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Characterization of a chromium-rich tannery waste and its potential use in ceramics

机译:富铬制革废料的表征及其在陶瓷中的潜在用途

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摘要

Leather industries which promote hide stabilization by the conventional chrome-tanning process are a major source of pollution because of the resultant chromium-rich wastes. In this work, an extensive characterization of such a chromium-rich waste sludge is presented, regarding its chemical composition (XRF), crystalline phase contents (XRD), organic carbon content (TOC), thermal behavior by thermogravimetry (TG) and differential scanning calorimetry (DSC), as well as its stability under chemical attack (the concentration of important ions in the leachates being determined by capillary electrophoresis) and when submitted to temperatures as high as 1100 deg C, in air. The material showed the tendency to produce some undesirable, and previously non-detected hexavalent chromium when exposed to high temperatures, but after washing off the soluble salts and the elimination of the organic matter by firing, the resultant material was succesfully tested as a ceramic pigment in a conventional glaze composition usually employed in the ceramic tile industry.
机译:由于产生了富含铬的废物,通过常规的铬鞣制工艺促进皮革稳定的皮革工业是主要的污染源。在这项工作中,对这种富含铬的废渣进行了广泛的表征,涉及其化学成分(XRF),结晶相含量(XRD),有机碳含量(TOC),热重分析(TG)和差示扫描法的热行为。量热法(DSC)以及其在化学侵蚀下的稳定性(通过毛细管电泳确定渗滤液中重要离子的浓度),以及在空气中暴露于1100摄氏度的高温下的稳定性。暴露于高温下,该材料倾向于产生一些不良的,以前未检测到的六价铬,但在洗去可溶性盐并通过焙烧消除有机物后,将所得材料成功用作陶瓷颜料进行了测试。通常在瓷砖工业中使用的常规釉料组合物中的涂料。

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