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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Effect of adsorbent composition on H_2S removal on sewage sludge-based materials enriched with carbonaceous phase
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Effect of adsorbent composition on H_2S removal on sewage sludge-based materials enriched with carbonaceous phase

机译:吸附剂组成对富集含碳相污泥基材料中H_2S去除的影响

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In order to improve the carbonaceous phase content in sewage sludge derived adsorbents, dewatered sludge was physically mixed with polystyrene sulfonic acid-co maleic acid sodium salt with the following ratios of polymer to sludge: 10:90, 30:70, 50:50 and 70:30. The samples, along with the pure precursors, were carbonized at 950 deg C and then washed in water to remove the excess of sodium salt/hydroxide. The performance of materials as H_2S adsorbents was tested using a home-developed dynamic breakthrough test. The samples, before and after adsorption process, were characterized by adsorption of nitrogen, potentiometric titration, thermal analysis and SEM. Differences in the performance were linked to the surface properties. It was found that mixing polymer with sludge increases the amount of H_2S adsorbed/oxidized in comparison with the adsorbents obtained from pure precursors (sludge or polymer). Sewage sludge provides the catalytic centers for hydrogen sulfide oxidation whereas a carbonaceous phase contributes to an increase in the dispersion of catalytic centers and provides more "storage space" in its micropores. There is an optimal ratio in the composition of the precursors for which the best performance is achieved. When the content of the polymer is too high, the "buffering capacity" of the sludge-derived phase is not enough to neutralize the suppressing effect of acidic surface groups of a carbonaceous phase.
机译:为了提高污水污泥衍生的吸附剂中的碳相含量,将脱水污泥与聚苯乙烯磺酸-顺丁烯二酸马来酸钠盐物理混合,聚合物与污泥的比例如下:10:90、30:70、50:50和70:30。样品与纯前体一起在950摄氏度下碳化,然后在水中洗涤以除去过量的钠盐/氢氧化钠。使用自制的动态穿透试验测试了材料作为H_2S吸附剂的性能。通过吸附氮,电位滴定,热分析和SEM表征了吸附过程前后的样品。性能差异与表面性质有关。已经发现,与从纯前体(污泥或聚合物)获得的吸附剂相比,将聚合物与污泥混合增加了被吸附/氧化的H_2S的量。污水污泥为硫化氢的氧化提供了催化中心,而碳质相有助于催化中心的分散性增加,并在其微孔中提供了更多的“存储空间”。前驱体的组成中存在最佳比例,可以实现最佳性能。当聚合物的含量太高时,污泥衍生相的“缓冲能力”不足以抵消碳相酸性表面基团的抑制作用。

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