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首页> 外文期刊>International Journal of Phytoremediation >Thermal Characteristics of Hyperaccumulator and Fate of Heavy Metals during Thermal Treatment of Sedum plumbizincicola
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Thermal Characteristics of Hyperaccumulator and Fate of Heavy Metals during Thermal Treatment of Sedum plumbizincicola

机译:景天景天热处理过程中超级蓄积物的热特性和重金属的归宿

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摘要

Thermal treatment is one of the most promising disposal techniques for heavy metal- (HM)-enriched hyperaccumulators. However, the thermal characteristics and fate of HMs during thermal treatment of hyperaccumulator biomass need to be known in detail. A horizontal tube furnace was used to analyze the disposal process of hyperaccumulator biomass derived from a phyto-extracted field in which the soil was moderately contaminated with heavy metals. Different operational conditions regarding temperature and gas composition were tested. A thermo-dynamic analysis by advanced system for process engineering was performed to predict HM speciation during thermal disposal and SEM-EDS, XRD and sequential chemical extraction were used to characterize the heavy metals. The recovery of Zn, Pb and Cd in bottom ash decreased with increasing temperature but recovery increased in the fly ash. Recovery of Zn, Pb and Cd fluctuated with increasing air flow rate and the metal recovery rates were higher in the fly ash than the bottom ash. Most Cl, S, Fe, Al and SiO2 were found as alkali oxides, SO2, Fe-2(SO4)(3), iron oxide, Ca3Al2O6, K2SiO3 and SiO2 instead of reacting with HMs. Thus, the HMs were found to occur as the pure metals and their oxides during the combustion process and as the sulfides during the reducing process.
机译:热处理是富含重金属(HM)的超级蓄能器最有希望的处置技术之一。但是,需要详细了解超蓄积生物质热处理过程中HM的热特性和结局。使用水平管式炉分析来自土壤被重金属中等污染的植物提取田地的超积累生物量的处理过程。测试了有关温度和气体成分的不同操作条件。通过先进的系统进行了热力学分析,用于工艺工程,以预测热处置过程中的HM形态,并使用SEM-EDS,XRD和顺序化学萃取来表征重金属。随着温度的升高,底灰中锌,铅和镉的回收率降低,而粉煤灰中的回收率增加。 Zn,Pb和Cd的回收率随空气流量的增加而波动,并且飞灰中的金属回收率高于底灰。发现大多数Cl,S,Fe,Al和SiO2为碱金属氧化物,SO2,Fe-2(SO4)(3),氧化铁,Ca3Al2O6,K2SiO3和SiO2,而不是与HMs反应。因此,发现HMs在燃烧过程中以纯金属及其氧化物形式出现,在还原过程中以硫化物形式出现。

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