.L-1, respectively. Phosphorus removal by RPMW occurred mainly through adsorption. However, for CPMW, phosphorus was removed not only by adsorption, but also by precipitation as calcium phosphate complexes. Specific analyses using scanning electron microscopy, energy dispersive spectroscopy, X-ray diffraction and Fourier transform infrared spectroscopy confirmed that this precipitate is most probably hydroxyapatite. On the other hand, CPMW have demonstrated an important ability in removing phosphorus from highly concentrated dairy wastewater (C-0,C-p = 1000 mg.L-1.) since only one dosage of 10 g.L-1 was enough to ensure more than 97% of phosphorus removal. (C) 2014 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:已在不同的实验条件下以分批方式研究了原料大理石粉和煅烧大理石粉废物(RPMW和CPMW)从合成溶液中除磷的方法。结果表明,RPMW和CPMW具有较高的去除效率,尤其是在酸性介质中。在初始pH和5和350 mg.L-1的水浓度下,最大除磷能力分别评估为103.9和181.2 mg.g(-1)。 RPMW去除磷主要通过吸附进行。然而,对于CPMW,磷不仅通过吸附被除去,而且通过作为磷酸钙络合物的沉淀被除去。使用扫描电子显微镜,能量分散光谱,X射线衍射和傅里叶变换红外光谱进行的具体分析证实,这种沉淀物很可能是羟基磷灰石。另一方面,CPMW已显示出从高浓度乳制品废水(C-0,Cp = 1000 mg.L-1。)中去除磷的重要能力,因为仅10 gL-1的剂量就足以确保超过97除磷百分比。 (C)2014年科学研究院。由Elsevier Masson SAS发布。版权所有。

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