Department of Chemistry Technology, Technical Vocational School, Aksaray University, 68100 Aksaray, Turkey.
Department of Chemistry, Faculty of Science and Letters, Aksaray University, 68100 Aksaray, Turkey.
Int J Biol Macromol. 2024 Sep;276(Pt 2):134001. doi: 10.1016/j.ijbiomac.2024.134001. Epub 2024 Jul 18.
The chemical reduction of organic or inorganic water contaminants is very important for both human health and pollution control. However, challenges still persist in preparing catalysts for chemical reduction, and there is a need for the development of inexpensive, easily synthesized, and effective catalyst systems. In this study, we have synthesized a new palladium nanocatalyst supported on the composite hydrogel beads composed of sodium carboxymethyl cellulose (Na-CMC) and graphitic carbon nitride (g-CN). The Pd@Na-CMC/g-CN composite was fully characterized using FE-SEM, XRD, BET, EDS, TEM, and EDS mapping analysis, confirming its successful preparation at the nano-scale. Pd@Na-CMC/g-CN was utilized to reduce various nitroaromatics such as 4-nitrophenol (4-NP), 2-nitrophenol (2-NA), 4-nitroaniline (4-NA), 4-nitro-o-phenylenediamine (4-NPDA), and organic dyes including methylene blue (MB), methyl orange (MO), Rhodamine B (RhB), as well as potassium hexacyanoferrate(III) (K[Fe(CN)]), which is the inorganic contaminant. While Pd@Na-CMC/g-CN completely reduced nitroaromatics within 65-120 s at 1 × 10 M concentration, organic dyes within 0-60 s at 1 × 10 M concentration, and K[Fe(CN)] within 90 s at 0.002 M concentration in water at room temperature. Rate constant values (k) of 4-NP, 2-NA, 4-NA, 4-NPDA, MO, RhB, and K[Fe(CN)] were calculated to be 0.0085 s, 0.012 s, 0.016 s, 0.01 s, 0.013 s, 0.021 s, and 0.015 s, respectively. Additionally, the Pd@Na-CMC/g-CN displayed high stability and even after four consecutive runs, it was able to reduce 4-NP and MO without any significant loss in its performance.
有机和无机水污染物的化学还原对于人类健康和污染控制都非常重要。然而,在制备化学还原催化剂方面仍然存在挑战,因此需要开发廉价、易于合成和有效的催化剂体系。在本研究中,我们合成了一种新型钯纳米催化剂,负载在由羧甲基纤维素钠(Na-CMC)和石墨相氮化碳(g-CN)组成的复合水凝胶珠上。通过 FE-SEM、XRD、BET、EDS、TEM 和 EDS 映射分析对 Pd@Na-CMC/g-CN 进行了全面表征,证实其成功制备为纳米级。Pd@Na-CMC/g-CN 用于还原各种硝基芳烃,如 4-硝基苯酚(4-NP)、2-硝基苯酚(2-NA)、4-硝基苯胺(4-NA)、4-硝基邻苯二胺(4-NPDA)以及有机染料,包括亚甲基蓝(MB)、甲基橙(MO)、罗丹明 B(RhB),以及无机污染物六氰合铁酸钾(III)(K[Fe(CN)])。在 1×10-5 M 浓度下,Pd@Na-CMC/g-CN 在 65-120 s 内完全还原硝基芳烃,在 1×10-5 M 浓度下,在 0-60 s 内完全还原有机染料,在 0.002 M 浓度下在室温下在水中还原 K[Fe(CN)]在 90 s 内完成。计算出 4-NP、2-NA、4-NA、4-NPDA、MO、RhB 和 K[Fe(CN)]的速率常数(k)值分别为 0.0085 s、0.012 s、0.016 s、0.01 s、0.013 s、0.021 s 和 0.015 s。此外,Pd@Na-CMC/g-CN 表现出很高的稳定性,即使经过四次连续运行,它仍能够还原 4-NP 和 MO,而不会对其性能造成任何显著损失。