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Incinerator bottom ash derived from municipal solid waste as a potential catalytic support for biomass tar reforming

机译:来自城市固体废物的焚化炉底灰作为生物质焦油重整的潜在催化载体

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摘要

Environment-friendly and sustainable routes for municipal solid waste (MSW) incineration bottom ash (IBA) recycling and utilization is one of the major concerns for the urbanized countries like Singapore. In this research paper, the possibility of bulk utilization of MSW-IBA as a catalyst support material has been explored for sustainable syn-gas production. The change in the texture of the IBA with simple hydrothermal treatment using NaOH has also been investigated. Furthermore, with hydrothermal treatment for 24 h at 180 °C, the texture of raw IBA with respect to basicity, surface area, total pore volume and reducibility was greatly improved. These textural properties are highly significant for a material to be utilized as a catalyst or catalytic supports for reforming applications. Ni supported on hydrothermally treated IBA was tested for steam reforming of biomass tar reforming reaction between 700 °C and 800 °C at relatively low steam-to-carbon ratio of 2. Among all the catalysts, Ni supported on IBA hydrothermally treated for 24 h gave stable toluene conversion (of 40%) at 700 °C with reduced coke formation (of 7.5 mgC/g·h) than other catalysts. The superior catalytic performance of this catalyst is mainly due to the presence of high amounts of surface Ni° species and improved reducibility and basicity properties among all. The Raman, DT/TGA and XRD analyses on spent catalysts revealed the deposited carbon during steam reforming of tar reaction is majorly amorphous. Due to this, the deposition of carbon did not show any kind of deactivation within the catalyst testing period.
机译:城市固体废物(MSW)焚烧底灰(IBA)回收和利用的环保和可持续路线是新加坡等城市化国家关注的主要问题之一。在本研究文件中,已经探索了将MSW-IBA大量用作催化剂载体材料以可持续生产合成气的可能性。还研究了使用NaOH进行简单水热处理后IBA的质地变化。此外,在180°C的温度下进行24°h的水热处理,相对于碱度,表面积,总孔容和可还原性,生IBA的质构得到了极大的改善。这些质地特性对于用作重整应用的催化剂或催化载体的材料非常重要。测试了水热处理的IBA上负载的Ni在700℃和800℃之间以相对较低的汽碳比2进行的生物质焦油重整反应的蒸汽重整。在所有催化剂中,水热处理的IBA上负载的Ni进行24 h与其他催化剂相比,在700°C下可稳定地转化甲苯(40%),同时减少焦炭生成(7.5-5mgC / g·h)。该催化剂优异的催化性能主要是由于存在大量的表面Ni°物质以及所有之中改善的还原性和碱性。对废催化剂的拉曼,DT / TGA和XRD分析表明,焦油反应的蒸汽重整过程中沉积的碳主要为非晶态。因此,在催化剂测试期间,碳的沉积未显示出任何种类的失活。

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