Efficient Disposal of Basic Fuchsin Dye from Aqueous Media Using ZrO2/MgMn2O4/Mg(Mg0.333Mn1.333)O4 as a Novel and Facilely Synthesized Nanocomposite

IF 3.1 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Inorganics Pub Date : 2023-09-07 DOI:10.3390/inorganics11090363
A. Al-Wasidi, Mohamed Khairy, B. Abdulkhair, Ehab A. Abdelrahman
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引用次数: 3

Abstract

In this work, amorphous and crystalline novel products based on Zr, Mg, and Mn were facilely fabricated through the Pechini sol–gel procedure using inexpensive chemicals and an uncomplicated apparatus. Also, these products showed high efficiency as novel adsorbents in getting rid of basic fuchsin dye from aqueous solutions. The adsorbent, which was fabricated before calcination, was abbreviated as KE. In addition, the adsorbents, which were created at 500 and 700 °C, were designated as KE500 and KE700, respectively. The created adsorbents were characterized using high-level transmission electron microscopy (HR-TEM), X-ray diffraction (XRD), energy dispersive X-ray spectroscopy (EDS), N2 adsorption/desorption analyzer, and field emission scanning electron microscope (FE-SEM). The XRD showed that the KE adsorbent is amorphous, whereas the KE500 and KE700 adsorbents are mixtures of ZrO2, MgMn2O4, and Mg(Mg0.333Mn1.333)O4 nanostructures. The HR-TEM exhibited that the KE adsorbent consists of very fine irregular shapes, whereas the KE500 adsorbent contains quasi-spherical particles with a mean diameter of 45.16 nm. Furthermore, the HR-TEM exhibited that the KE700 adsorbent consists of polyhedral shapes with a mean diameter of 76.28 nm. Furthermore, the BET surface area of the KE, KE500, and KE700 adsorbents is 67.85, 20.15, and 13.60 m2/g, respectively. Additionally, the elimination of basic fuchsin dye by the KE, KE500, and KE700 adsorbents is exothermic, physical in nature, and follows the pseudo-first-order as well as Langmuir equations. Further, the maximum uptake capabilities of the KE, KE500, and KE700 adsorbents toward basic fuchsin dye are 239.81, 174.83, and 93.19 mg/g, respectively.
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ZrO2/MgMn2O4/Mg(Mg0.333Mn1.333)O4作为一种新的、易于合成的纳米复合材料从水介质中有效处理碱性品红染料
在这项工作中,通过Pechini溶胶-凝胶程序,使用廉价的化学品和简单的设备,容易地制备了基于Zr、Mg和Mn的非晶和结晶新产品。此外,这些产物在从水溶液中去除碱性品红染料方面显示出作为新型吸附剂的高效性。在煅烧前制造的吸附剂缩写为KE。此外,在500和700°C下产生的吸附剂分别命名为KE500和KE700。使用高级透射电子显微镜(HR-TEM)、X射线衍射(XRD)、能量色散X射线光谱(EDS)、N2吸附/脱附分析仪和场发射扫描电子显微镜(FE-SEM)对所产生的吸附剂进行表征。XRD表明KE吸附剂是无定形的,而KE500和KE700吸附剂是ZrO2、MgMn2O4和Mg(Mg0.333Mn1.333)O4纳米结构的混合物。HR-TEM表明,KE吸附剂由非常精细的不规则形状组成,而KE500吸附剂包含平均直径为45.16nm的准球形颗粒。此外,HR-TEM显示KE700吸附剂由平均直径为76.28nm的多面体组成。此外,KE、KE500和KE700吸附剂的BET表面积分别为67.85、20.15和13.60m2/g。此外,KE、KE500和KE700吸附剂对碱性品红染料的消除是放热的,本质上是物理的,并且遵循伪一阶和Langmuir方程。此外,KE、KE500和KE700吸附剂对碱性品红染料的最大吸收能力分别为239.81、174.83和93.19mg/g。
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来源期刊
Inorganics
Inorganics Chemistry-Inorganic Chemistry
CiteScore
2.80
自引率
10.30%
发文量
193
审稿时长
6 weeks
期刊介绍: Inorganics is an open access journal that covers all aspects of inorganic chemistry research. Topics include but are not limited to: synthesis and characterization of inorganic compounds, complexes and materials structure and bonding in inorganic molecular and solid state compounds spectroscopic, magnetic, physical and chemical properties of inorganic compounds chemical reactivity, physical properties and applications of inorganic compounds and materials mechanisms of inorganic reactions organometallic compounds inorganic cluster chemistry heterogenous and homogeneous catalytic reactions promoted by inorganic compounds thermodynamics and kinetics of significant new and known inorganic compounds supramolecular systems and coordination polymers bio-inorganic chemistry and applications of inorganic compounds in biological systems and medicine environmental and sustainable energy applications of inorganic compounds and materials MD
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