利用响应面方法优化改性稻草对水溶液中铜的吸附效果

Aanisa Manzoor Shah, I. M. Khan, Rehana Rasool, Y. H. Mir, Raihana Habib Kant, S. Mir, T. A. Sheikh, F. Wani, Shaista Nazir, M. A. Bhat, J. A. Bhat, M. Chesti, M. A. Ganie, Rehana Shakeel
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引用次数: 0

摘要

重金属污染对人类和水生生物以及生态系统健康构成了严重威胁。为确保安全和可持续地获取水资源,使用低成本吸附剂进行生物吸附被认为是一种很有前途的有害污染物修复方法。本研究旨在评估改性稻草吸附铜的性能,同时优化其操作参数。研究采用基于 RSM 的 Box-Behnken 设计来优化温度、pH 值和吸附剂剂量等操作变量。结果表明,所生成模型的 R 平方为 0.98,反映了该模型在很好地描述实验数据方面的有效性。获得最大铜吸附量的优化条件为温度 37.71 oC、溶液 pH 值 5.7 和吸附剂剂量 11.26 g L-1。在这些优化条件下,吸附效率为 86.65%。在这些条件下的实验吸附效率约为 86.43%,反映了基于 RSM 的箱式贝肯设计的适用性。综上所述,可以推断出酸性改性稻草是一种很有前途的低成本吸附剂,可用于按照绿色化学原理修复重金属。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing Copper Adsorption from Aqueous Solutions with Modified Rice Straw Using Response Surface Methodology
Heavy metal contamination poses an impulsive threat to human and aquatic life and ecosystem health. To ensure safe and sustainable water accessibility, biosorption with low-cost adsorbents is acknowledged as a promising approach for the remediation of noxious pollutants. The current study was oriented to appraise the performance of modified rice straw for copper adsorption in hand with the optimization of its operational parameters. RSM-based Box-Behnken design was employed to optimize the operational variables encircling temperature, pH, and adsorbent dose. The results elucidated that the generated model exhibited an R-squared of 0.98, reflecting its validity in describing the experimental data well. The optimized conditions for attaining maximum copper adsorption were marked to be a temperature of 37.71 oC, a solution pH of 5.7, and an adsorbent dose of 11.26 g L-1. Under these optimized conditions, the adsorption efficiency was marked to be 86.65 %. The experimental adsorption efficiency under these conditions was noted to be approximately 86.43 %, reflecting the suitability of the RSM-based Box-Behnken design. Conclusively, it can be inferred that acid modified rice straw offers a promising low cost adsorbent for remediation of heavy metals in accordance with the principles of green chemistry.
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