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A practical approach for solving disposal of rubber waste: Leachability of heavy metals from foamed concrete containing rubber powder waste (RPW)

机译:一种解决橡胶废物处理的实用方法:含有橡胶粉废弃物的重金属可浸出性(RPW)

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Enormous disposal of rubber wastes has become an issue with the facts that all tires have its own life span. Inefficient disposal method of RPW from used tire can cause environmental impact as the heavy metals content in tire can easily leach out thus causing contamination to the soil and waterways. The goals of this study is to identify the heavy metals content of rubber powder waste (RPW) and to determine the potential of leachability of heavy metals from foamed concrete containing different percentages of RPW. Therefore, this study is focused on the leachability of RPW incorporated in foamed concrete. Different percentages of RPW were incorporated in foamed concrete (0%, 6%, 12% and 18%) for the investigation. Leachability tests were done by using toxicity characteristic leaching procedure (TCLP) on crushed samples of foamed concrete incorporated with RPW and were analyzed by using inductive coupled plasma mass spectrometry (ICP-MS). The results from XRF indicated that RPW is high in metals such as Zn, Cu, Ba and Co. The highest concentration of heavy metals in raw RPW is Zn with 51403 ppm which is exceeded USEPA (2010) maximum contaminant level (MCL) of Zn with only 5 ppm. After RPW had been incorporated into a foamed concrete, the results demonstrated that the Zn, Cu, Ba and Co heavy metals were less leached and complied with USEPA standard. The incorporation of RPW into foamed concrete in this study demonstrated that it could be a potential alternative raw material for concrete thus enhancing the possibility of its reuse in safe and sustainable way.
机译:橡胶废物处置巨大已成为所有轮胎有它自己的寿命的事实的问题。从用过的轮胎RPW的低效处理方法可引起如在轮胎中的重金属含量的环境影响可以容易浸出从而导致污染土壤和水道。本研究的目标是确定的橡胶粉末废料(RPW)的重金属含量,并确定从泡沫混凝土含有RPW的不同百分比的重金属可浸出的潜力。因此,本研究的重点是在发泡混凝土结合RPW的浸出。 RPW的不同百分比在用于调查泡沫混凝土(0%,6%,12%和18%)的方式并入本文。可浸出试验通过与RPW掺入泡沫混凝土的粉碎样品使用毒性特征浸出程序(TCLP)来完成,并通过使用电感耦合等离子体质谱(ICP-MS)进行分析。从XRF结果表明,RPW是在金属如锌,铜,钡和Co.原RPW重金属的最高浓度高的Zn是用Zn的51403 ppm的被超过USEPA(2010)最大污染物水平(MCL)只有5ppm以下。后RPW已经纳入的发泡混凝土,结果表明,锌,铜,Ba及Co的重金属被浸出更少并与USEPA标准遵守。 RPW纳入泡沫混凝土在这项研究表明,它可能是一个潜在的替代水泥原料从而提高其在安全和可持续的方式再利用的可能性。

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