首页> 外文期刊>Separation and Purification Technology >Palladium nanoparticles stabilized on a novel Schiff base modified Unye bentonite: Highly stable, reusable and efficient nanocatalyst for treating wastewater contaminants and inactivating pathogenic microbes
【24h】

Palladium nanoparticles stabilized on a novel Schiff base modified Unye bentonite: Highly stable, reusable and efficient nanocatalyst for treating wastewater contaminants and inactivating pathogenic microbes

机译:钯纳米粒子稳定在一种新型什叶派碱改性的Unye Bentonite:高度稳定,可重复使用和高效的纳米催化剂,用于治疗废水污染物和灭活致病微生物

获取原文
获取原文并翻译 | 示例
           

摘要

Efficient decoration and characterization of highly catalytic, active Pd nanoparticles (NPs) onto a novel Schiff base modified Unye bentonite (UN-Sch) with high coordination performance of structurally defined 2-pyrro-laldehyde ligands against palladium ions (Pd NPs@UN) have been described. Amine modified UN/Pd NPs were fabricated via a facile multi-step approach without utilizing any additional reducing agents. To check the applicability of the synthesized Pd NPs@UN as highly active nanocatalysts in water and wastewater treatment, the reduction of highly toxic compounds such as 4-nitrophenol (4-NP), hexavalent chromium [Cr(VI)], Rhodamine B (RhB), potassium hexacyanoferrate(IID) (K-3[Fe(CN)(6)]) and conga red (CR) at ambient temperature in eco-friendly media has been investigated. The surface nature of Unye bentonite was altered after modification, leading to notable increase in the catalytic properties. The ensuing Pd NPs@UN demonstrated superior catalytic prowess (100% conversion within a few seconds for the aforementioned pollutants), excellent stability (similar to 4 months) and superior recyclability (similar to 96% yield after seven successive cycles). Notably, the present procedure is a clean and green one in which aqueous sodium borohydride (NaBH4) or formic acid (HCOOH) are used as reducing agents in the absence of any toxic reductants. Moreover, the results showed that Pd NPs@UN was effective against fungi and bacteria.
机译:高催化,活性Pd纳米粒子(NPS)上的高效装饰和表征在新型席夫碱改性的Unye Bentonite(UN-SCH)上,具有针对钯离子的结构定义的2-吡咯 - 洛尔醛配体的高配位性能(PD NPS @联合国)已被描述。通过容易的多步骤方法制造胺改性的UN / Pd NPS,而不使用任何额外的还原剂。为了检查合成的PD NPS @ UN在水和废水处理中高活性纳米催化剂的适用性,减少高毒性化合物,如4-硝基苯酚(4-NP),六价铬[Cr(VI)],Rhodamine B( RHB),在环保介质环境温度下,研究了己酰基甲酰胺(IID)(IID)(K-3 [Fe(CN)(6)])和凝固红色(CR)。在改性后改变了Unye Bentonite的表面性质,导致催化性能显着增加。随后的PD NPS @联合国展示了优异的催化实力(在几秒钟内转化为上述污染物100%),优异的稳定性(类似于4个月)和优异的再循环性(类似于七个连续循环后的96%收率)。值得注意的是,本方法是清洁和绿色的过程,其中在没有任何有毒还原剂的情况下使用硼氢化钠水溶液(NaBH 4)或甲酸(HCOOH)作为还原剂。此外,结果表明,PD NPS @联合国对真菌和细菌有效。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

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