Synergistic effect of silver nanoparticle-embedded calcite-rich biochar derived from Tamarindus indica bark on 4-nitrophenol reduction

生物炭 方解石 催化作用 纳米颗粒 复合数 化学工程 循环伏安法 化学 核化学 4-硝基苯酚 材料科学 纳米技术 矿物学 电化学 有机化学 复合材料 物理化学 工程类 热解 电极
作者
J. Amala Ebi Jacob,Antony Rajendran,D.S. Ivan Jebakumar
出处
期刊:Chemosphere [Elsevier]
卷期号:349: 140765-140765 被引量:14
标识
DOI:10.1016/j.chemosphere.2023.140765
摘要

Calcite-biochar composites are attractive materials with outstanding adsorption capabilities for removing various recalcitrant contaminants in wastewater treatment, however, the complexity of their synthesis limits their practical applications. In this work, we have prepared calcite-rich biochar (Ca-BC) from a single precursor (Tamarindus indica bark), which simplifies the synthetic route for preparing a calcite-biochar composite. The as-synthesized composite is utilized to make a heterogeneous catalytic system containing the supported Ag nanoparticles (Ag@Ca-BC) formed by the reduction of Ag+ ions on the surface of the composite. The formation of Ag@Ca-BC is confirmed by various characterization techniques such as PXRD, FT-IR, UV–Vis, cyclic voltammetry, impedance measurement, SEM, and TEM analyses. Especially, the TEM analysis confirms the presence of Ag nanoparticles with a size ranging between 20 and 50 nm on the surface of Ca-BC composite. The nano-catalyst Ag@Ca-BC efficiently promotes the conversion of 4-nitrophenol to 4-aminophenol using NaBH4 as the reductant in water within 24 min at room temperature, suggesting that Ag@Ca-BC can be an efficient catalyst to remove nitroaromatics from the industrial effluents. The straightforward synthesis of Ca-BC from a single precursor along with its utility as a catalytic support presents a compelling proposition for application in the field of materials synthesis, catalysis, and green chemistry.
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