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The Role of Organic and Inorganic Amendments in Carbon Sequestration and Immobilization of Heavy Metals in Degraded Soils

机译:有机和无机改良剂在退化土壤中固碳和重金属固定化中的作用

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摘要

To investigate the effect of organic and inorganic amendments on heavy metal immobilization in soil and organic carbon sequestration, a growth chamber study over a period of 18 months was conducted. Phytoremediation of two degraded soils, smelter-polluted soil and post-mining soil, was carried out using Scots Pine (Pinus Sylvestris L.) and Giant Miscanthus (Miscanthus x Giganteus). The increase in organic carbon content for lake chalk amended soils was noted. In addition, the largest root biomass production after fertilization of heavy metal contaminated soil with lake chalk was observed. This soil additive increases soil pH and reduces heavy metal mobility, which finally minimizes the harmful effect of metals on plant life and growth. Root biomass production of Giant Miscanthus was significantly higher than Scots Pine root biomass for both soils. This may indicate better phytosequestration properties of Giant Miscanthus, especially in the case of land degradation due to mining and destruction of soil profiles.
机译:为了研究有机和无机改良剂对土壤中重金属固定化和有机碳固存的影响,进行了为期18个月的生长室研究。使用苏格兰松树(Pinus Sylvestris L.)和巨型芒草(Miscanthus x Giganteus)对两种退化的土壤进行了植物修复,冶炼厂污染的土壤和采矿后的土壤。注意到湖白垩改良土壤中有机碳含量的增加。此外,观察到重金属污染的土壤用湖白垩粉施肥后最大的根系生物量产生。这种土壤添加剂可提高土壤pH值并降低重金属的迁移率,从而最终将金属对植物寿命和生长的有害影响降至最低。两种土壤的巨型芒草的根生物量均显着高于苏格兰松根的生物量。这可能表明巨型芒草具有更好的植物固醇特性,尤其是在由于采矿和土壤剖面破坏而导致土地退化的情况下。

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