Immobilized Thiosalicylic Ligand System Potentials for the Detoxification of Some Heavy Metals from Tannery Wastewater

B. Habila, E. C. Ezeh, S. Saidu, J. Attah, P. O. Nsude, E. Agboeze, Ikechukwu Ozoemena, J. Gaiya, Tachye Ninnat Bwankhot Shekarri, Sunday Ture Dahiru, Olajide Joseph Igbehinadun
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Abstract

Polysiloxanes are characterized by silicon and oxygen backbone and are hydrophobic in nature with low moisture uptake widely used for medical applications. Polysiloxane immobilized thiosalicylic acid ligand system has been prepared through sol-gel method, gelation was observed after 40 minutes. The immobilized ligand was characterized using FTIR, the spectrum showed characteristic absorption bands (cm-1) at: 3377 (OH), 2981 (C-H stretch); 2631 (SH); 1587 to 1684 (C=C, C=O); 1032 to 1144 (Si - O) respectively. SEM analysis showed irregular particle sizes of the polysiloxane matrices while EDX elemental composition gave (wt %): 3-CPPS; Si (50.45), O (25.02) and Cl (24.57). F - 3CPPS showed, O (58.68), Si (41.32); thiosalicylic (7.14 of S). The extraction of metal ions (Cr3+, Fe3+, Pb2+, Cu2+ and Zn2+) were studied using Microwave Plasma Atomic Emission Spectrophotometer (Agilent MPAES-4200) at pH 6.0. Thermodynamic range with respect to Cr3+, Fe3+, Pb2+, Cu2+ and Zn2+ yielded negative values forΔGo: Cu2+-(11.483 to 14.842) to Zn2+ -(14.368 to 14.842)KJmol-1; positive values for ΔHo: Fe3+ (0.000) to Pb2+ (105.130)KJmol-1 and ΔSo: Zn2+ (47.421) to Pb2+ (389.328)Jmol1K1 respectively, indicating spontaneous, endothermic reactions and high degree of disorderliness with respect to metal ion binding capacity to the ligand system.
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固定化硫代水杨酸配体系统电位对制革废水中重金属脱毒的影响
聚硅氧烷以硅和氧为骨架,具有疏水性和低吸湿性,广泛应用于医疗领域。采用溶胶-凝胶法制备了聚硅氧烷固定化硫代水杨酸配体体系,40分钟后观察其凝胶化情况。用FTIR对固定化配体进行了表征,光谱显示:3377 (OH), 2981 (C-H拉伸)处的特征吸收带(cm-1);2631 (SH);1587 - 1684 (C=C, C=O);1032 ~ 1144 (Si - O)。SEM分析显示聚硅氧烷基体粒度不规则,EDX元素组成为(wt %): 3-CPPS;Si (50.45), O (25.02), Cl(24.57)。F - 3CPPS显示,O (58.68), Si (41.32);采用微波等离子体原子发射分光光度计(Agilent MPAES-4200)在pH 6.0条件下对金属离子(Cr3+、Fe3+、Pb2+、Cu2+和Zn2+)进行了萃取研究。Cr3+, Fe3+, Pb2+, Cu2+, Zn2+的热力学范围为负值forΔGo: Cu2+-(11.483 ~ 14.842) ~ Zn2+ -(14.368 ~ 14.842)KJmol-1;分别为ΔHo: Fe3+(0.000)→Pb2+ (105.130) kjmol1和ΔSo: Zn2+(47.421)→Pb2+ (389.328)Jmol1K1的正值,表明金属离子与配体体系的结合能力具有自发、吸热反应和高度无序性。
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