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Effective utilization of waste ash from MSW and coal co-combustion power plant - Zeolite synthesis

机译:有效利用城市固体废弃物和燃煤电厂的废灰-沸石合成

摘要

The solid by-product from power plant fueled with municipal solid waste and coal was used as a raw material to synthesize zeolite by fusion-hydrothermal process in order to effectively use this type of waste material. The effects of treatment conditions, including NaOH/ash ratio, operating temperature and hydrothermal reaction time, were investigated, and the product was applied to simulated wastewater treatment. The optimal conditions for zeolite X synthesis were: NaOH/ash ratio = 1.2: 1, fusion temperature = 550 degrees C, crystallization time = 6-10 h and crystallization temperature = 90 degrees C. In the synthesis process, it was found that zeolite X tended to transform into zeolite HS when NaOH/ash ratio was 1.8 or higher, crystallization time was 14-18 h, operating temperature was 130 degrees C or higher. The CEC value, BET surface area and pore volume for the synthesized product at optimal conditions were 250 cmol kg(-1), 249 m(2) g(-1) and 0.46 cm(3) g(-1) respectively, higher than coal fly ash based zeolite. Furthermore, when applied to Zn2+ contaminated wastewater treatment, the synthesized product presented larger adsorption capacity and bond energy than coal fly ash based zeolite, and the adsorption isotherm data could be well described by Langmuir and Freundlich isotherm models. These results demonstrated that the special type of co-combustion ash from power plant is suitable for synthesizing high quality zeolite, and the products are suitable for heavy metal removal from wastewater. (c) 2007 Elsevier B.V. All rights reserved.
机译:为了有效地利用这种废料,将以城市生活垃圾和煤为燃料的发电厂的固体副产物作为原料通过熔融-水热法合成沸石。研究了NaOH,灰分比,操作温度和水热反应时间等处理条件的影响,并将其用于模拟废水处理。合成沸石X的最佳条件为:NaOH /灰比= 1.2∶1,熔融温度= 550℃,结晶时间= 6-10h,结晶温度= 90℃。在合成过程中,发现沸石当NaOH /灰分比为1.8或更高,结晶时间为14-18h,操作温度为130℃或更高时,X倾向于转变成沸石HS。在最佳条件下,合成产品的CEC值,BET表面积和孔体积分别为250 cmol kg(-1),249 m(2)g(-1)和0.46 cm(3)g(-1),更高比粉煤灰基沸石。此外,当将其应用于Zn2 +污染的废水处理中时,与煤粉煤灰基沸石相比,其吸附能力和结合能更高,吸附等温线数据可以用Langmuir和Freundlich等温线模型很好地描述。这些结果表明,发电厂的特殊类型的助燃灰适用于合成高质量的沸石,产品适用于去除废水中的重金属。 (c)2007 Elsevier B.V.保留所有权利。

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