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Online sorting of recovered wood waste by automated XRF-technology: Part II. Sorting efficiencies

机译:通过自动XRF技术在线分类回收的木材废料:第二部分。分选效率

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摘要

Sorting of waste wood is an important process practiced at recycling facilities in order to detect and divert contaminants from recycled wood products. Contaminants of concern include arsenic, chromium and copper found in chemically preserved wood. The objective of this research was to evaluate the sorting efficiencies of both treated and untreated parts of the wood waste stream, and metal (As, Cr and Cu) mass recoveries by the use of automated X-ray fluorescence (XRF) systems. A full-scale system was used for experimentation. This unit consisted of an XRF-detection chamber mounted on the top of a conveyor and a pneumatic slide-way diverter which sorted wood into presumed treated and presumed untreated piles. A randomized block design was used to evaluate the operational conveyance parameters of the system, including wood feed rate and conveyor belt speed. Results indicated that online sorting efficiencies of waste wood by XRF technology were high based on number and weight of pieces (70-87% and 75-92% for treated wood and 66-97% and 68-96% for untreated wood, respectively). These sorting efficiencies achieved mass recovery for metals of 81-99% for As, 75-95% for Cu and 82-99% of Cr. The incorrect sorting of wood was attributed almost equally to deficiencies in the detection and conveyance/diversion systems. Even with its deficiencies, the system was capable of producing a recyclable portion that met residential soil quality levels established for Florida, for an infeed that contained 5% of treated wood.
机译:废木材的分类是在回收设施中实践的重要过程,目的是检测和转移回收木材产品中的污染物。令人关注的污染物包括化学防腐木材中发现的砷,铬和铜。这项研究的目的是通过使用自动X射线荧光(XRF)系统评估木材废物流中已处理和未处理部分的分类效率以及金属(砷,铬和铜)的质量回收率。一个完整的系统用于实验。该单元由安装在传送带顶部的XRF检测室和气动滑道分流器组成,该分流器将木材分类为假定的处理过的和假定的未经处理的堆。随机区组设计用于评估系统的运行输送参数,包括木材进料速度和输送带速度。结果表明,基于碎片数量和重量,通过XRF技术进行的废木在线分类效率很高(处理过的木材分别为70-87%和75-92%,未经处理的木材分别为66-97%和68-6%) 。这些分选效率实现了金属的质量回收率:砷为81-99%,铜为75-95%,铬为82-99%。木材的不正确分类几乎等同地归因于检测和运输/转移系统的缺陷。即使存在缺陷,该系统也能够生产出可回收的部分,该部分达到佛罗里达州规定的住宅土壤质量标准,其进料中含有经过处理的木材的5%。

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  • 来源
    《Waste Management》 |2011年第4期|p.695-704|共10页
  • 作者单位

    Department of Civil, Architectural, and Environmental Engineering, University of Miami, Coral Cables, FL 33146-0630, USA,Department of Civil Engineering, An-Najah National University, P.O. Box 7, Nablus, Palestine;

    Department of Civil, Architectural, and Environmental Engineering, University of Miami, Coral Cables, FL 33146-0630, USA;

    Department of Environmental Engineering Sciences, University of Florida, Gainesville, FL 32611-6450, USA;

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