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Phosphate Mine Tailing Recycling in Membrane Filter Manufacturing: Microstructure and Filtration Suitability

机译:膜过滤器制造中的磷矿尾矿回收:微结构和过滤适用性

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Ceramic membrane filters based on industrial by-products can be considered to be a valorization alternative of phosphate mine tailings, even more so if these ceramic membranes are used in the industrial wastewater treatment due to their good mechanical, chemical, and thermal resistance. The depollution of textile industry rejections with this method has not been studied in detail previously. In this work, ceramic membrane filters have been manufactured from natural clay and phosphate mine tailings (phosphate sludge). Blends of the abovementioned materials with a pore-forming agent (sawdust, up to 20 wt. %) were investigated in the range 900–1100 °C using thermal analysis, X-ray diffraction, scanning electron microscopy, and mercury porosimetry. Ceramic properties were measured as a function of firing temperature and sawdust addition. Filtration tests were carried out on samples with advantageous properties. The results showed that gehlenite together with diopside neoformed from lime decomposed carbonates and breakdown products of clay minerals, while calcium phosphate derived from partial decomposition of fluorapatite. Both quartz and fluorapatite resisted heating. The results of the experimental design showed that the variations of physical properties versus processing factors were well described by the polynomial model. Filtration results are quite interesting, allowing these membranes to be used in industrial effluent treatment.
机译:基于工业副产品的陶瓷膜过滤器可被视为磷矿尾矿的增值替代品,如果这些陶瓷膜因其良好的机械,化学和耐热性而用于工业废水处理,则更是如此。以前没有详细研究过用这种方法对纺织工业废品的污染。在这项工作中,陶瓷膜过滤器是用天然粘土和磷酸盐矿渣(磷酸盐污泥)制成的。使用热分析,X射线衍射,扫描电子显微镜和水银孔隙率法研究了上述材料与成孔剂(木屑,含量最高20%)的共混物,温度范围为900-1100°C。测量陶瓷性能与烧成温度和木屑添加量的关系。对具有有利性能的样品进行过滤测试。结果表明,钙铝石与透辉石一起形成的新石灰分解了碳酸盐和粘土矿物的分解产物,而磷酸钙则分解了氟磷灰石。石英和氟磷灰石均耐加热。实验设计的结果表明,多项式模型很好地描述了物理特性与加工因子之间的变化。过滤结果非常有趣,可以将这些膜用于工业废水处理。

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