首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of temperature on heavy metal(loid) deportment during pyrolysis of Avicennia marina biomass obtained from phytoremediation
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Effect of temperature on heavy metal(loid) deportment during pyrolysis of Avicennia marina biomass obtained from phytoremediation

机译:植物化植物植物植物散热码头热解期间对重金属(LoID)牵引的影响

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摘要

Slow pyrolysis of heavy-metal(loid)-contaminated Avicennia marina biomass obtained from phytoremediation was conducted to investigate the deportment of 12 heavy metal(loid)s in pyrolysis products (biochar, bio-oil, gas) at temperatures from 300 to 800 degrees C. The results indicated that different heavy metal(loid)s showed diverse volatilities, while all elements tended to transform into volatile products with the increase of pyrolysis temperature. Cd was found highly volatile, while Fe and Cu were non-volatile elements. The leaching analysis of biochars showed that pyrolysis was effective in reducing the mobility and bioavailability of the heavy metal(loid)s in biochars. Moreover, the risk assessment of biochars showed that the biochars derived from polluted biomass can be used as a potential soil amendment. Considering the energy consumption and risk of contaminant emission, pyrolysis temperatures of 400 to 500 degrees C were considered to be the optimum option for pyrolysis of this biomass.
机译:对重金属(LOID)的慢热解 - 酰胺化的abiCennia码头生物量,进行了从植物化的植物化学得到的,以研究从300至800度的温度下热解C.结果表明,不同的重金属(LOID)S显示出多样化的挥发性,而所有元素均倾向于随着热解温的增加转化为挥发性产品。 CD被发现高挥发性,而Fe和Cu是非挥发性元素。 Biochars的浸出分析表明热解是有效降低重金属(懒惰)在生物脉中的迁移率和生物利用度。此外,Biochars的风险评估表明,源自污染生物质的生物脉冲可以用作潜在的土壤修正。考虑到污染物排放的能量消耗和风险,400至500摄氏度的热解温度被认为是该生物质热解的最佳选择。

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