College of Resources and Environment, Huazhong Agricultural University , Wuhan 430070, China.
Environ Sci Technol. 2013;47(23):13365-74. doi: 10.1021/es402748t. Epub 2013 Nov 19.
Unraveling the kinetics and mechanisms of sparingly soluble calcium orthophosphate (Ca-P) dissolution in the presence of organic acids at microscopic levels is important for an improved understanding in determining the effectiveness of organic acids present in most rhizosphere environments. Herein, we use in situ atomic force microscopy (AFM) coupled with a fluid reaction cell to image dissolution on the (010) face of brushite, CaHPO4 · 2H2O, in citrate-bearing solutions over a broad concentration range. We directly measure the dependence of molecular step retreat rate on citrate concentration at various pH values and ionic strengths, relevant to soil solution conditions. We find that low concentrations of citrate (10-100 μM) induced a reduction in step retreat rates along both the [100]Cc and [101]Cc directions. However, at higher concentrations (exceeding 0.1 mM), this inhibitory effect was reversed with step retreat speeds increasing rapidly. These results demonstrate that the concentration-dependent modulation of nanoscale Ca-P phase dissolution by citrate may be applied to analyze the controversial role of organic acids in enhancing Ca-P mineral dissolution in a more complex rhizosphere environment. These in situ observations may contribute to resolving the previously unrecognized interactions of root exudates (low molecular weight organic acids) and sparingly soluble Ca-P minerals.
解析在微观水平上存在有机酸时,对难溶性正磷酸钙 (Ca-P) 溶解的动力学和机制进行研究,对于提高对大多数根际环境中存在的有机酸的有效性的理解是很重要的。在此,我们使用原位原子力显微镜 (AFM) 结合流体反应池,在柠檬酸存在的溶液中,在较宽的浓度范围内对磷灰石的 (010) 面的溶解进行成像,该磷灰石为 CaHPO4·2H2O。我们直接测量了在各种 pH 值和离子强度下,柠檬酸浓度对分子台阶后退速率的依赖性,这与土壤溶液条件有关。我们发现,低浓度的柠檬酸 (10-100 μM) 沿 [100]Cc 和 [101]Cc 方向诱导台阶后退速率降低。然而,在较高浓度 (超过 0.1 mM) 时,这种抑制作用被逆转,台阶后退速度迅速增加。这些结果表明,柠檬酸对纳米级 Ca-P 相溶解的浓度依赖性调制可能适用于在更复杂的根际环境中分析有机酸对增强 Ca-P 矿物溶解的有争议作用。这些原位观察结果可能有助于解决以前未被认识到的根分泌物(低分子量有机酸)和难溶性 Ca-P 矿物之间的相互作用。