Long‐term stability of phosphate sorbed on an allophanic Andosol and a synthesized allophane

Author:

Sato Kenji1,Hama Takehide1ORCID,Ito Hiroaki2,Kobayashi Kayoko1ORCID,Nakamura Kimihito2,Sakurai Shinji3

Affiliation:

1. Graduate School of Agriculture Kyoto University Kyoto Japan

2. Center for Water Cycle, Marine Environment and Disaster Management Kumamoto University Kumamoto Japan

3. Graduate School of Agriculture Osaka Metropolitan University Osaka Japan

Abstract

AbstractAllophane and ferrihydrite are the main hosts of phosphate in allophanic Andosols, which are vital soil resources that support high human population densities. However, the sorption mechanism of phosphate on allophane has not been elucidated, unlike that of ferrihydrite. In particular, the effects of residence time on phosphate sorbed on allophane remain unclear. Therefore, the objectives of this study were to (1) understand the effect of residence time on the stability of phosphate sorbed on allophanic Andosol and allophane by desorption experiments using arsenate and (2) elucidate the sorption mechanism of phosphate on allophane using solid‐state 31P nuclear magnetic resonance (NMR). Consequently, the slow sorption of phosphate onto allophanic Andosol, allophane, and ferrihydrite continued for approximately 150 days. The ratio of total desorbable phosphate to phosphate sorbed onto the allophanic Andosol and allophane decreased with increasing residence time. In other words, phosphate sorption on allophanic Andosol and allophane was more irreversible with increasing residence time. The NMR spectra and X‐ray diffraction patterns showed that the molecular environment of phosphate sorbed onto allophane and ferrihydrite did not change at any residence time. Therefore, the slow sorption and irreversibility of phosphate were caused not by surface precipitation but by internal diffusion. In addition, the NMR spectra showed that most of the phosphate sorbed on allophane was present as inner‐sphere complexes.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Residence time effects on arsenate sorption on an allophanic Andosol;Soil Science and Plant Nutrition;2024-08-17

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