Ab'/> Utilization of incineration fly ash from biomass power plants for zeolite synthesis from coal fly ash by hydrothermal treatment
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Utilization of incineration fly ash from biomass power plants for zeolite synthesis from coal fly ash by hydrothermal treatment

机译:利用煤矿发电厂焚烧粉煤灰对煤粉煤灰的水热处理

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AbstractIn Japan, the quantity of incineration fly ash discharged from biomass power plants has increased rapidly due to the feed-in tariff established by the Japanese government. The costs of disposing of this biomass incineration ash are generally high; therefore, a method must be developed to utilize this by-product. In this context, we propose the syntheses of potassium-type zeolites (K-zeolites) from biomass incineration ash and coal fly ash via a hydrothermal route, which represents a novel use for this material. As the aqueous solution extracted from biomass incineration ash contains high concentrations of potassium, it was employed to substitute the KOH solution that is typically used in the synthesis of K-zeolites from coal fly ash. Consequently, we successfully synthesized a K-zeolite, containing phillipsite and chabazite phases, from coal fly ash using the extracted solution obtained from incineration fly ash. The NH4+adsorption capacity of our synthesized K-zeolite was comparable to that of the K-zeolite synthesized using only KOH. We also confirmed that the prepared K-zeolite exhibited higher cesium adsorption selectivity than sodium-type zeolites, which are commonly produced industrially.Graphical abstractDisplay OmittedHighlights?K-zeolite was synthesized used an extracted solution from biomass incineration ash?Biomass incineration ash was used as an alkali source and a potassium source?The synthesized K-zeolite contained phillipsite and chabazite?The K-zeolite crystal size was dependent on pH and the potassium ion concentration?K-zeolite exhibited a higher selectivity for cesium ions than Na-zeolite]]>
机译:<![cdata [ 抽象 在日本,由于进料,从生物质发电厂排出的焚烧粉煤灰的数量增加日本政府建立的关税。处理这种生物质焚烧灰的费用通常很高;因此,必须开发一种方法来利用这种副产品。在这种情况下,我们通过水热途径向生物质焚烧灰和煤粉煤灰提出了钾型沸石(K-沸石)的合成,这代表了这种材料的新用途。由于从生物质焚烧灰分中提取的水溶液含有高浓度的钾,所以使用该KOH溶液,其通常用于合成来自煤粉煤灰的K-沸石。因此,我们成功地合成了使用从焚烧粉煤灰获得的提取的溶液,从煤粉煤灰合成了含有紫磷酸盐和曲斑岩相的K-沸石。 NH 4 + 我们合成的K-沸石的吸附能力与该k-zeolite的吸附容量相当K-zeolite仅使用KOH合成。我们还证实,制备的K-沸石表现出比钠型沸石更高的铯吸附选择性,这些沸石通常在工业上产生。 图形抽象 显示省略 突出显示 K-Zeolite合成使用EX来自生物量焚烧灰的串扰溶液 生物量焚烧灰烬用作碱源和钾源 合成的k-zeolite含有紫磷酸盐和chabazite k-zeolite晶体尺寸取决于pH和钾离子浓度 K-沸石对铯离子的选择性较高,而不是Na-zeolite ]]>

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