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首页> 外文期刊>Environmental Science: Processes & Impacts >Comparison of heavy metal immobilization in contaminated soils amended with peat moss and peat moss-derived biochar
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Comparison of heavy metal immobilization in contaminated soils amended with peat moss and peat moss-derived biochar

机译:泥炭藓和泥炭藓衍生生物炭改良土壤中重金属固定化的比较

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摘要

There have been contradictory viewpoints whether soil amendments immobilize or mobilize heavy metals. Therefore, this study evaluated the mobility and bioavailability of Pb, Cu, and Cd in contaminated soil (1218 mg Pb per kg, 63.2 mg Cu per kg, 2.8 mg Cd per kg) amended with peat moss (0.22, 0.43, and 1.29% carbon ratio) and peat moss-derived biochar (0.38, 0.75, and 2.26% carbon ratio) at 0.5, 1, 3% levels. The more peat moss added, the stronger both mobility and bioavailability of Pb, Cu, and Cd would be. In contrast, the addition of peat moss-derived biochar significantly reduced both mobility and bioavailability of heavy metals through the coordination of metal electrons to C=C (pi-electron) bonds and increased pH. Maximum immobilization was observed in 3% peat moss-derived biochar treatment after 10 days of incubation, which was measured at 97.8%, 100%, and 77.2% for Pb, Cu, and Cd, respectively. Since peat moss and peat moss-derived biochar showed conflicting effectiveness in mobility and bioavailability of heavy metals, soil amendments should be carefully applied to soils for remediation purposes.
机译:对于土壤改良剂是固定还是移动重金属一直存在矛盾的观点。因此,本研究评估了用泥炭苔藓(0.22%,0.43%和1.29%)修正的Pb,Cu和Cd在受污染土壤(1218 mg Pb / kg,63.2 mg Cu / kg,2.8 mg Cd / kg)中的迁移率和生物利用度。碳比)和泥炭藓衍生的生物炭(碳比分别为0.38、0.75和2.26%),含量分别为0.5、1、3%。添加的泥炭苔藓越多,Pb,Cu和Cd的迁移率和生物利用度都越强。相反,添加泥炭藓类生物炭可通过金属电子与C = C(π电子)键的配位和增加的pH值,显着降低重金属的迁移率和生物利用度。孵育10天后,在3%的泥炭苔藓生物炭处理中观察到最大固定化,Pb,Cu和Cd分别测定为97.8%,100%和77.2%。由于泥炭藓和源自泥炭藓的生物炭在重金属的迁移率和生物利用度方面显示出相互冲突的效果,因此应谨慎地将土壤改良剂应用于土壤以进行修复。

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