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Arsenic Transformation and Volatilization during Incineration of the Hyperaccumulator Pteris vittata L.

机译:超级蓄积翼龙(Pteris vittata L)焚化过程中的砷转化和挥发。

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Safe incineration of harvested hyperaccumulators containing high content of heavy metals to avoid secondary environmental pollution is a problem for popularizing phytoremediation technology. The As volatilization behavior and its mechanism during incineration of Pteris vittata, an As-hyperaccumulator, was investigated. Incineration results reveal that 24% of total As accumulated by P. vittata (H-As) containing high As content (1170 mg/kg) is emitted at 800℃, of which 62.5% of the total emitted As is volatilized below 400℃. A study of the extended X-ray absorption fine structure (EXAFS) shows that part of As(III) was identified in the thermal decomposition residue of dried P. vittata (H-As), As_2O_5 + P. vittata (L-As) containing low As content (14.7 mg/kg), and As_2O_5 + charcoal (C) at 200℃, suggesting that carbon originating from biomass incineration might catalyze As(V) reduction. This speculation was tested through thermogravimetric experiments, in which either C or P. vittata (L-As) markedly catalyzed the volatilization of pure As_2O_5 at low temperature. Therefore, the reduction of As(V) to As(III) is responsible for As volatilization during incineration of P. vittata below 400℃. This study provides important insights into As behavior during incineration of As-hyperaccumulators, which is helpful to safely dispose harvested biomass with high As content.
机译:为避免二次环境污染,安全焚化收获的含有大量重金属的超级蓄积剂是推广植物修复技术的一个问题。研究了超级富集菌Pteris vittata焚烧过程中的As挥发行为及其机理。焚烧结果表明,高砷含量(1170 mg / kg)的百日草(H-As)累积的总砷的24%在800℃时排放,其中低于400℃挥发的总砷的62.5%挥发掉。对扩展的X射线吸收精细结构(EXAFS)的研究表明,在干燥的假单胞菌(H-As),As_2O_5 +假单胞菌(L-As)的热分解残留物中鉴定出一部分As(III)。含砷量低(14.7 mg / kg),且在200℃时As_2O_5 +木炭(C),表明来自生物质焚烧的碳可能催化As(V)的还原。通过热重实验对这种推测进行了测试,其中C.或C. vittata(L-As)显着催化了低温下纯As_2O_5的挥发。因此,在400℃以下焚烧百日草时,As(V)还原为As(III)是砷挥发的原因。这项研究为焚烧As超级蓄能器中的As行为提供了重要见解,这有助于安全处置高As含量的收获生物质。

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