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首页> 外文期刊>Environmental Science and Pollution Research >Toward new benchmark adsorbents: preparation and characterization of activated carbon from argan nut shell for bisphenol A removal
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Toward new benchmark adsorbents: preparation and characterization of activated carbon from argan nut shell for bisphenol A removal

机译:朝新的基准吸附剂:从霍酚壳中的活性炭的制备和表征用于双酚去除

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The use of argan nut shell as a precursor for producing activated carbon was investigated in this work. Two activated carbons AC-HP and AC-Na were prepared from argan nut shell by chemical activation method using phosphoric acid (H3PO4) and sodium hydroxide (NaOH), respectively. Textural, morphological, and surface chemistry characteristics were studied by nitrogen physisorption, TGA, SEM, TXRF, FTIR, XRD, and by determining the pHPZC of the AC-HP. The adsorption experiments revealed that AC-HP was more efficient in adsorption of BPA due to high specific surface area (1372 m(2)/g) compared to AC-Na (798 m(2)/g). The obtained adsorption data of BPA on ACHP correlated well with the pseudo-second-order model and the Langmuir isotherm (Qmax = 1250 mg/g at 293 K). The thermodynamic parameters (Delta G degrees 0, Delta H degrees 0, and Delta S degrees 0) indicate that adsorption of BPA on AC-HP was spontaneous and exothermic in nature. The regeneration of AC-HP showed excellent results after 5 cycles (95-93%). This work does not only provide a potential way to use argan nut shell but also represents a sustainable approach to synthesize AC-HP, which might be an ideal material for various applications (energy storage, catalysis, and environmental remediation).
机译:用于生产活性炭的使用坚果坚果外壳的作为前体在这项工作中进行了研究。两个活性炭AC-HP和AC-娜从坚果坚果外壳通过化学活化方法,使用磷酸(H 3 PO 4)和氢氧化钠(NaOH)分别制备。纹理,通过氮物理吸附,TGA,SEM,TXRF,FTIR,XRD,并且通过确定所述AC-HP的pHPZC研究形态学和表面化学特性。吸附实验揭示,AC-HP由于高比表面积(1372米(2)/ g)的比AC-Na(上798米(2)/克)是BPA的吸附更有效。上ACHP BPA的所获得的吸附数据与伪二阶模型和Langmuir等温(Q最大= 1250毫克/克,在293 K)密切相关。热力学参数(德尔塔ģ度℃,,德尔塔ħ度℃,和德尔塔硕士℃,)表明BPA对AC-HP吸附是自发和本质上是放热。 AC-HP的再生5个周期(95-93%)后显示出优异的结果。这项工作不仅提供了使用坚果坚果壳的潜在方法,但也代表了一种可持续的方法来合成AC-HP,这可能是各种应用(储能,催化和环境整治)的理想材料。

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