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Phosphate Removal in Relation to Structural Development of Humic Acid-Iron Coprecipitates

机译:脱磷与腐殖酸-铁共沉淀物结构发展的关系

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摘要

Precipitation of Fe-hydroxide (FH) critically influences the sequestration of PO4 and organic matter (OM). While coatings of pre-sorbed OM block FH surfaces and decrease the PO4 adsorption capacity, little is known about how OM/Fe coprecipitation influences the PO4 adsorption. We aimed to determine the PO4 adsorption behaviors on humic acid (HA)-Fe coprecipitates in relation to surface and structural characteristics as affected by HA types and C/(C + Fe) ratios using the Fe and P X-ray absorption spectroscopy. With increasing C/(C + Fe) ratios, the indiscernible changes in the proportion of near-surface C for coprecipitates containing HA enriched in polar functional groups implied a relatively homogeneous distribution between C and Fe domains. Wherein PO4 adsorbed on FH dominated the P inventory on coprecipitates, yielding PO4 sorption properties nearly equivalent to that of pure FH. Structural disruptions of FH caused by highly associations with polar functional groups of HA enhanced the C solubilisation. While polar functional groups were limited, coprecipitates consisted of core FH with surface outgrowth of HA. Although surface-attached HA that was vulnerable to solubilisation provided alternatively sites for PO4 via ternary complex formation with Fe bridges, it also blocked FH surfaces, leading to a decrease in PO4 adsorption.
机译:氢氧化铁(FH)的沉淀会严重影响PO4和有机质(OM)的固存。虽然预吸附的OM涂层会阻碍FH表面并降低PO4吸附能力,但对于OM / Fe共沉淀如何影响PO4吸附知之甚少。我们旨在使用Fe和P X射线吸收光谱法确定腐殖酸(HA)-Fe共沉淀物上PO4的吸附行为与受HA类型和C /(C + Fe)比影响的表面和结构特征有关。随着C /(C + Fe)比的增加,含有富含极性官能团的HA的共沉淀物的近表面C的比例的不可分辨的变化意味着C和Fe域之间的分布相对均匀。其中吸附在FH上的PO4在共沉淀物中的P存量占主导地位,产生的PO4吸附性能几乎与纯FH相等。与HA的极性官能团高度缔合引起的FH结构破坏增强了C的溶解性。虽然极性官能团受到限制,但共沉淀物由核心FH和HA表面生长组成。尽管易溶解的表面附着的HA通过与Fe桥的三元络合物形成提供了PO4替代位点,但它也阻断了FH表面,导致PO4吸附减少。

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