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高分子量有机物分子与正磷酸盐竞争吸附到铁(氧)氢氧化物上。

Higher Molecular Mass Organic Matter Molecules Compete with Orthophosphate for Adsorption to Iron (Oxy)hydroxide.

机构信息

School of Food and Agriculture, University of Maine , Orono, Maine 04469-5722, United States.

出版信息

Environ Sci Technol. 2016 Jul 19;50(14):7461-9. doi: 10.1021/acs.est.6b01582. Epub 2016 Jul 8.

DOI:10.1021/acs.est.6b01582
PMID:27362894
Abstract

The competition between orthophosphate and water-extractable organic matter (WEOM) for adsorption to iron (oxy)hydroxide mineral surfaces is an important factor in determining the plant bioavailability of P in soils. Chemical force spectroscopy was used to determine the binding force between orthophosphate and iron (oxy)hydroxide that was coated onto atomic force microscopy (AFM) tips and adsorbed with WEOM. The force measurements were conducted at pH 4.65 and 0.02 M ionic strength which are representative of typical acid soil solutions. The chemical composition of the WEOM was determined by ultrahigh resolution electrospray ionization Fourier transform ion cyclotron mass spectrometry. The results indicate a correlation between aromatic WEOM molecules that are greater than 600 Da and the reduced binding force of orthophosphate to WEOM-adsorbed iron (oxy)hydroxide AFM tips suggesting that the molecular mass of aromatic WEOM molecules plays a critical role in regulating the WEOM-P interactions with surface functional groups of minerals. Based on the results of this study, we show the importance of obtaining a detailed, molecular-scale understanding of soil processes that can help develop better management strategies to reduce waste of limited P resources and adverse environmental impacts. Specifically, soil amendments with greater content of high molecular mass aromatic components may positively affect dissolved P use efficiency in soils by maintaining P in soil solution.

摘要

正磷酸盐与水溶性有机物质(WEOM)竞争吸附到铁(氧)氢氧化物矿物表面是决定土壤中磷植物生物有效性的一个重要因素。化学力谱法被用来测定与铁(氧)氢氧化物涂层的原子力显微镜(AFM)针尖和吸附 WEOM 的正磷酸盐之间的结合力。在 pH4.65 和 0.02 M 离子强度下进行了力测量,这代表了典型的酸性土壤溶液。WEOM 的化学成分通过超高分辨率电喷雾电离傅里叶变换离子回旋共振质谱来确定。结果表明,大于 600 Da 的芳香性 WEOM 分子与正磷酸盐与 WEOM 吸附铁(氧)氢氧化物 AFM 针尖的结合力降低之间存在相关性,这表明芳香性 WEOM 分子的分子量在调节 WEOM-P 与矿物表面官能团的相互作用方面起着关键作用。基于这项研究的结果,我们展示了获得对土壤过程的详细、分子尺度理解的重要性,这有助于制定更好的管理策略,以减少有限磷资源的浪费和不利的环境影响。具体而言,土壤中具有较高分子量芳香成分的土壤改良剂可能通过保持土壤溶液中的磷来积极影响土壤中溶解磷的利用效率。

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