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Application of mid-infrared spectroscopy for rapid characterization of key soil properties for engineering land use

机译:中红外光谱法在工程用地关键土壤特性快速表征中的应用

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Methods for rapid and accurate soil tests are needed for the index properties of material attributes commonly applied in civil engineering. We tested the application of mid-infrared (MIR) spectroscopy for the rapid characterization of selected key stability-related soil properties. Two sample sets, representing different soils from across Lake Victoria basin in Kenya, were used for the study: A model calibration set (n= 135) was obtained following a conditioned Latin hypercube sampling, and a validation set (n = 120) was obtained from independent sites using a spatially stratified random sampling strategy. Air-dried ground (< 0.5 mm) soil was scanned using a high-throughput screening accessory for diffuse reflectance attached to a Fourier transform infrared spectrometer. The soil properties were calibrated to smoothed first derivative MIR spectra using partial least-square regression (PLS), and screening tests were developed for various limitation classes applicable in civil works using the soft independent modeling of class analogy (SIMCA). The hold-out full cross-validation coefficient of determination (r(2)) >= 0.8 was obtained for the liquid limit (LL), linear shrinkage (LS), coefficient of linear extensibility (COLE), air-dried moisture content, (W) and cation exchange capacity (CEC). Further independent validation gave r(2) >= 0.73 and the ratio of prediction deviation (RPD) 4.4-2.1 for LL, LS, COLE, W, CEC, plastic limit (PL), plasticity index (PI), and volumetric shrinkage (VS). The independent validation likelihood ratios for the diagnostic screening tests were: LL > 55%, 4.2; PI > 30%, 2.7; LS > 12%, 2.4; exchangeable sodium (eNa) > 2 cmol (+) kg(-1), 2.3; exchangeable sodium percent (ESP) > 10%, 1.8; W > 8.3%, 1.6, and Activity number (A) > 1.25 units, 1.5. MIR can provide the rapid assessment of several soil properties that yield stability indices in material testing for engineering land use. Further studies should test the ability of MIR PLS for establishing broader calibrations across more diverse soil types and the direct correlation of MIR to material functional attributes. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved.
机译:对于土木工程中通常使用的材料属性的索引属性,需要一种快速而准确的土壤测试方法。我们测试了中红外(MIR)光谱技术对选定的与稳定性相关的关键土壤特性的快速表征。研究使用了两个样本集,分别代表肯尼亚维多利亚湖盆地的不同土壤:经过条件化的拉丁超立方体采样后,获得了模型校准集(n = 135),并获得了验证集(n = 120)使用空间分层的随机抽样策略从独立站点收集数据。使用高通量筛选附件对风干的地面(<0.5毫米)土壤进行扫描,以将漫反射系数附加到傅里叶变换红外光谱仪上。使用偏最小二乘回归(PLS)将土壤特性校准为平滑的一阶MIR光谱,并使用类比软独立模型(SIMCA)开发适用于土木工程的各种限制等级的筛选测试。对于液体极限(LL),线性收缩率(LS),线性延伸系数(COLE),风干水分含量,获得了确定的保留全交叉验证系数(r(2))> = 0.8 (W)和阳离子交换容量(CEC)。进一步的独立验证得出r(2)> = 0.73,LL,LS,COLE,W,CEC,塑性极限(PL),塑性指数(PI)和体积收缩率的预测偏差比(RPD)为4.4-2.1 VS)。诊断筛查测试的独立验证似然比为:LL> 55%,4.2; PI> 30%,2.7; LS> 12%,2.4;可交换钠(eNa)> 2 cmol(+)kg(-1),2.3;可交换钠百分比(ESP)> 10%,1.8; W> 8.3%,1.6,活动数(A)> 1.25单位,1.5。 MIR可以提供对几种土壤特性的快速评估,这些特性可在用于工程用地的材料测试中产生稳定性指标。进一步的研究应测试MIR PLS在更广泛的土壤类型上建立更广泛的标定以及MIR与材料功能属性的直接相关性的能力。 (C)2015年日本岩土学会。 Elsevier B.V制作和托管。保留所有权利。

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