Abu Tawila Zayed M M, Ismail Salmah, Abu Amr Salem S, Abou Elkhair Emad K
Institute of Biological Science, Faculty of Science, University of Malaya 50603 Kuala Lumpur Malaysia
Biology Department, Faculty of Science, Al-Azhar University Gaza Palestine.
RSC Adv. 2019 Sep 4;9(48):27825-27834. doi: 10.1039/c9ra04683f. eCollection 2019 Sep 3.
In this study, a novel bioflocculant QZ-7 was produced from 139SI for industrial wastewater treatment. Biochemical analysis, FTIR, scanning electron microscopy-energy dispersive X-ray spectroscopy, and thermogravimetric analysis were performed. A synthetic wastewater sample was used to validate the performance of the prepared OZ-7 for the adsorption efficiency of As, Zn Pb, Cu, and Cd under optimal experimental conditions such as initial metal concentrations, pH, contact time (h) and QZ-7 adsorbent dosage (mg mL). The maximum removal efficiency for Zn (81.3%), As (78.6%), Pb (77.9%), Cu (76.1%), and Cd (68.7%) was achieved using an optimal bioflocculant dosage of 60 mg L at 2 h shaking time, 100 rpm and pH 7. Furthermore, the obtained optimum experimental conditions were validated using real industrial wastewater and the removal efficiencies of 89.8%, 77.4% and 58.4% were obtained for As, Zn and Cu, respectively. The results revealed that the prepared bioflocculant QZ-7 has the capability to be used for the removal of heavy metals from industrial wastewater.
在本研究中,利用139SI生产了一种新型生物絮凝剂QZ - 7用于工业废水处理。进行了生化分析、傅里叶变换红外光谱分析、扫描电子显微镜 - 能量色散X射线光谱分析和热重分析。使用合成废水样本在初始金属浓度、pH值、接触时间(小时)和QZ - 7吸附剂用量(毫克/毫升)等最佳实验条件下验证制备的QZ - 7对砷、锌、铅、铜和镉的吸附效率。在2小时振荡时间、100转/分钟和pH值为7的条件下,使用60毫克/升的最佳生物絮凝剂用量,锌(81.3%)、砷(78.6%)、铅(77.9%)、铜(76.1%)和镉(68.7%)的最大去除效率得以实现。此外,利用实际工业废水验证了获得的最佳实验条件,砷、锌和铜的去除效率分别为89.8%、77.4%和58.4%。结果表明,制备的生物絮凝剂QZ - 7有能力用于去除工业废水中的重金属。