School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou Higher Education Mega Center, 100 Waihuan Xi Road, Guangzhou 510006, PR China.
J Environ Manage. 2013 Sep 15;126:1-6. doi: 10.1016/j.jenvman.2013.03.039. Epub 2013 May 3.
The focus of this research was the development of efficient and affordable asphalt modifiers. Pyrolysis oil was produced as a byproduct from the pyrolysis of waste printed circuit boards (WPCBs). The high boiling point fraction was separated from the pyrolysis oil through distillation and is referred to as the heavy fraction of pyrolysis oil (HFPO). The HFPO was tested as an asphalt modifier. Three asphalt modifiers were tested: HFPO; styrene-butadiene rubber (SBR); and HFPO + SBR (1:1). The physical properties and road performance of the three modified asphalts were measured and evaluated. The results have shown that when the amount of modifier was less than 10%, the HFPO modified asphalt had the highest softening point of the three. The dynamic stability (DS) and water resistance of the asphalt mixture with the HFPO modified asphalt was 10,161 cycles/mm and 87.2%, respectively. The DS was much larger than for the HFPO + SBR and SBR modified asphalt mixtures. These results indicate that using HFPO as an asphalt modifier has significant benefits not only for road engineering but also for resource recycling.
本研究的重点是开发高效且经济实惠的沥青改性剂。热解油是从废印刷电路板(WPCBs)热解过程中产生的副产品。通过蒸馏从热解油中分离出高沸点馏分,并将其称为热解油的重馏分(HFPO)。将 HFPO 用作沥青改性剂进行了测试。测试了三种沥青改性剂:HFPO;苯乙烯-丁二烯橡胶(SBR);HFPO+SBR(1:1)。测量和评估了三种改性沥青的物理性能和路用性能。结果表明,当改性剂用量小于 10%时,HFPO 改性沥青的软化点最高。HFPO 改性沥青的混合料的动稳定度(DS)和水稳定性分别为 10,161 次/mm 和 87.2%。DS 远大于 HFPO+SBR 和 SBR 改性沥青混合料。这些结果表明,将 HFPO 用作沥青改性剂不仅对道路工程,而且对资源回收都具有重要意义。