以层状矿物为改良剂的改性材料用于工业荒地灰泥的修复

T. K. Ivanova, M. Slukovskaya, I. Mosendz, E. A. Krasavtseva, V. Maksimova, I. Kanareykina, A. Shirokaya, I. Kremenetskaya
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引用次数: 0

摘要

层状硅酸盐,如蛇纹石和蛭石,具有一些特性,可以使用基于它们的材料作为环境技术的组成部分。研究了长期暴露于铜镍生产排放形成的工业污染地区(摩尔曼斯克地区蒙切戈尔斯克)土壤修复的可能性。在我们的研究中,我们使用了两种材料作为改善剂:膨胀蛭石和颗粒蛇纹石吸附剂,这是采用金属高浓度溶液净化技术后的废物。这些材料对几种金属具有很高的吸附活性,比表面积高,保持水分的能力,并且数量足够用于大面积的修复。对工业污染土壤及其改良剂的理化性质进行了研究,对灰硝及其与膨化蛭石和蛇纹石吸附剂的混合物(试验植物为普通燕麦Avna satva L.和红三叶草Trifolium pratnse L.)进行了直接植物毒性试验。研究结果表明,该材料是提高酸性土壤pH值,吸附和沉淀Al及潜在有毒金属Cu、Ni、Pb、Fe的有效添加剂,改善土壤水物理和农化特性。注意到试验植物对将改良剂引入工业污染土壤的积极反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modified materials based on layered minerals as ameliorants for the remediation of podzol in the industrial barren
Layered silicates, such as serpentine and vermiculite, have properties that make it possible to use materials based on them as components of environmental technologies. The possibility of soil remediation in industrially contaminated area, formed due to the long-term exposure to emissions from copper-nickel production (Monchegorsk, Murmansk region), was studied. Two materials were used as ameliorants in our study: expanded vermiculite and granular serpentine sorbent, a waste after using the purification technology of highly concentrated solutions from metals. These materials have a high sorption activity to several metals, a high specific surface area, the ability to retain moisture, and are available in quantities sufficient to work on the remediation of large areas. A study of the physicochemical properties of industrially polluted soil and ameliorants, direct phytotoxicity testing of podzol and its mixtures with expanded vermiculite and the serpentine sorbent (test plants - common oat Avna satva L. and red clover Trifolium pratnse L.) were carried out. The study results showed that the proposed materials were effective additives for increasing the pH of acidic soil, sorption and precipitation of Al and potentially toxic metals - Cu, Ni, Pb, Fe, and improving the soil hydrophysical and agrochemical characteristics. A positive response of test plants to the introduction of ameliorants into industrially contaminated soil was noted.
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