Fanta Feleke Terefe, Dubale Amare Aregahegn, Bebizuh Dawit Firemichael, Atlabachew Minaleshewa
1Department of Chemistry, College of Natural and Computational Science, Energy and Environment Research Center, Dilla University, 419, Dilla, Ethiopia.
2Department of Chemistry, College of Science, Bahir Dar University, P.O. Box 79, Bahir Dar, Ethiopia.
BMC Chem. 2019 Apr 1;13(1):44. doi: 10.1186/s13065-019-0563-1. eCollection 2019 Dec.
The existence of heavy metals and coliform bacteria contaminants in aquatic system of Akaki river basin, a sub city of Addis Ababa, Ethiopia has become a public concern as human population increases and land development continues. Hence, it is the right time to design treatment technologies that can handle multiple pollutants.
In this study, we prepared a synthetic zeolites and copper doped zeolite composite adsorbents as cost effective and simple approach to simultaneously remove heavy metals and total coliforms from wastewater of Akaki river. The synthesized copper-zeolite X composite was obtained by ion exchange method of copper ions into zeolites frameworks. Iodine test, XRD, FTIR and autosorb IQ automated gas sorption analyzer were used to characterize the adsorbents. The mean concentrations of Cd, Cr, and Pb in untreated sample were 0.795, 0.654 and 0.7025 mg/L respectively. These concentrations decreased to Cd (0.005 mg/L), Cr (0.052 mg/L) and Pb (bellow detection limit, BDL) for sample treated with bare zeolite X while a further decrease in concentration of Cd (0.005 mg/L), Cr (BDL) and Pb (BDL) was observed for the sample treated with copper-zeolite composite. Zeolite X and copper-modified zeolite X showed complete elimination of total coliforms after 90 and 50 min contact time respectively.
The results obtained in this study showed high antimicrobial disinfection and heavy metal removal efficiencies of the synthesized adsorbents. Furthermore, these sorbents are efficient in significantly reducing physical parameters such as electrical conductivity, turbidity, BOD and COD.
随着埃塞俄比亚亚的斯亚贝巴一个郊区阿卡卡河流域人口增加和土地开发持续,该流域水体系统中重金属和大肠菌群污染物的存在已成为公众关注的问题。因此,现在是设计能够处理多种污染物的处理技术的合适时机。
在本研究中,我们制备了合成沸石和铜掺杂沸石复合吸附剂,作为一种经济有效且简单的方法,用于同时去除阿卡卡河废水中的重金属和总大肠菌群。通过将铜离子离子交换到沸石骨架中获得了合成的铜 - 沸石X复合材料。使用碘测试、XRD、FTIR和Autosorb IQ自动气体吸附分析仪对吸附剂进行表征。未处理样品中Cd、Cr和Pb的平均浓度分别为0.795、0.654和0.7025mg/L。用纯沸石X处理的样品中,这些浓度降至Cd(0.005mg/L)、Cr(0.052mg/L)和Pb(低于检测限,BDL),而用铜 - 沸石复合材料处理的样品中,Cd(0.005mg/L)、Cr(BDL)和Pb(BDL)的浓度进一步降低。沸石X和铜改性沸石X分别在接触90分钟和50分钟后显示出总大肠菌群的完全消除。
本研究获得的结果表明,合成吸附剂具有高抗菌消毒和重金属去除效率。此外,这些吸附剂在显著降低诸如电导率、浊度、BOD和COD等物理参数方面效率很高。