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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Magnetic hydrogel derived from wheat straw cellulose/feather protein in ionic liquids as copper nanoparticles carrier for catalytic reduction
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Magnetic hydrogel derived from wheat straw cellulose/feather protein in ionic liquids as copper nanoparticles carrier for catalytic reduction

机译:磁性水凝胶衍生自离子液体中的小麦秸秆纤维素/羽蛋白作为铜纳米颗粒载体,用于催化还原

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摘要

Magnetic hydrogel derived from wheat straw cellulose (WSC) and feather protein (FP) was successfully derived from [Bmim] Cl ionic liquids for copper nanoparticles carrier to prepare magnetic hydrogel-Cu (m-WSC/FP-Cu). Morphology, structure and component of m-WSC/FP-Cu were characterized by different techniques (SEM, TEM, XRD, FTIR, VSM, etc.). The activity of m-WSC/FP-Cu were evaluated by employing them as catalysts for the reduction of 2-nitrobenzoic acid (2-NA) to a useful industrial intermediates, 2-aminobenzoic acid (2-ABA). Effect of experimental conditions, including m-WSC/FP-Cu dosage, 2-NA initial concentration, NaBH4 dosage and temperature, were investigated. The m-WSC/FP-Cu exhibited maximum catalytic activity under conditions of 1.00 g m-WSC/FP-Cu, 100 mg/L 2-NA and 0.3 g NaBH4. Besides, higher activity of m-WSC/FP-Cu was obtained at higher temperature. The activity of m-WSC/FP-Cu maintained 99.02% over 5 cycles utilization and 90.60% after 30 days storage, which exhibited excellent recyclability and stability. It is expected that the m-WSC/FP-Cu have the potential for treating organic wastewater cooperated with a catalyst regeneration device.
机译:从铜纳米颗粒载体的[Bmim] Cl离子液体成功地衍生自小麦秸秆纤维素(WSC)和羽毛蛋白(FP)的磁性水凝胶以制备磁性水凝胶-Cu(M-WSC / FP-Cu)。通过不同的技术(SEM,TEM,XRD,FTIR,VSM等)表征M-WSC / FP-Cu的形态,结构和组分。通过使用它们作为催化剂来评价M-WSC / FP-Cu的活性,用于将2-硝基苯甲酸(2-Na)还原为有用的工业中间体,2-氨基苯甲酸(2-ABA)。实验条件的影响,包括M-WSC / FP-Cu剂量,2-Na初始浓度,NaBH4剂量和温度。 M-WSC / FP-Cu在1.00g M-WSC / FP-Cu,100mg / L 2-Na和0.3g NaBH4的条件下表现出最大催化活性。此外,在较高温度下获得M-WSC / FP-Cu的更高活性。 M-WSC / FP-Cu的活性在30天内保持99.02%以上超过5次循环利用率和90.60%,其储存后呈现出优异的可回收性和稳定性。预期M-WSC / FP-Cu具有处理用催化剂再生装置配合的有机废水的可能性。

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