机械力化学协同草酸活化混维凹凸棒石黏土及其土壤改良应用研究

Mechanochemical Synergistic Activation of Mixed−Dimensional Attapulgite Clay with Oxalic Acid for Soil Amendment Application

  • 摘要: 甘肃混维凹凸棒石黏土储量丰富,已在土壤改良中得到应用,但富含的多种常/微量元素未被有效活化,难以直接被作物利用。以草酸为活化剂,采用行星式球磨机协同处理,考察了草酸用量对混维凹凸棒石黏土中常/微量元素活化效果的影响。结果表明,机械力化学与草酸具有协同活化效应:机械力化学通过高能球磨诱导矿物组织细化、晶格畸变和表面活化,从而暴露大量新鲜表面和活性位点;在机械力化学辅助下,草酸通过酸性溶蚀、络合及还原等多重作用,实现多种常/微量元素的高效溶蚀与释放。当草酸用量为10%时,电导率较原矿提高62.4%,表明可溶性离子含量显著增加。小麦盆栽实验进一步证实,将活化混维凹凸棒石黏土施入土壤后,小麦地上部鲜重、地上部干重和根部干重分别提高39.6%~ 62.6%、9.0%~ 42.1%和6.0%~ 24.7%,土壤阳离子交换量提高了24.3%~ 37.2%、容重降低了10.3%~ 13.8%,表现出明显的促生作用和土壤结构改良效果。该研究为混维凹凸棒石黏土的高值化利用和土壤改良提供了一种可行的方法。

     

    Abstract: Mixed−dimensional attapulgite clay (MDAPT) is abundant in reserves in Gansu Province, which has been preliminarily applied in soil improvement practices. However, the various major and trace elements confined in clay minerals remain largely inactivated in the forms of binding state, and it is difficult to be directly absorbed and utilized by the plant, which significantly limits its potential for agricultural application. To achieve efficient activation of major and trace elements in MDAPT, oxalic acid was employed as an activator, which combined with the synergistic treatment of planetary ball mill. The effects of oxalic acid dosage on the activation efficiency of major and trace elements in MDAPT were systematically investigated. The results demonstrate that mechanochemistry and oxalic acid possess a synergistic effect on the activation of MDAPT. Among them, mechanochemistry induces, lattice distortion and surface activation of minerals based on high−energy impact, shearing and friction forces generated during high−energy ball milling, thereby exposing a large number of fresh surfaces and active sites. In addition, oxalic acid activation realizes the efficient leaching and release of major and trace elements in MDAPT by multiple chemical actions including acid dissolution, complexation and reduction with the assistance of mechanochemistry. With the increase in the added amount of oxalic acid, the electrical conductivity of the activated MDAPT increased significantly from 29.7% to 62.4% according to ICP−MS analysis, indicating a substantial increase in the content of soluble ions due to their leaching and release from minerals. The wheat cultivation in pot experiments were conducted to further evaluate the application effect of the activated MDAPT on the physical and chemical properties of soil. The results confirm that the application of the activated MDAPT significantly improves both soil properties and plant growth performance. Specifically, cation exchange capacity of soil increases by 24.3%~37.2%, while bulk density decreases by 10.3%~13.8%. Correspondingly, the aboveground fresh weight, aboveground dry weight and root dry weight of wheat increase by 39.6%~62.6%, 9.0%~42.1% and 6.0%~24.7%, respectively, demonstrating an obvious growth−promoting and soil structure improvement effects. This study provides a feasible approach for the high−value utilization of MDAPT and soil improvement.

     

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