Pengaruh Mol K3Fe(CN)6 pada Sintesis Zat Warna Biru Prusia berbahan Pasir Besi Muara Pantai Sunur Pariaman

Nafis Sudirman, Syamsi Aini
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Abstract

— The purpose of the research was to see how different moles of K 3 Fe(CN) 6 affected the color of Prussian blue in order to find the best synthesis conditions. Methods for separating pigments from solvents include coprecipitation and centrifugation. Prussian Blue was created by reacting Fe 3 O 4 with 96% H 2 SO 4 to produce Fe 2+ ions, which were then reacted with K 3 Fe(CN) 6 to produce Prussian Blue. The variation results were referred to as M1, M2, and M3 in this study, which varied three samples of K 3 Fe(CN) 6 . 3.037 mmol K 3 Fe(CN) 6 was reacted at 30.37 mM in sample M1. Sample M2 was made by reacting 9.87 mmol K 3 Fe(CN) 6 30.37 mM with 4.56 mmol FeSO 4 0.018 mM 250 mL. Sample M3 reacted with 12.21 mmol K 3 Fe(CN) 6 at a concentration of 30.37 mM. The M2 sample is the best in terms of K 3 Fe(CN) 6 variation. According to the standard absorbance wavelength of Prussian Blue (680-740 nm), the maximum UV-Vis absorbance of M2 products is at 747 nm, and the absorbance is relatively high.
研究的目的是观察不同摩尔的k3fe (CN) 6对普鲁士蓝颜色的影响,从而找到最佳的合成条件。从溶剂中分离颜料的方法包括共沉淀法和离心法。普鲁士蓝是由fe3o与96%的h2so4反应生成fe2 +离子,然后与k3fe (CN) 6反应生成普鲁士蓝。本研究的变化结果分别为M1、M2、M3,分别代表三个样品的k3fe (CN) 6的变化。3.037 mmol k3fe (CN) 6在样品M1中以30.37 mM反应。样品M2以9.87 mmol k3fe (CN) 6 30.37 mM与4.56 mmol FeSO 4 0.018 mM 250 mL反应制得,样品M3与12.21 mmol k3fe (CN) 6反应,反应浓度为30.37 mM,样品M2的k3fe (CN) 6变化最好。根据普鲁士蓝的标准吸光度波长(680-740 nm), M2产品的最大UV-Vis吸光度在747 nm处,吸光度比较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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