Huang Chin-Ming, Chiu Chui-Te, Li Kung-Cheh, Yang Wan-Fa
Graduate Institute of Environmental Engineering, National Taiwan University, Taiwan.
J Hazard Mater. 2006 Oct 11;137(3):1742-9. doi: 10.1016/j.jhazmat.2006.05.016. Epub 2006 May 12.
This paper presents parts of the results from a research project sponsored by Taiwan Environmental Protection Administration (TEPA), investigating both the physical and environmental properties of asphalt mixtures using different amount of incinerator bottom ash (IBA) as fine aggregate substitution. The Marshall mix design method was used to determine the design asphalt content and evaluate the potential performance of these IBA-asphalt mixtures. Water sensitivity and wheel track rutting were also performed on these mixtures. Leachates, from both laboratory and outdoor leaching tests, were performed to measure the concentration of selected heavy metals and the level of daphnia toxicity. While with adequate Marshall stability, the IBA-asphalt mixtures were shown to have excessively high Marshall flow and excessively low VMA (voids in the mineral aggregate). The results of the wheel tracking tests also indicated that the IBA-asphalt mixtures had low rutting resistance. The results of the water sensitivity test according to procedure of AASHTO T283 method showed that the IBA-asphalt mixtures had a higher tensile strength ratio (TSR) as compared with the conventional asphalt mixtures. Considering the environmental aspects, outdoor leaching tests showed that IBA had a high level of daphnia toxicity. From an ecological perspective, IBA could be identified as hazardous waste in Taiwan. However, after being mixed with asphalt binder, the concentration of heavy metals and the levels of daphnia toxicity were significantly reduced. The leachates of 10-day flat plate leaching tests on Marshall specimens containing IBA indicated that the heavy metal were undetectable and the daphnia toxicity was ineffective.
本文介绍了由台湾环境保护署(TEPA)赞助的一个研究项目的部分成果,该项目研究了使用不同数量的焚烧炉底灰(IBA)替代细集料时沥青混合料的物理和环境特性。采用马歇尔混合料设计方法来确定设计沥青含量,并评估这些IBA - 沥青混合料的潜在性能。还对这些混合料进行了水敏感性和车辙试验。进行了实验室和户外浸出试验的浸出液测试,以测量选定重金属的浓度和水蚤毒性水平。虽然IBA - 沥青混合料具有足够的马歇尔稳定性,但显示出过高的马歇尔流值和过低的矿料间隙率(VMA)。车辙试验结果还表明,IBA - 沥青混合料的抗车辙性能较低。根据AASHTO T283方法的程序进行的水敏感性试验结果表明,与传统沥青混合料相比,IBA - 沥青混合料具有更高的抗拉强度比(TSR)。从环境方面考虑,户外浸出试验表明IBA具有较高的水蚤毒性水平。从生态角度来看,IBA在台湾可被认定为危险废物。然而,与沥青结合料混合后,重金属浓度和水蚤毒性水平显著降低。对含有IBA的马歇尔试件进行的10天平板浸出试验的浸出液表明,重金属未被检测到,水蚤毒性无效。