甲基橙和刚果红催化还原羧化褐藻酸衍生物的性能

R. H. Althomali, K. Alamry, A. M. Alosaimi, M. Hussein
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摘要

在过去的几年中,已经开发了许多水处理材料,包括吸附剂。研究了羧化褐藻酸衍生物对甲基橙(MO)和刚果红(CR)等有害有机染料的催化还原行为。褐藻酸首先通过添加KMnO4作为氧化剂进行氧化。羧基褐藻酸(CAA)通过pH = 4的配位键与选定的金属离子(Sn、Fe、Ni和Zr)相互作用,形成相应的金属配合物Sn-CAA、Fe-CAA、Ni-CAA和Zr-CAA。通过FT-IR、XRD、SEM和EDX等多种光谱技术证实了配位的一致性。以NaBH4为还原剂,在紫外照射下对MO和CR进行了催化还原。所有金属配合物对CR的催化还原效果均优于MO,其中Sn-CAA对CR的催化还原效果最好。Sn-CAA用于CR和MO的时间分别为5 min和7 min。Ni-CAA被归类为对这两种染料的第二高效产物,还原过程分别需要20和9分钟。另外两种催化剂对CR和MO的还原时间较长。Zr-CAA在20 min内仅对CR染料还原80%以上,而Fe-CAA在20 min后对两种染料均无明显还原迹象。催化还原率较高的顺序为:Sn-CAA > Ni-CAA > Zr-CAA = Fe-CAA。
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The performance of carboxylated alginic acid derivatives via methyl orange and Congo red catalytic reduction
Numerous water-treatment marital have been developed during the past few years, including adsorbents., the catalytic reduction behavior of carboxylated alginic acid derivatives has been investigated against harmful organic dyes including Methyl Orange (MO) and Congo Red (CR). Alginic acid was firstly oxidized through an easy addition of KMnO4 as an oxidizing agent. A carboxylated alginic acid (CAA) has been interacted with selected metal ions (Sn, Fe, Ni, and Zr) through coordination bonds at the value of pH = 4 to form the corresponding metal complexes namely: Sn-CAA, Fe-CAA, Ni-CAA, and Zr-CAA. The consistency of the coordination was confirmed by several spectroscopic techniques including FT-IR, XRD, SEM, and EDX. The catalytic reduction of these metal ion-based products was carried out against MO, and CR in the presence of NaBH4 as a reducing agent under UV irradiation. All catalysts-based metal complexes showed enhanced catalytic reduction against CR compared to MO. Among all those mentioned metal complexes Sn-CAA showed the best catalytic reduction of these dyes. The time is taken by the Sn-CAA for CR, and MO is 5 and 7 min respectively. Ni-CAA was classified as the second efficient product against both dyes, where the reduction process took 20 and 9 min respectively. The other two catalysts took a long time for CR and MO reduction. Zr-CAA showed more than 80% reduction of only CR dye within 20 min. Whereas, Fe-CAA did not show any significant sign of reduction against both the dyes after the same time. The order of higher catalytic reduction was illustrated as: Sn-CAA > Ni-CAA > Zr-CAA = Fe-CAA.
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