Magnetically separable CuO nanoparticles supported on graphene oxide(Fe3O4 NPs/GO-CuO NPs) is synthesized and characterized for the preparation of propargylamines in EtOH,at 90 C.Fe3O4 NPs/GOCuO NPs is found to be a...Magnetically separable CuO nanoparticles supported on graphene oxide(Fe3O4 NPs/GO-CuO NPs) is synthesized and characterized for the preparation of propargylamines in EtOH,at 90 C.Fe3O4 NPs/GOCuO NPs is found to be an efficient catalyst for the A^3-coupling of aldehydes,amines,and alkynes through C-H activation.Both aromatic and aliphatic aldehydes and alkynes are combined with secondary amines to provide a wide range of propargylamines in moderate to excellent yields.展开更多
Several simple, fast and practical protocols have been developed to synthesize internal or terminal propargylamines and chalcones via A^(3)-coupling reaction of aldehydes, amines, and alkynes catalyzed by an easily av...Several simple, fast and practical protocols have been developed to synthesize internal or terminal propargylamines and chalcones via A^(3)-coupling reaction of aldehydes, amines, and alkynes catalyzed by an easily available catalyst Ag_(2)CO_(3)under solvent-free condition. The reaction proceeded smoothly to deliver various products in good-to-excellent yields with good functional group tolerance. Gram-scale preparation, bioactive molecule synthesis and asymmetric substrates have been demonstrated. Furthermore,plausible mechanisms for the synthesis of different products have been proposed.展开更多
基于FCASM3建立了杭州市某污水厂A+A^2/O工艺模型.首先测定该污水处理厂的进水水质组分,以及不同阶段污染物浓度的变化和活性污泥中微生物动力学参数;然后,利用该厂2017年上半年的运行数据对模型进行校核.校核结果显示,该模型能够很好...基于FCASM3建立了杭州市某污水厂A+A^2/O工艺模型.首先测定该污水处理厂的进水水质组分,以及不同阶段污染物浓度的变化和活性污泥中微生物动力学参数;然后,利用该厂2017年上半年的运行数据对模型进行校核.校核结果显示,该模型能够很好地模拟出系统中各物质的转化情况.最后,利用校核完成的工艺模型对该污水厂的主要工艺参数,包括溶解氧、污泥回流比和混合液回流比,进行多因素正交模拟试验.试验结果表明,该污水处理厂的最佳运行工况为:当A+A^2/O系统的好氧池氧传输速率(Oxygen Transfer Coefficient,KLa)、污泥回流比和混合液回流比分别控制在2 h-1、75%及250%时,好氧池TN出水浓度下降1.28 mg·L^(-1),脱氮效率提高了15.91%,同时该厂污水处理能耗降低.展开更多
文摘Magnetically separable CuO nanoparticles supported on graphene oxide(Fe3O4 NPs/GO-CuO NPs) is synthesized and characterized for the preparation of propargylamines in EtOH,at 90 C.Fe3O4 NPs/GOCuO NPs is found to be an efficient catalyst for the A^3-coupling of aldehydes,amines,and alkynes through C-H activation.Both aromatic and aliphatic aldehydes and alkynes are combined with secondary amines to provide a wide range of propargylamines in moderate to excellent yields.
基金financial support from the National Natural Science Foundation of China (Nos. 21802093, 21536003)Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi (No. 2019L0408)the Ph D Start-up Foundation of Shanxi Medical University (No. 03201501) for the financial support。
文摘Several simple, fast and practical protocols have been developed to synthesize internal or terminal propargylamines and chalcones via A^(3)-coupling reaction of aldehydes, amines, and alkynes catalyzed by an easily available catalyst Ag_(2)CO_(3)under solvent-free condition. The reaction proceeded smoothly to deliver various products in good-to-excellent yields with good functional group tolerance. Gram-scale preparation, bioactive molecule synthesis and asymmetric substrates have been demonstrated. Furthermore,plausible mechanisms for the synthesis of different products have been proposed.
文摘基于FCASM3建立了杭州市某污水厂A+A^2/O工艺模型.首先测定该污水处理厂的进水水质组分,以及不同阶段污染物浓度的变化和活性污泥中微生物动力学参数;然后,利用该厂2017年上半年的运行数据对模型进行校核.校核结果显示,该模型能够很好地模拟出系统中各物质的转化情况.最后,利用校核完成的工艺模型对该污水厂的主要工艺参数,包括溶解氧、污泥回流比和混合液回流比,进行多因素正交模拟试验.试验结果表明,该污水处理厂的最佳运行工况为:当A+A^2/O系统的好氧池氧传输速率(Oxygen Transfer Coefficient,KLa)、污泥回流比和混合液回流比分别控制在2 h-1、75%及250%时,好氧池TN出水浓度下降1.28 mg·L^(-1),脱氮效率提高了15.91%,同时该厂污水处理能耗降低.