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A cut-off criterion for calculating more reliable adsorption energy distributions from gas adsorption isotherms

机译:用于计算来自气体吸附等温线更可靠的吸附能量分布的截止标准

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摘要

Adsorption energy distributions from experimental gas adsorption isotherms are capable to characterize the energetic heterogeneity of a solid surface. Unfortunately, they can only be computed by the adsorption integral equation, which represents an ill-posed problem, i.e., the solution is highly sensitive to errors in the input data. Ill-posed problems are usually solved by means of regularization, but general regularization schemata do not provide useful criteria to estimate the approximation quality. In this paper, a former presented solution strategy tailor-made for the Langmuir kernel of the adsorption integral equation is extended to Fourier transform. This yields a simple and effective cut-off criterion for the Fourier cosine transform of the adsorption energy distribution. The cut-off criterion is applied to calculate adsorption energy distributions from synthetic and experimental adsorption isotherms.
机译:来自实验气体吸附等温线的吸附能量分布能够表征固体表面的能量异质性。 遗憾的是,它们只能由吸附整体方程计算,这代表了一个不存在的问题,即,解决方案对输入数据中的错误非常敏感。 通常通过正常化解决了不良问题,但一般正则化模式不提供估计近似质量的有用标准。 在本文中,为吸附整体方程的Langmuir内核量身定制的前一种呈现的解决方案策略延伸到傅里叶变换。 这产生了一种简单且有效的截止标准,用于吸附能量分布的傅里叶余弦变换。 截止标准应用于从合成和实验吸附等温线计算吸附能量分布。

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