Cokca Erdal, Yilmaz Zeka
Department of Civil Engineering, Middle East Technical University, 06531, Ankara, Turkey.
Waste Manag. 2004;24(2):153-64. doi: 10.1016/j.wasman.2003.10.004.
In many countries regulations require all hazardous waste disposal facilities to be lined with suitable impermeable barriers to protect against contamination. In this study, a series of laboratory tests on rubber and bentonite added fly ash were conducted. The aim of the tests was to evaluate the feasibility of utilizing fly ash, rubber and bentonite as a low hydraulic conductivity liner material. Type C fly ash was obtained from Soma thermal power plant in Turkey; rubber in pulverized form was waste from the retreading industry. To investigate the properties of rubber and bentonite added fly ash, hydraulic conductivity, leachate analysis, unconfined compression, split tensile strength, one-dimensional consolidation, swell and freeze/thaw cycle tests were performed. The overall evaluation of results have revealed that rubber and bentonite added fly ash showed good promise and a candidate for construction of a liner.
在许多国家,法规要求所有危险废物处置设施都要衬有合适的防渗屏障,以防污染。在本研究中,对添加了橡胶和膨润土的粉煤灰进行了一系列实验室测试。这些测试的目的是评估利用粉煤灰、橡胶和膨润土作为低水力传导率衬里材料的可行性。C型粉煤灰取自土耳其的索马热电厂;粉状橡胶是翻新行业产生的废料。为了研究添加了橡胶和膨润土的粉煤灰的性能,进行了水力传导率、渗滤液分析、无侧限抗压、劈裂抗拉强度、一维固结、膨胀和冻融循环试验。结果的综合评估表明,添加了橡胶和膨润土的粉煤灰前景良好,有望成为衬里建设的候选材料。