Pamukova Vocational School, Sakarya University of Applied Sciences, Sakarya, Turkey.
Akçakoca School of Tourism and Hotel Management, Düzce University, Düzce, Turkey.
Environ Monit Assess. 2024 Jul 2;196(7):682. doi: 10.1007/s10661-024-12766-0.
The activated carbon was produced in the first phase of this investigation by chemically activating hazelnut shell waste with HPO. Composite materials were obtained by coating the activated carbon with zinc oxide, whose BET surface area was calculated as 1278 m g. ZnO-doped ZnO/AC composite was synthesized as an adsorbent for its possible application in the elimination of organic dyestuff MB, and its removal efficiency was investigated. Morphological properties of ZnO/AC were characterized using analytical methods such as XRD, SEM, and BET. The adsorption system and its parameters were investigated and modeled using the response surface method of batch adsorption experiments. The experimental design consisted of three levels of pH (3, 6.5, and 10), initial MB concentration (50, 100, and 150 mg L), dosage (0.1, 0.3, and 0.5 g 100 mL), and contact time (5, 50, and 95 min). The results from the RSM suggested that the MB removal efficiency was 98.7% under the optimum conditions of the experimental factors. The R value, which expresses the significance of the model, was determined as 99.05%. Adsorption studies showed that the equilibrium data fit well with the Langmuir isotherm model compared to Freundlich. The maximum adsorption capacity was calculated as 270.70 mg g.
在这项研究的第一阶段,通过用 HPO 化学激活榛子壳废物来生产活性炭。通过将氧化锌涂覆在活性炭上获得复合材料,其 BET 表面积计算为 1278 m²/g。合成了 ZnO 掺杂的 ZnO/AC 复合材料作为吸附剂,以研究其在去除有机染料 MB 方面的应用。采用 XRD、SEM 和 BET 等分析方法对 ZnO/AC 的形貌特性进行了表征。通过批处理吸附实验的响应面法研究并模拟了吸附系统及其参数。实验设计包括三个 pH 值(3、6.5 和 10)、初始 MB 浓度(50、100 和 150 mg/L)、剂量(0.1、0.3 和 0.5 g/100 mL)和接触时间(5、50 和 95 min)。RSM 的结果表明,在实验因素的最佳条件下,MB 的去除效率为 98.7%。表示模型重要性的 R 值确定为 99.05%。吸附研究表明,与 Freundlich 相比,平衡数据更符合 Langmuir 等温线模型。最大吸附容量计算为 270.70 mg/g。