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Quantitative NMR of quadrupolar nucleus as a novel analytical method: hydrolysis behaviour analysis of aluminum ion

机译:Quadrupolar核的定量NMR作为一种新型分析方法:铝离子水解行为分析

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摘要

In this study, quantitative nuclear magnetic resonance (qNMR) spectroscopy of quadrupolar nuclei has been established. The complicated hydrolysis behavior of the Al3+ ion, which causes fish poisoning and inhibits the growth of plants in environmental water, was clarified by Al-27 qNMR spectroscopy. Highly accurate simultaneous multicomponent quantitative analysis of various hydrolyzed forms of the Al ion was achieved in a non-destructive manner. The calibration curve of the external standard aqueous Al(NO3)(3) solution showed excellent linearity over a very wide concentration range from 1 x 10(-4) to 1 mol L-1 (an increase in concentration of 10 000 times), with a simple experimental and analytical procedure. Furthermore, the weaknesses of the conventional Ferron assay and the advantages of Al-27 qNMR spectroscopy were considered. The quantitative determination error for the free [Al(H2O)(6)](3)(+) ion and the trinuclear complex, which has a high complexation rate, is higher in the Ferron assay than in the Al-27 qNMR technique. The concentrations of four Al species were directly determined by Al-27 qNMR, namely, free [Al(H2O)(6)](3)(+), the trinuclear complex, Al(OH)(4)(-), and tridecameric hydrolyzed Al, which has a Keggin structure. The concentration of the tridecamer rapidly increased until 100 min after NaOH addition, and showed a local maximum after 1 week. In addition, the concentration of colloidal Al hydroxide, which cannot be detected by NMR spectroscopy, was determined by numerical analysis. This species was generated in the initial stage of reaction, and then the tridecamer formed very slowly.
机译:在本研究中,已经建立了四核核的定量核磁共振(QNMR)光谱。通过Al-27 QNMR光谱阐明了Al3 +离子的复杂水解行为,导致鱼类中毒并抑制植物中植物的生长。以非破坏性方式实现了各种水解形式的各种水解形式的高度准确的同时多组分分析。外标含水Al(NO 3)(3)溶液的校准曲线在非常宽的浓度范围内显示出优异的线性,范围为1×10(-4)至1mol L-1(浓度增加10 000次),具有简单的实验和分析程序。此外,考虑了常规铁素测定的弱点和Al-27 QNMR光谱的优点。无法/ 27 QNMR技术的Ferron测定中具有高络合速率的游离[Al(H 2 O)(6)](3)(+)离子和三核复合物的定量测定误差。通过Al-27 QNMR直接测定四种Al物种的浓度,即游离[Al(H 2 O)(6)](3)(3)(+),三核络合物,Al(OH)(4)( - ),和Trideceric水解Al,具有Keggin结构。在NaOH添加后,曲线的浓度快速增加至100分钟,并在1周后显示出局部最大值。另外,通过数值分析确定不能通过NMR光谱检测的胶体Al氢氧化物的浓度。该物种在反应的初始阶段产生,然后曲线形成非常缓慢。

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