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Synthesis of zeolite Na-Pl under mild conditions using Brazilian coal fly ash and its application in wastewater treatment

机译:巴西粉煤灰在温和条件下合成Na-Pl沸石及其在废水处理中的应用

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摘要

Zeolites may be easily obtained from coal fly ash by conversion processes based on the similar essential composition of both. Among the existing zeolites, we highlight the Na-Pl which is normally produced by hydrothermal treatment, this zeolite has been synthesized in pressurized reactors at high temperatures. The purpose of this study was to synthesize Na-Pl zeolites under mild conditions using Brazilian coal fly ash. Zeolite Na-Pl was produced simultaneously in pressurized reactors at 150℃ and a glass reactor at 100℃. Complementary synthesis parameters were also evaluated, such as concentrations of alkali, crystallization time, previous separation of magnetic material from the ashes and effects of seeding on synthesis. The zeolite synthesized in the optimized process (77% Na-P1) was used to remove contaminants from acid mine drainage (AMD). Treatment of this wastewater with 10 g L~(-1) of synthetic zeolite for 30 min presented high removal of arsenic, nickel, calcium, copper, iron and manganese ions and the partial yet significant removal of ammonium, magnesium, potassium and zinc ions. This performance indicates that the synthetic zeolite has excellent adsorption characteristics and can be an alternative for the treatment of DAM. As such, synthesis under mild conditions in a glass reactor is practical, reducing energy costs and minimizing environmental impacts, with the possibility of reproducing zeolite synthesis on an industrial scale.
机译:基于二者的相似基本组成,可以容易地从煤粉煤灰通过转化方法获得沸石。在现有的沸石中,我们重点介绍了通常通过水热处理生产的Na-Pl,该沸石是在加压反应器中高温合成的。这项研究的目的是使用巴西粉煤灰在温和条件下合成Na-Pl沸石。 Na-Pl沸石是在150℃的加压反应器和100℃的玻璃反应器中同时生产的。还评估了互补的合成参数,例如碱的浓度,结晶时间,磁性材料从灰烬中分离出来以及接种对合成的影响。通过优化工艺合成的沸石(77%Na-P1)用于去除酸性矿井排水(AMD)中的污染物。用10 g L〜(-1)合成沸石处理该废水30分钟后,砷,镍,钙,铜,铁和锰离子的去除率很高,而铵,镁,钾和锌离子的去除率却很高。 。该性能表明合成沸石具有优异的吸附特性,可以替代DAM的处理方法。这样,在玻璃反应器中在温和条件下进行合成是可行的,从而降低了能源成本并使对环境的影响最小化,并且有可能以工业规模生产沸石合成物。

著录项

  • 来源
    《Fuel》 |2015年第1期|59-67|共9页
  • 作者单位

    Post-graduation Program in Engineering and Technology Materials, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 30, 90619-900 Porto Alegre, RS, Brazil,Faculty of Chemistry, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 12B, 90619-900 Porto Alegre, RS, Brazil;

    Post-graduation Program in Engineering and Technology Materials, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 30, 90619-900 Porto Alegre, RS, Brazil,Faculty of Chemistry, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 12B, 90619-900 Porto Alegre, RS, Brazil;

    Science and Technology Foundation (CIENTEC), Rua Washington Luiz, 675, 90.010-460 Porto Alegre, RS, Brazil;

    Post-graduation Program in Engineering and Technology Materials, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 30, 90619-900 Porto Alegre, RS, Brazil;

    Post-graduation Program in Engineering and Technology Materials, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 30, 90619-900 Porto Alegre, RS, Brazil,Faculty of Chemistry, Pontifical Catholic University of Rio Grande do Sul, Av. Ipiranga 6681, Predio 12B, 90619-900 Porto Alegre, RS, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coal; Coal fly ash; Zeolites; Acid mine drainage;

    机译:煤;粉煤灰;沸石;酸性矿山排水;

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