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碱激发粉煤灰中异质钙和重金属分布的高分辨率纳米探针X射线荧光表征

High-resolution nanoprobe X-ray fluorescence characterization of heterogeneous calcium and heavy metal distributions in alkali-activated fly ash.

作者信息

Provis John L, Rose Volker, Bernal Susan A, van Deventer Jannie S J

机构信息

Department of Chemical and Biomolecular Engineering, University of Melbourne, Victoria 3010, Australia.

出版信息

Langmuir. 2009 Oct 6;25(19):11897-904. doi: 10.1021/la901560h.

Abstract

The nanoscale distribution of elements within fly ash and the aluminosilicate gel products of its alkaline activation ("fly ash geopolymers") are analyzed by means of synchrotron X-ray fluorescence using a hard X-ray Nanoprobe instrument. The distribution of calcium within a hydroxide-activated (fly ash/KOH solution) geopolymer gel is seen to be highly heterogeneous, with these data providing for the first time direct evidence of the formation of discrete high-calcium particles within the binder structure of a geopolymer synthesized from a low-calcium (<2 wt % as oxides) fly ash. The silicate-activated (fly ash/potassium silicate solution) sample, by contrast, shows a much more homogeneous geopolymer gel binder structure surrounding the unreacted fly ash particles. This has important implications for the understanding of calcium chemistry within aluminosilicate geopolymer gel phases. Additionally, chromium and iron are seen to be very closely correlated within the structures of both fly ash and the geopolymer product and remain within the regions of the geopolymer which can be identified as unreacted fly ash particles. Given that the potential for chromium release has been one of the queries surrounding the widespread utilization of construction materials derived from fly ash, the observation that this element appears to be localized within the fly ash rather than dispersed throughout the gel binder indicates that it is unlikely to be released problematically into the environment.

摘要

利用硬X射线纳米探针仪器,通过同步加速器X射线荧光分析了粉煤灰及其碱活化产物(“粉煤灰地质聚合物”)中元素的纳米级分布。在氢氧化钾活化(粉煤灰/KOH溶液)地质聚合物凝胶中,钙的分布高度不均匀,这些数据首次直接证明了由低钙(氧化物含量<2 wt%)粉煤灰合成的地质聚合物粘结剂结构中形成了离散的高钙颗粒。相比之下,硅酸盐活化(粉煤灰/硅酸钾溶液)样品显示,围绕未反应粉煤灰颗粒的地质聚合物凝胶粘结剂结构更为均匀。这对于理解铝硅酸盐地质聚合物凝胶相中的钙化学具有重要意义。此外,在粉煤灰和地质聚合物产物的结构中,铬和铁的相关性非常紧密,并且保留在地质聚合物中可被识别为未反应粉煤灰颗粒的区域内。鉴于铬释放的可能性一直是围绕粉煤灰衍生建筑材料广泛应用的问题之一,该元素似乎局限于粉煤灰中而非分散在凝胶粘结剂中的观察结果表明,它不太可能以有问题的方式释放到环境中。

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