Prochnow Raposo Jeissica Taline, Silva Enilson de Barros, Bezerra Iracema Raquel Santos, Costa Silva Wesley, Fernandes Alves Flávio Antônio, Dos Santos Lauana Lopes, Menezes de Abreu Caíque
Department of Agronomy, UFVJM, Diamantina, Brazil.
Int J Phytoremediation. 2025;27(1):108-116. doi: 10.1080/15226514.2024.2402875. Epub 2024 Sep 14.
The effectiveness of phytoremediation in Cd-contaminated soils is crucial for enhancing nutrient availability and plant tolerance to Cd. We simulated soil contamination with varying textures and fertilization conditions. Two experiments were conducted: one without liming and fertilization and another with soil fertilization for grasses. The soil types used were Oxisol and Entisol, and the grasses tested were and at three Cd levels: 0 mg kg (Control), 2 mg kg (Low), and 12 mg kg (High). Soil amendments and fertilization did not significantly change Cd availability. Soil chemical attributes were unaffected by Cd contamination but were influenced by fertilization, which kept the pH below optimal levels. Cd availability was higher in more contaminated soils, with Entisol showing greater concentrations than Oxisol. Dry matter production of the grasses decreased with higher contamination, with being more productive than in fertilized soils. Cd accumulation was higher in highly contaminated soils, particularly for . The bioconcentration factor was higher in Entisol, while the translocation factor exceeded 1.0 only for in low-contamination Oxisol. Fertilization can mitigate Cd contamination effects, with showing greater tolerance and accumulation capacity in fertilized soils.
植物修复在镉污染土壤中的有效性对于提高养分有效性和植物对镉的耐受性至关重要。我们模拟了不同质地和施肥条件下的土壤污染情况。进行了两个实验:一个不进行石灰处理和施肥,另一个对草进行土壤施肥。使用的土壤类型为氧化土和新成土,测试的草为[此处原文缺失草的具体名称],设置了三个镉水平:0 mg kg(对照)、2 mg kg(低)和12 mg kg(高)。土壤改良和施肥并未显著改变镉的有效性。土壤化学属性不受镉污染影响,但受施肥影响,施肥使pH值低于最佳水平。在污染更严重的土壤中镉的有效性更高,新成土中的镉浓度高于氧化土。随着污染程度的增加,草的干物质产量下降,在施肥土壤中[此处原文缺失草的具体名称]比[此处原文缺失草的具体名称]产量更高。在高度污染的土壤中镉积累量更高,尤其是对于[此处原文缺失草的具体名称]。新成土中的生物富集系数更高,而仅在低污染氧化土中[此处原文缺失草的具体名称]的转运系数超过1.0。施肥可以减轻镉污染的影响,[此处原文缺失草的具体名称]在施肥土壤中表现出更大的耐受性和积累能力。