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Dried sludges and sludge-based chars for H2S removal at low temperature: Influence of sewage sludge characteristics

机译:低温去除H2S的干污泥和污泥基炭:污水污泥特性的影响

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The use of sewage sludge as a precursor of adsorbent/catalyst materials for environmental applications has been encouraged during the past few years. Due to the heterogeneous nature of sludges, there exists a lack of information regarding the characteristics of these low-cost precursors and how their physicochemical properties affect the final performance of materials prepared from them. In this work, three sewage-sludges collected at WWTPs with assorted sludge/wastewater treatment schemes were used as precursors of adsorbents/catalysts for H2S removal at room temperature. All the solids were characterized to establish their textural properties and chemical composition, including the speciation of the adsorbents/catalysts inorganic fraction. Thermal treatment (gasification) of the raw (dried) sludges increased the H2S removal ability in all cases. For these thermally treated materials, catalytic conversion to elemental sulfur and sulfate moieties was found to be the main route of H2S removal. Results indicate that adsorbents based on an iron/calcium-containing sludge were the most reactive and exhibited the highest capacities for H2S retention. For this particular type of sludge, a reasonably good performance was observed even when the dried (raw) sludge was used as adsorbent/catalyst. Alternatively, the oxidation of H2S by chars obtained from the other two sludges under study was related to their textural properties.
机译:在过去的几年中,一直鼓励使用污水污泥作为吸附剂/催化剂材料的前体用于环境。由于污泥的异质性,因此缺乏有关这些低成本前体的特性以及其理化性质如何影响由其制备的材料的最终性能的信息。在这项工作中,在污水处理厂收集的三种污泥和各种污泥/废水处理方案被用作吸附剂/催化剂的前体,以在室温下去除H2S。对所有固体进行表征以建立其结构性质和化学组成,包括吸附剂/催化剂无机级分的形态。在所有情况下,对原始(干燥)污泥进行热处理(气化)均可以提高H2S去除能力。对于这些热处理的材料,发现催化转化为元素硫和硫酸盐部分是去除H2S的主要途径。结果表明,基于含铁/钙污泥的吸附剂具有最高的反应活性,并具有最高的H2S保留能力。对于这种特殊类型的污泥,即使将干燥(原始)污泥用作吸附剂/催化剂,也观察到了相当好的性能。另外,从正在研究的其他两种污泥中获得的焦炭对H2S的氧化与其结构特性有关。

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