...
首页> 外文期刊>Waste Management >Effect of accelerated carbonation and zero valent iron on metal leaching from bottom ash
【24h】

Effect of accelerated carbonation and zero valent iron on metal leaching from bottom ash

机译:加速碳化和零价铁对底灰中金属浸出的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

About 85% of the ashes produced in Sweden originated from the incineration of municipal solid waste and biofuel. The rest comes from the thermal treatment of recycled wood, peat, charcoal and others. About 68% of all ashes annually produced in Sweden are used for constructions on landfills, mainly slopes, roads and embankments, and only 3% for construction of roads and working surfaces outside the landfills (SCB, 2013). Since waste bottom ash (BA) often has similar properties to crushed bedrock or gravel, it could be used for road constructions to a larger extent However, the leaching of e.g. Cr, Cu, Mo, Pb and Zn can cause a threat to the surrounding environment if the material is used as it is. Carbonation is a commonly used pre-treatment method, yet it is not always sufficient. As leaching from aged ash is often controlled by adsorption to iron oxides, increasing the number of Fe oxide sorption sites can be a way to control the leaching of several critical elements. The importance of iron oxides as sorption sites for metals is known from both mineralogical studies of bottom ash and from the remediation of contaminated soil, where iron is used as an amendment. In this study, zero valent iron (Fe(0)) was added prior to accelerated carbonation in order to increase the number of adsorption sites for metals and thereby reduce leaching. Batch, column and pH_(stat) leaching tests were performed and the leaching behaviour was evaluated with multivariate data analysis. It showed that leaching changed distinctly after the tested treatments, in particular after the combined treatment. Especially, the leaching of Cr and Cu clearly decreased as a result of accelerated carbonation. The combination of accelerated carbonation with Fe(0) addition reduced the leaching of Cr and Cu even further and reduced also the leaching of Mo, Zn, Pb and Cd compared to untreated BA. Compared with only accelerated carbonation, the Fe(0) addition significantly reduced the leaching of Cr, Cu and Mo. The effects of Fe(0) addition can be related to binding of the studied elements to newly formed iron oxides. The effects of Fe(0) addition were often more distinct at pH values between 7 and 9, which indicates that a single treatment with only Fe addition would be less effective and a combined treatment is recommended. The pH_(stat) results showed that accelerated carbonation in combination with Fe(0)° addition widens the pH range for low solubility of about one unit for several of the studied elements. This indicates that pre-treating the bottom ash with a combination of accelerated carbonation and Fe(0) addition makes the leaching properties of the ash less sensitive to pH changes that may occur during reuse. All in all, the addition of Fe° in combination with carbonation could be an effective pre-treatment method for decreasing the mobility of potentially harmful components in bottom ash.
机译:瑞典生产的约85%的骨灰来自城市垃圾和生物燃料的焚烧。其余部分来自对再生木材,泥炭,木炭等的热处理。瑞典每年生产的所有骨灰中约有68%用于垃圾掩埋场的建设,主要是斜坡,道路和路堤,而仅3%用于垃圾掩埋场外的道路和工作面的建设(SCB,2013)。由于废底灰(BA)通常具有与压碎的基岩或砾石相似的性质,因此它可以更大程度地用于道路建设中。如果直接使用铬,铜,钼,铅和锌,可能会对周围环境造成威胁。碳酸化是一种常用的预处理方法,但并不总是足够的。由于从老化灰中浸出通常是通过吸附到氧化铁上来控制的,因此增加氧化铁吸附位点的数量可能是控制几种关键元素浸出的一种方法。从底灰的矿物学研究和受污染的土壤的修复(铁被用作改良剂),都知道氧化铁作为金属吸附位点的重要性。在这项研究中,在加速碳化之前添加了零价铁(Fe(0)),以增加金属的吸附位点数量,从而减少浸出。进行了批,柱和pH_(stat)浸出测试,并通过多变量数据分析评估了浸出行为。结果表明,在试验处理后,特别是在联合处理后,浸出发生了明显变化。特别地,由于加速碳化,Cr和Cu的浸出明显减少。与未处理的BA相比,加速碳化与添加Fe(0)的结合甚至进一步减少了Cr和Cu的浸出,并且还减少了Mo,Zn,Pb和Cd的浸出。与仅加速碳化相比,Fe(0)的添加显着减少了Cr,Cu和Mo的浸出。Fe(0)的添加可能与所研究元素与新形成的氧化铁的结合有关。在pH值介于7和9之间的情况下,添加Fe(0)的效果通常更为明显,这表明仅添加Fe的单次处理效果较差,建议采用联合处理。 pH_(stat)结果表明,加速的碳酸化与Fe(0)°的添加共同扩大了pH范围,对于几种研究元素而言,低溶解度约为一个单位。这表明通过加速碳化和添加Fe(0)的组合对底灰进行预处理,使得灰的浸出特性对在重复使用过程中可能发生的pH变化不太敏感。总而言之,添加Fe°结合碳酸化可能是一种有效的预处理方法,可以降低底灰中潜在有害成分的迁移率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号