首页> 外文OA文献 >Effect of liquid property on adsorption and catalytic reduction of nitrate over hydrotalcite-supported Pd-Cu catalyst
【2h】

Effect of liquid property on adsorption and catalytic reduction of nitrate over hydrotalcite-supported Pd-Cu catalyst

机译:液体性质对水滑石负载Pd-Cu催化剂吸附硝酸盐和催化还原硝酸盐的影响

摘要

This study focused on investigating the effect of liquid property on adsorption and catalytic reduction of nitrate over hydrotalcite-supported Pd-Cu catalyst. Batch experiments were conducted under specific operating conditions. It was found that nitrate ions were adsorbed apparently by hydrotalcite- supported Pd-Cu catalyst at different reaction temperature (10, 25 and 35 degrees C). Adsorption isotherms for NO3- were described by Langmuir's equation. Higher reaction temperature accelerated nitrate adsorption and reduction, and simultaneously decreased the accumulation of NO2- and NH4+. Nitrate adsorption and reduction were independent of the initial pH because of the high buffering capacity of hydrotalcite when the initial pH of solution was from 5.25 to 7.4. However, the dissolve of hydrotalcite-supported Pd-Cu catalyst at low initial pH (3.77) and higher concentration of OH- ions at high initial pH (10.74) decreased nitrate adsorption and reduction. When using various nitrate salts as a source of nitrate ions, nitrate adsorption and reduction removal efficiency decreased in the order: Fe3+ > Mn2+ > Mg2+ >Ca2+ > Na+, which was attributed to different affinity toward OH-. Co-existed cations in water with higher valence and lower crystal ionic radius and solubility constant of hydroxide showed stronger affinity toward OH- and consequently increased the concentration of active sites accessible to NO3- and NO2-. The competitive adsorption Of Cl-, SO42- and HCO3- with nitrate on the catalyst surface suppressed the adsorption and reduction of NO3-. Besides, few metals dissolved in neutral and alkaline solution. The activity of the hydrotalcite-supported Pd-Cu catalyst for nitrate reduction kept steady after repeated use. (c) 2007 Elsevier B.V. All rights reserved.
机译:这项研究的重点是研究液体性质对水滑石负载的Pd-Cu催化剂上硝酸盐吸附和催化还原硝酸盐的影响。在特定的操作条件下进行批处理实验。结果发现,水滑石负载的Pd-Cu催化剂在不同的反应温度(10、25和35℃)下明显吸收了硝酸根离子。 NO3-的吸附等温线由Langmuir方程描述。较高的反应温度加快了硝酸盐的吸附和还原,同时降低了NO2-和NH4 +的积累。由于溶液的初始pH为5.25-7.4时水滑石的高缓冲能力,因此硝酸盐的吸附和还原与初始pH无关。但是,水滑石负载的Pd-Cu催化剂在较低的初始pH(3.77)和较高的OH-离子浓度在较高的初始pH(10.74)时会溶解,从而减少硝酸盐的吸附和还原。当使用各种硝酸盐作为硝酸根离子源时,硝酸盐的吸附和还原去除效率依次降低:Fe3 +> Mn2 +> Mg2 +> Ca2 +> Na +,这归因于对OH-的不同亲和力。在水中以更高的化合价和更低的晶体离子半径和氢氧化物溶解度常数共存的阳离子显示出对OH-的更强亲和力,因此增加了可被NO3-和NO2-吸收的活性位点的浓度。 Cl-,SO42-和HCO3-与硝酸盐在催化剂表面的竞争性吸附抑制了NO3-的吸附和还原。此外,几乎没有金属溶解在中性和碱性溶液中。重复使用后,水滑石负载的Pd-Cu催化剂的硝酸盐还原活性保持稳定。 (c)2007 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号