石灰和纳米二氧化硅对改善粘土结构和降解碳氢化合物的作用评价

Adriana Muente, I. Cipriani-Ávila, Karina García-Villacís, V. Pinos-Vélez, Daniel Hidalgo-Lasso, Pablo Ruíz, V. Luna
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引用次数: 1

摘要

土壤结构是生物修复过程的关键;例如,粘土由于其高可塑性和氧气限制,往往具有高的污染物吸收量和低的生物修复率。这项工作评估了使用石灰、二氧化硅纳米颗粒和这两种成分组合处理受污染粘土的七种不同方法。处理3个月后,测定土壤粒度、pH、孔隙度、阳离子交换容量(CEC)、湿度、有机质、呼吸量和腐殖酸的变化,以评价处理对土壤结构的改善。测定了处理前后的总石油烃(TPH)、多环芳烃(PAHs)和重金属含量。石灰和纳米二氧化硅的联合处理效果最好,将粘土的百分比从61%降低到5%,并显示出土壤结构的改善与污染物的减少之间的关系,7种处理中tph的去除率最高,达到35%。
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Evaluation of the Use of Lime and Nanosilica for the Improvement of Clay Soil Structure and Degradation of Hydrocarbons
Soil structure is an important key in the bioremediation process; for instance, clay soils tend to have high absorption of pollutants and low rates of bioremediation due to their high plasticity and oxygen restrictions. This work assesses seven different treatments for contaminated clay soil using lime, silica nanoparticles, and both components in combination. After a three-month treatment, the variation of the soil granulometry, pH, porosity, cation exchange capacity (CEC), humidity, organic matter, respirometry, and humic acids were measured in order to evaluate the improvements regarding soil structure. Furthermore, total petroleum hydrocarbon (TPH), polycyclic aromatic hydrocarbons (PAHs) and heavy metals were monitored before and after the treatments. The combined treatment using lime and nanosilica presented the best results, reducing the percentage of clays from 61% to 5% and showing a relationship between improved of soil structure and the reduction of pollutants, with a 35% removal for TPHs being the highest obtained with the seven treatments.
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