首页> 外文期刊>Journal of Colloid and Interface Science >Use of X-ray absorption near edge structure (XANES) to identify physisorption and chemisorption of phosphate onto ferrihydrite-modified diatomite
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Use of X-ray absorption near edge structure (XANES) to identify physisorption and chemisorption of phosphate onto ferrihydrite-modified diatomite

机译:利用X射线近边缘结构吸收(XANES)来识别磷酸盐在铁水母改性硅藻土上的物理吸附和化学吸附

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摘要

This paper presents a novel technique integrating bulk-sensitive and surface-sensitive XANES methods to distinguish between physisorption and chemisorption for phosphate adsorption onto ferrihydrite-modified diatomite (FHMD). XANES P K-edge, L-edge, and Fe M-edge spectra were obtained for reference samples (K _2HPO _4 and FePO _4·2H _2O) and test samples (phosphate adsorbed onto FHMD (FHMD-Ps) and Si-containing ferrihydrite (FHYD-Ps)). A resolvable pre-edge peak in the P K-edge spectra of FHMD-Ps and FHYD-Ps provided direct evidence for the formation of P-O-Fe(III) coordination and the occurrence of chemisorption. The resemblance between the P L-edge spectra of K _2HPO _4 and FHMD-Ps and the marked difference between the spectra of FHMD-Ps and FePO _4·2H _2O indicated the intact existence of the adsorbate and the adsorbent. The similarity between Fe M-edge spectra of FHMD and FHMD-Ps and the difference between the spectra of FHMD-Ps and FePO _4·2H _2O confirmed the findings from P L-edge analyses. Therefore, chemisorption and physisorption coexisted during phosphate adsorption onto FHMD. Phosphate chemisorption occurred in the deeper zone of FHMD (from 50nm to 5μm); whereas physisorption occurred in the zone of FHMD shallower than 50nm since the probing depth of XANES P K-edge method is 5μm and that of P L-edge and Fe M-edge methods is 50nm.
机译:本文提出了一种新技术,该技术结合了体积敏感和表面敏感的XANES方法来区分磷酸盐吸附在三水铁矿改性硅藻土(FHMD)上的物理吸附和化学吸附。对于参考样品(K _2HPO _4和FePO _4·2H _2O)和测试样品(吸附在FHMD上的磷酸盐(FHMD-Ps)和含硅的水铁矿),获得了XANES P K边缘,L边缘和Fe M边缘光谱。 (FHYD-Ps))。 FHMD-Ps和FHYD-Ps的P K-edge光谱中可分辨的pre-edge峰为P-O-Fe(III)配位的形成和化学吸附的发生提供了直接的证据。 K _2HPO _4和FHMD-Ps的P L边缘光谱之间的相似性以及FHMD-Ps和FePO _4·2H _2O的光谱之间的明显差异表明被吸附物和吸附剂的完整存在。 FHMD和FHMD-Ps的Fe M-edge光谱之间的相似性以及FHMD-Ps和FePO _4·2H _2O的光谱之间的差异证实了P L-edge分析的结果。因此,磷酸盐吸附到FHMD上同时存在化学吸附和物理吸附。磷酸盐化学吸附发生在FHMD的较深区域(从50nm到5μm)。由于XANES P K-edge方法的探测深度为5μm,而P L-edge和Fe M-edge方法的探测深度为50nm,因此FHMD的深度小于50nm时发生了物理吸附。

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