Departamento de Ingeniería Química, Centro de Investigación en Tecnología de Productos y Procesos Químicos (Pro(2) TecS), Campus de 'El Carmen', Universidad de Huelva, 21071 Huelva, Spain.
Departamento de Ingeniería Química, Centro de Investigación en Tecnología de Productos y Procesos Químicos (Pro(2) TecS), Campus de 'El Carmen', Universidad de Huelva, 21071 Huelva, Spain.
J Hazard Mater. 2014 Aug 30;279:11-6. doi: 10.1016/j.jhazmat.2014.06.058. Epub 2014 Jul 2.
The accumulation of phosphogypsum waste from the fertilizer industries, which remain in regulated stacks occupying considerable land resources, is causing significant environment problems worldwide. In that sense, the scientific community is being pressured to find alternative ways for their disposal. In this research, we propose a novel application for phosphogypsum waste, as a modifier of bitumen for flexible road pavements. Viscous flow tests carried out on bitumen modified with a phosphogypsum waste and doped with sulfuric acid demonstrated an extraordinary increase in viscosity, at 60°C, when compared to a counterpart sample which had been modified with gypsum, the main component of phosphogypsum. Similarly, a significant improvement in the viscoelastic response of the resulting material at high temperatures was also found. FTIR (Fourier transform infrared spectroscopy) scans provided evidences of the existence of chemical reactions involving phosphorus, as revealed by a new absorption band from 1060 to 1180cm(-1), related to COP vibrations. This result points at phosphorus contained in the phosphogypsum impurities to be the actual "modifying" substance. Furthermore, no COP band was observed in the absence of sulfuric acid, which seems to be the "promoting" agent of this type of bond.
磷肥工业产生的磷石膏废渣堆积在受管制的料堆中,占用了大量的土地资源,给全世界带来了严重的环境问题。从这个意义上说,科学界正面临着寻找替代处理方法的压力。在这项研究中,我们提出了磷石膏废渣的一种新应用,作为柔性道路路面用沥青的改性剂。对用磷石膏废渣和硫酸掺杂改性的沥青进行粘性流动测试表明,与用主要成分磷石膏改性的对照样品相比,在 60°C 时,其粘度有显著增加。同样,在高温下,所得材料的粘弹性响应也有显著改善。傅里叶变换红外光谱(FTIR)扫描提供了涉及磷的化学反应存在的证据,这是由 1060 到 1180cm(-1) 之间新的吸收带反映出来的,与 COP 振动有关。这一结果表明,磷石膏杂质中所含的磷是实际的“改性”物质。此外,在没有硫酸的情况下也没有观察到 COP 带,硫酸似乎是这种键的“促进”剂。