首页> 外文期刊>Scientific reports. >Identification of Magnesium Oxychloride Cement Biomaterial Heterogeneity using Raman Chemical Mapping and NIR Hyperspectral Chemical Imaging
【24h】

Identification of Magnesium Oxychloride Cement Biomaterial Heterogeneity using Raman Chemical Mapping and NIR Hyperspectral Chemical Imaging

机译:利用拉曼化学映射鉴定氧基氯化镁水泥生物材料异质性和NIR高光谱化学成像

获取原文
       

摘要

The present study investigated spatial heterogeneity in magnesium oxychloride cements within a model of a mould using hyperspectral chemical imaging?(HCI). The ability to inspect cements within a mould allows for the assessment of material formation in real time in addition to factors affecting ultimate material formation. Both macro scale NIR HCI and micro scale pixel-wise Raman chemical mapping were employed to characterise the same specimens. NIR imaging is rapid, however spectra are often convoluted through the overlapping of overtone peaks, which can make interpretation difficult. Raman spectra are more easily interpretable, however Raman imaging can suffer from slower acquisition times, particularly when the signal to noise ratio is relatively poor and the spatial resolution is high. To overcome the limitations of both, Raman/NIR data fusion techniques were explored and implemented. Spectra collected using both modalities were co-registered and intra and inter-modality peak correlations were investigated while k-means cluster patterns were compared. In addition, partial least squares regression models, built using NIR spectra, predicted chemical-identifying Raman peaks with an R2 of up to >0.98. As macro scale imaging presented greater data collection speeds, chemical prediction maps were built using NIR HCIs.
机译:本研究研究了使用过斑化学成像(HCI)模型内氧氯化镁水泥中的氧氯化镁水泥中的空间异质性?(HCI)。除了影响终极材料形成的因素外,还可以实时评估模具内的水泥的能力。使用宏观缩放NIR HCI和微尺度像素 - 方向拉曼化学映射来表征相同的样本。 NIR成像是快速的,然而,光谱通常通过泛隆峰的重叠而旋转,这可以使解释难。拉曼光谱更容易解释,然而拉曼成像可能遭受较慢的采集时间,特别是当信噪比相对较差并且空间分辨率高时。为了克服两者的局限性,探讨并实施了拉曼/尼尔数据融合技术。使用两种方式收集的光谱是共同登记的,并且研​​究了k-means群集模式的同时研究了帧内和模态峰值相关性。另外,使用NIR光谱构建的部分最小二乘回归模型,预测化学识别拉曼峰,其具有高达> 0.98的R 2 。由于宏观成像呈现了更大的数据收集速度,使用NIR HCI构建了化学预测图。

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