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The regeneration of field-spent granular-activated carbons

机译:现场消耗的颗粒活性炭的再生

摘要

The thermal regeneration of field-spent granular-activated carbons (GAC) is being increasingly adopted as a cost-effective alternative to disposal. The success of this practice requires the adjustment of process conditions to maximise the recovery of the original carbon characteristics while minimising carbon loss. This paper describes an investigation into the regeneration of several field-spent GAC representative of those typically generated by the drinking water treatment industry. The carbons were initially investigated for their ash contents and inorganic compositions in order to determine the accumulation of metallic species that affect the regeneration process. Regeneration was conducted in steam at 800°C over reaction times between 0 and 60 min in order to achieve different degrees of carbon gasification. Weight losses were determined for each condition and the resulting carbons characterised for their apparent density, porosity, surface area and aqueous adsorption characteristics. Results showed that spent carbons recovered most of their adsorption characteristics when heated to 800°C under inert conditions. Steam gasification in the range of 5–10 wt% burn-off had some positive effects on the characteristics of the spent carbons which were in most cases counteracted by a reduction in the carbon yield. Steam gasification in excess of 15 wt% burn-off caused a rapid increase in the carbon mesoporosity but a significant deterioration in the carbon microporosity, BET surface area and adsorption capacity for organic species of small molecular size.
机译:现场消耗的颗粒活性炭(GAC)的热再生正越来越多地被用作处理的经济有效替代方案。这种做法的成功需要调整工艺条件,以最大程度地恢复原始碳特性,同时将碳损失降至最低。本文介绍了对几种现场消耗的GAC再生的研究,这些GAC代表了饮用水处理行业通常产生的那些。最初对碳的灰分含量和无机成分进行了研究,以确定影响再生过程的金属物质的积累。为了实现不同程度的碳气化,在800°C的蒸汽中在0至60分钟的反应时间内进行再生。确定每种条件下的重量损失,并以表观密度,孔隙率,表面积和水吸附特性表征所得碳。结果表明,在惰性条件下加热至800°C时,废碳可恢复其大部分吸附特性。燃尽率在5-10 wt%范围内的蒸汽气化会对废碳的特性产生一些积极影响,在大多数情况下,这可通过降低碳收率来抵消。超过15 wt%燃尽的蒸汽气化导致碳介孔率迅速增加,但碳微孔率,BET表面积和对小分子有机物的吸附能力显着下降。

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