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Closing the active carbon cycle: Regeneration of spent activated carbon from a wastewater treatment facility for resource optimization

机译:关闭活性炭循环:来自废水处理设施的废活性炭的再生以进行资源优化

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This study focusses on the regeneration of spent activated carbon sourced from a wastewater treatment facility using both conventional and microwave reactors with similar reaction parameters. The active carbon was characterized by iodine and methylene blue adsorption as a measure of micro- and mesoporosity. The process parameters were adjusted to identify the influence of intensifying operating parameter on the effectiveness of the regeneration process. Optimal activity was observed in the sample regenerated at 600 degrees C for 2 h in CO2. There was a 17.1 % and 141 % increase in iodine and methylene cyanine adsorption values, respectively, versus the spent activated carbon. This indicates restoration of similar to 83 % and similar to 90 % of the adsorptive capabilities of fresh activated carbon. The adsorption properties of regenerated carbon are enhanced in microwave reactors under CO2 atmosphere due to the benefits of microwave heating in expediting the thermal desorption of adsorbates via devolatilization and partial oxidation with minimal disruption to the carbon's pore structure. This demonstrates the feasibility and advantage of microwave reactors for reactivating spent active carbon and the importance of reaction parameter optimization for obtaining regenerated active carbon with enhanced quality.
机译:本研究侧重于使用具有相似反应参数的常规和微波反应器来源于废水处理设施的废活性炭的再生。活性炭的特征在于碘和亚甲基蓝色吸附作为微观和中孔隙度的量度。调整过程参数以确定强化操作参数对再生过程有效性的影响。在CO 2中以600℃再生的样品中观察到最佳活性。碘和亚甲基氰基吸附值分别增加了17.1%和141%,而具有含量的活性炭。这表明恢复类似于83%,类似于新鲜活性炭的吸附能力的90%。由于微波加热的益处在加速通过脱挥发化和部分氧化,在CO 2气氛下,在CO2气氛下,在CO 2气氛下的微波反应器中的吸附性能增强了CO2气氛中的益处。这证明了微波反应器的可行性和优点,用于重新激活废活性炭和反应参数优化的重要性,以获得具有增强质量的再生活性炭。

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