Department of Chemical Engineering, Federal University of Rio Grande do Sul - UFRGS, Rua Luiz Englert, s/n° - 90.040-040, Porto Alegre, RS, Brazil.
Department of Chemical Engineering, Federal University of Rio Grande do Sul - UFRGS, Rua Luiz Englert, s/n° - 90.040-040, Porto Alegre, RS, Brazil.
Waste Manag. 2017 Dec;70:263-271. doi: 10.1016/j.wasman.2017.08.039. Epub 2017 Sep 13.
Brazilian coal has an ash content ranging from 30 to 50% by weight. Consequently, its use in coal-fired thermoelectric for power production generates a lot of waste. The construction sector is the largest consumer of coal ash, but it cannot absorb the entire amount generated. Thus, other applications for coal ash should be studied in aim to optimize the use of this industrial waste. This research had as focus to synthesize potassic zeolite from of the coal ash into on potassium fertilizer for the grown wheat plant. In this work, it was used a subbituminous coal from Mina do Leão (RS, Brazil) presenting 48.7% ash content on a dry basis. Concerning the synthesis of potassic zeolite, it was adopted the conventional method of hydrothermal treatment with potassium hydroxide. A schedule of experiments was conducted in order to define the optimum condition of zeolite synthesis that was then used an alkaline solution of 5M KOH with a reaction time of 24h at 150°C. According to this procedure, it was obtained a zeolite with a single crystalline phase, identified through X-ray diffraction as Merlinoite. Subsequently, it was performed a set of tests using potassic zeolite asa fertilizer for plants in a greenhouse. The synthesized potassic zeolite showed a good potential for its use as fertilizer in agriculture.
巴西煤的灰分含量按重量计为 30%至 50%。因此,将其用于燃煤火力发电会产生大量废物。建筑行业是煤灰的最大消费者,但无法吸收全部产生的煤灰。因此,应该研究煤灰的其他应用,以优化这种工业废物的利用。本研究的重点是从米纳多莱昂(RS,巴西)的一种次烟煤中合成用于小麦生长的钾肥的钾沸石。在这项工作中,使用了一种灰分含量为 48.7%的次烟煤。关于钾沸石的合成,采用了水热处理与氢氧化钾的常规方法。进行了实验方案设计以确定沸石合成的最佳条件,然后在 150°C 下使用 5M KOH 的碱性溶液反应 24 小时。根据该程序,获得了一种具有单一结晶相的沸石,通过 X 射线衍射鉴定为梅利诺石。随后,在温室中使用钾沸石作为植物肥料进行了一系列测试。合成的钾沸石具有良好的农业肥料应用潜力。