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Elemental composition of biochars is affected by methods used for its determination

机译:Biochars的元素组成受用于测定的方法的影响

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Ultimate analysis, energy dispersive X-ray spectroscopy (EDX), and X-ray photoelectron spectroscopy (XPS) are widely used methods for the determination of elemental composition of biomaterials such as biochar. However, models that describe the relationship in elemental composition between ultimate and spectroscopic methods are lacking. Elemental composition of biochars determined using ultimate analysis, EDX, and XPS methods was used to develop relationships among these methods using linear regression and generalized additive modelling. The relationships were evaluated using min/max accuracy and cross-validation. Based on Akaike information criterion and generalized cross-validation scores, the generalized additive model with a thin plate spline (TPS) best described the relationships. Model performance significantly improved by adding a feedstock-dependent grouping variable. Elemental carbon concentration determined by the different methods was significantly related (R2 = 0.82-0.88) by the TPS. Although not detected by EDX, nitrogen concentration was significantly related by TPS (R2 = 0.77) between the ultimate and XPS methods. For oxygen concentration, a strongly significant relationship (R2 = 0.83-0.86) was found between the ultimate and both spectroscopic methods, but a weak one (R2 0.54) between the XPS and EDX methods. Min/max accuracy, reaching 80 % and above during testing, confirmed that the best-fit models would predict carbon, nitrogen and oxygen concentrations with small variations for several biochars. We conclude that the elemental composition of biochars is affected by the method used for its determination and the generalized additive models developed can be used to calibrate the elemental composition analyzed using different methods.
机译:终极分析,能量分散X射线光谱(EDX)和X射线光电子体光谱(XPS)是广泛使用的用于测定生物材料等生物材料组成的方法。然而,缺乏描述最终和光谱法之间的元素组成中关系的模型。使用直接分析,EDX和XPS方法测定的生物脉内的元素组成用于使用线性回归和广义添加剂建模在这些方法中的关系。使用MIN /最大精度和交叉验证来评估关系。基于Akaike信息标准和广义交叉验证分数,具有薄板样条(TPS)的广义添加剂模型最佳地描述了这种关系。通过添加原料依赖性分组变量,模型性能显着提高。由不同方法测定的元素碳浓度通过TPS显着相关(R2 = 0.82-0.88)。虽然未通过EDX检测到,但在最终和XPS方法之间的TPS(R2 = 0.77),氮浓度明显相关。对于氧气浓度,在极限和两个光谱方法之间发现了强烈的关系(R2 = 0.83-0.86),但XPS和EDX方法之间的弱(R2 <0.54)。最小/最大精度,在测试期间达到80%及更高,确认最佳拟合模型将预测碳,氮气和氧浓度的几种生物触盘的含量小。我们得出结论,Biochars的元素组成受其测定的方法的影响,并且展开的广义添加剂模型可用于校准使用不同方法分析的元素组成。

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