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KINETICS OF MERCURY AND NICKEL ADSORPTION USING CHEMICALLY PRETREATED COCOA (THEOBROMA CACAO) HUSKS

机译:汞和镍吸附的动力学使用化学预处理可可(CacroomaCao)壳

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摘要

Agroindustrial wastes have been widely used to prepare adsorbents for heavy metal removal because of their low cost, accessibility, and high efficiency. This work focuses on preparing a novel material from cocoa (Theobroma cacao L.) husk residual biomass chemically modified with sodium hydroxide for used as a biosorbent for nickel and mercury uptake. The cocoa husk residual biomass was characterized by FT-IR analysis to test the diversification of functional groups. The effect of particle size on removal yield was evaluated through batch adsorption experiments. The experimental results were fitted to mathematical models to determine the adsorption kinetics and isotherms. Particle size significantly affected the adsorption process, and the highest removal yields (91.59% and 79.96%) were achieved using 0.36 mm and 0.5 mm particles for Hg (II) and Ni (II) ions, respectively. The adsorption kinetic model that best fit the experimental data corresponded to the Elovich model, with correlation coefficients (R-2) above 0.89. The adsorption process of nickel and mercury onto cocoa husk biomass followed the Freundlich isotherm model. The results show that modification with sodium hydroxide improves the adsorption capacity of cocoa husk residual biomass, indicating that this novel material could be efficiently applied for nickel and mercury uptake.
机译:农业工业废物已被广泛用于制备重质金属去除剂的吸附剂,因为它们的成本低,可访问性和高效率。这项工作侧重于制备来自可可(Cacrooma Cacao L.)的新型材料壳残留生物质用氢氧化钠化学改性,用于用作镍和汞摄取的生物吸附剂。通过FT-IR分析,可可壳残留生物质的特征在于测试官能团的多样化。通过批量吸附实验评估粒度对去除产率的影响。实验结果适用于数学模型,以确定吸附动力学和等温。粒度显着影响吸附过程,使用0.36mm和0.5mM的Hg(II)和Ni(II)离子的颗粒来实现最高的去除产率(91.59%和79.96%)。最佳拟合实验数据的吸附动力学模型对应于ELOVICH模型,其相关系数(R-2)高于0.89。镍和汞对可可壳生物质的吸附过程,遵循Freundlich等温线模型。结果表明,用氢氧化钠改性可增加可可壳残留生物质的吸附能力,表明这种新材料可有效地应用于镍和汞摄取。

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