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首页> 外文期刊>Separation and Purification Technology >Facile preparation of PbCrO4 and PbCrO4/Ag nanostructure as an effective photocatalyst for degradation of organic contaminants
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Facile preparation of PbCrO4 and PbCrO4/Ag nanostructure as an effective photocatalyst for degradation of organic contaminants

机译:PBCro4和PBCro4 / Ag纳米结构的容易制剂作为有机污染物降解的有效光催化剂

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Pure monoclinic lead chromate nanoparticles ware prepared via a new simple way with lead nitrate and chrome chloride as Pb and Cr sources. For the first time, nanostructured lead chromate was synthesized with utilizing triethylenepantamine as a new alkaline agent. The citric acid, succinic acid, maleic acid and benzene tri carboxylic acid as stabilization agent and capping agent in presence of ethylene glycol and propylene glycol as connecting agent were employed to prepare of the lead chromate. The as-prepared nanostructured PbCrO4 and PbCrO4/Ag was analyzed by UV-Vis diffuse reflectance spectroscopy (DRS), energy dispersive X-ray micro analysis (EDX), Fourier transform infrared (FT-IR) spectroscopy, transmission electron microscopy (TEM), field emission scanning electron microscopy (FESEM) and X-ray diffraction (XRD). To examining the influence of various stabilization agents, connecting agent and alkaline agents on the morphology, grain size and photo catalytic performance of PbCrO4, different experiments were performed. The effects of various factors including kind of contamination, grain size ofPbCrO(4) nanostructures and pH on photocatalytic behavior of products was evaluated. Rhodamine B, methylene blue, methyl orange and murexide were used as pollutant model. It was observed that by using of PbCrO4/Ag nanostructure instead PbCrO4 nanoparticles the photocatalytic activity from 53 to 67 increased. Also by decreasing of pH from 7 to 5 destruction percentage of rhodamine B from 67 to 55 decreased.
机译:纯单斜铅铬酸盐纳米颗粒纳米颗粒通过新的简单方式制备,其具有硝酸铅和氯化铬作为Pb和Cr来源。首次,利用三乙基苯胺作为新的碱性试剂合成纳米结构铅铬酸盐。用柠檬酸,琥珀酸,马来酸和苯三羧酸作为稳定剂和亚乙二醇作为连接剂存在的封端剂,以制备铅铬酸盐。通过UV-Vis弥射反射光谱(DRS),能量分散X射线微分析(EDX),傅里叶变换红外(FT-IR)光谱,透射电子显微镜(TEM)分析AS制备的纳米结构PBCRO4和PBCRO4 / AG。 ,场发射扫描电子显微镜(FeSEM)和X射线衍射(XRD)。为了检查各种稳定剂,连接剂和碱性试剂对PBCro4的形态,晶粒尺寸和光催化性能的影响,进行了不同的实验。评估了各种因素,包括污染的各种因素,晶粒尺寸的植物大小和产物的光催化行为对pH值。罗丹明B,亚甲基蓝,甲基橙和软体氧化物用作污染物模型。观察到通过使用PBCro4 / Ag纳米结构而代替PBCro4纳米颗粒,光催化活性为53至67增加。同样通过将pH从7至5个破坏百分比降低,罗丹明B的百分比从67〜55降低。

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