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Impacts of Steel-Slag-Based Silicate Fertilizer on Soil Acidity and Silicon Availability and Metals-Immobilization in a Paddy Soil

机译:钢渣基硅酸盐肥料对稻田土壤酸度和硅有效性及金属固定化的影响

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摘要

Slag-based silicate fertilizer has been widely used to improve soil silicon- availability and crop productivity. A consecutive early rice-late rice rotation experiment was conducted to test the impacts of steel slag on soil pH, silicon availability, rice growth and metals-immobilization in paddy soil. Our results show that application of slag at a rate above higher or equal to 1 600 mg plant-available SiO2 per kg soil increased soil pH, dry weight of rice straw and grain, plant-available Si concentration and Si concentration in rice shoots compared with the control treatment. No significant accumulation of total cadmium (Cd) and lead (Pb) was noted in soil; rather, the exchangeable fraction of Cd significantly decreased. The cadmium concentrations in rice grains decreased significantly compared with the control treatment. In conclusion, application of steel slag reduced soil acidity, increased plant–availability of silicon, promoted rice growth and inhibited Cd transport to rice grain in the soil-plant system.
机译:基于炉渣的硅酸盐肥料已被广泛用于改善土壤硅的利用率和作物的生产力。连续进行了早晚稻轮作试验,以测试钢渣对稻田土壤pH值,硅有效性,稻米生长和金属固定化的影响。我们的结果表明,以高于或等于每公斤土壤1600毫克植物有效SiO2的比例施用矿渣,与增加的土壤pH值,稻草和谷物的干重,植物有效硅的浓度以及水稻芽中的硅浓度相比,增加了对照治疗。土壤中未发现总镉(Cd)和铅(Pb)的大量积累;相反,Cd的可交换分数显着下降。与对照相比,水稻籽粒中的镉浓度显着降低。总之,钢渣的施用降低了土壤的酸度,增加了硅的植物利用率,促进了水稻的生长,并抑制了土壤-植物系统中镉向水稻籽粒的转运。

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