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首页> 外文期刊>Journal of Environmental Management >Pyrolysis wastewater treatment by adsorption on biochars produced by poplar biomass
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Pyrolysis wastewater treatment by adsorption on biochars produced by poplar biomass

机译:杨木生物质吸附生物炭吸附处理热解废水。

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摘要

Pyrolysis is a widely studied thermochemical process, however the disposal of the produced byproducts is an unexplored field. In particular, the acqueous phase, characterized by a high organic load (TOC), must be necessarily treated. Aims of this work is to study the potentiality of biochar as adsorbent material for the treatment of this wastewater. For this aim, pyrolysis wastewater and biochar produced in the same plant were used. Two biochars produced at different temperatures (550 and 750 ℃) and an activated biochar produced by chemical activation with NaOH of the raw biomass were tested. The study shows that higher temperature in the biochar production leads to higher sorption capacity of the organic compounds due to an increase of the surface area. The activation process further increases the surface area of the biochar that becomes similar to that of a commercial activated carbon while the sorption capacity exceeds that of commercial activated carbon of 2.5 times.
机译:热解是一个经过广泛研究的热化学过程,但是如何处理产生的副产物却是一个尚未探索的领域。特别地,必须处理以高有机负荷(TOC)为特征的水相。这项工作的目的是研究生物炭作为处理废水的吸附材料的潜力。为此,使用了在同一工厂中产生的热解废水和生物炭。测试了在不同温度(550和750℃)下产生的两种生物炭以及用生生物质的NaOH化学活化产生的活化生物炭。研究表明,由于表面积的增加,生物炭生产中的较高温度导致有机化合物的较高吸附能力。活化过程进一步增加了生物炭的表面积,该表面积变得类似于市售活性炭,而吸附容量超过了市售活性炭的2.5倍。

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