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Recycling agriculture wastes of ramie stalk as bioadsorbents for Cd2+ removal: a kinetic and thermodynamic study

机译:麻秸秆的农业废料作为生物吸附剂用于去除Cd2 +的回收:动力学和热力学研究

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In this study, we exhibit the recycling of agriculture wastes of ramie stalk as bioadsorbents for Cd2+ removal. Based on our experimental results, it is realized that Cd2+ adsorption to ramie stalk is highly pH sensitive, indicating the adsorption is driven by surface complexation reaction. The high adsorption capacity of ramie stalk toward Cd2+ (q(m) = 10.33 mg g(-1), 0.09 mol-Cd g(-1)), which corresponds to around 21.95% of active adsorption sites available of ramie stalk, is believed to be closely related to its high cellulose and lignin content. The inhomogeneous surface of ramie stalk due to the high cellulose and lignin content also accounts for the observation that the adsorption kinetic is described well by the pseudo second order kinetic model. Results from thermodynamic studies suggest that the adsorption process is endothermic and spontaneous. All these properties demonstrate the potential of ramie stalk as a low cost bioadsorbent for the application of heavy metal removal.
机译:在这项研究中,我们展示了the麻秸秆的农业废料作为Cd2 +去除生物吸附剂的回收利用。根据我们的实验结果,我们发现C麻秸秆对Cd2 +的吸附对pH值非常敏感,表明吸附是由表面络合反应驱动的。 C麻秸秆对Cd2 +的高吸附能力(q(m)= 10.33 mg g(-1),0.09 mol-Cd g(-1)),相当于around麻秸秆可利用的活性吸附位的约21.95%。据信与其高纤维素和木质素含量密切相关。由于纤维素和木质素含量高,麻秸秆表面不均匀,这也说明了吸附动力学可以通过伪二级动力学模型很好地描述。热力学研究的结果表明,吸附过程是吸热的和自发的。所有这些特性证明了ie麻秸秆作为低成本重金属去除剂的生物吸附剂的潜力。

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