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RDF 高温气化厂底灰的浸出行为。

Leaching behaviour of bottom ash from RDF high-temperature gasification plants.

机构信息

Dept. of Civil and Environmental Engineering, University of Florence, via S. Marta 3, 50139 Florence, Italy.

出版信息

Waste Manag. 2011 Jul;31(7):1514-21. doi: 10.1016/j.wasman.2011.03.009. Epub 2011 Apr 3.

Abstract

This study investigated the physical properties, the chemical composition and the leaching behaviour of two bottom ash (BA) samples from two different refuse derived fuel high-temperature gasification plants, as a function of particle size. The X-ray diffraction patterns showed that the materials contained large amounts of glass. This aspect was also confirmed by the results of availability and ANC leaching tests. Chemical composition indicated that Fe, Mn, Cu and Cr were the most abundant metals, with a slight enrichment in the finest fractions. Suitability of samples for inert waste landfilling and reuse was evaluated through the leaching test EN 12457-2. In one sample the concentration of all metals was below the limit set by law, while limits were exceeded for Cu, Cr and Ni in the other sample, where the finest fraction showed to give the main contribution to leaching of Cu and Ni. Preliminary results of physical and geotechnical characterisation indicated the suitability of vitrified BA for reuse in the field of civil engineering. The possible application of a size separation pre-treatment in order to improve the chemical characteristics of the materials was also discussed.

摘要

本研究调查了两种来自两个不同废物衍生燃料高温气化厂的底灰(BA)样品的物理性质、化学组成和浸出行为,作为粒度的函数。X 射线衍射图谱表明,这些材料含有大量的玻璃。可用性和 ANC 浸出试验的结果也证实了这一点。化学成分表明,Fe、Mn、Cu 和 Cr 是最丰富的金属,在最细的部分略有富集。通过浸出试验 EN 12457-2 评估了样品作为惰性废物填埋场和再利用的适用性。在一个样品中,所有金属的浓度都低于法律规定的限值,而在另一个样品中,Cu、Cr 和 Ni 的限值被超过,其中最细的部分对 Cu 和 Ni 的浸出起主要作用。物理和岩土特性的初步结果表明,玻璃化 BA 适合在土木工程领域再利用。还讨论了采用尺寸分离预处理以改善材料化学特性的可能性。

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