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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >La(OH)(3)-modified magnetic pineapple biochar as novel adsorbents for efficient phosphate removal
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La(OH)(3)-modified magnetic pineapple biochar as novel adsorbents for efficient phosphate removal

机译:La(OH)(3)磁性菠萝BioChar作为高效磷酸盐去除的新型吸附剂

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A series of La(OH)(3)-modified magnetic pineapple biochar (Lax-MC) with different contents of La(OH)(3) were prepared and used as phosphate adsorbents for the first time. With the increase of La(OH)(3) content, the adsorption capacity for phosphate increased while the magnetic property decreased. La10-MC exhibited excellent magnetic property for easy recovery and high adsorption capacity up to 101.16 mg P/g, which was 27 times that of pineapple biochar and much higher than most phosphate adsorbents. Adsorption isotherm and adsorption kinetics were better fitted by Langmuir model and pseudo second-order model, respectively. The removal efficiency 96.04% in coexisting ions indicated its high selectivity to phosphate. Little decrease in removal efficiency after three adsorption-desorption cycles suggested its excellent stability and cyclic utilization. Leaching study demonstrated the negligible risk of La3+ and Fe3+ leakage during adsorption process. Mechanism study revealed that the adsorption mechanism involved precipitation, electrostatic interaction, ligand exchange and inner-sphere complexation.
机译:制备了一系列具有不同含量的La(OH)(3)型磁性菠萝生物炭(LAX-MC),并首次用作磷酸盐吸附剂。随着LA(OH)(3)含量的增加,磷酸盐的吸附能力增加,而磁性降低。 La10-MC表现出优异的磁性,可容易恢复,高吸附能力高达101.16mg p / g,这是菠萝生物炭的27倍,远高于大多数磷酸盐吸附剂。 Langmuir Model和Pseudo二阶模型分别拟合吸附等温线和吸附动力学。去除效率& 96.04%的共存离子表明其对磷酸盐的高选择性。三次吸附 - 解吸周期后,去除效率几乎没有降低,表明其出色的稳定性和循环利用率。浸出研究证明了吸附过程中La3 +和Fe3 +泄漏的风险可忽略不计。机制研究表明,吸附机制涉及沉淀,静电相互作用,配体交换和内部球形络合。

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