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用于从水溶液中吸附和氧化去除刚果红染料的纳米零价锰/生物炭复合材料

Nano-zerovalent manganese/biochar composite for the adsorptive and oxidative removal of Congo-red dye from aqueous solutions.

作者信息

Iqbal Jibran, Shah Noor S, Sayed Murtaza, Niazi Nabeel Khan, Imran Muhammad, Khan Javed Ali, Khan Zia Ul Haq, Hussien Aseel Gamal Suliman, Polychronopoulou Kyriaki, Howari Fares

机构信息

College of Natural and Health Sciences, Zayed University, P.O. Box 144534, Abu Dhabi, United Arab Emirates.

Department of Environmental Sciences, COMSATS University Islamabad, Vehari Campus 61100, Pakistan.

出版信息

J Hazard Mater. 2021 Feb 5;403:123854. doi: 10.1016/j.jhazmat.2020.123854. Epub 2020 Sep 8.

Abstract

Congo-red (CR), a precursor of textile products and a contaminant of great concern, has contaminated aquatic environments. Here, we explored the synthesis of mesoporous nano-zerovalent manganese (nZVMn) and Phoenix dactylifera leaves biochar (PBC) composite for the removal of CR from water. The nZVMn/PBC adsorbed 117.647 mg/g of CR versus 25.316 mg/g by PBC at [CR] = 20 mg/L and [PBC] = [nZVMn/PBC] = 500 mg/L. Variation of [nZVMn/PBC], [CR] and pH influenced the adsorption of CR. Freundlich adsorption isotherm and pseudo-first-order kinetic models best fitted CR adsorption. The HO coupling with nZVMn/PBC promoted removal of CR possibly due to the formation of hydroxyl radical (OH) and caused 95 % removal of CR versus 77 % by nZVMn/PBC alone. The OH scavengers inhibited the removal of CR. The nZVMn/PBC showed a good reusability and efficient removal of CR up to the seventh cycle of treatment. Results reveal that nZVMn improved performance, thermal stability and reusability of biochar. Degradation products from OH-mediated degradation of CR were studied by ultraperformance liquid chromatography with mass spectrometric detector to establish degradation pathways. The ion-chromatographic analysis showed the formation of non-toxic inorganic acetate product, which suggests high potential of the newly fabricated adsorbent in the removal of CR.

摘要

刚果红(CR)是纺织产品的前体,也是备受关注的污染物,已污染了水生环境。在此,我们探索了介孔纳米零价锰(nZVMn)与海枣叶生物炭(PBC)复合材料的合成,用于从水中去除CR。在[CR]=20mg/L且[PBC]=[nZVMn/PBC]=500mg/L时,nZVMn/PBC对CR的吸附量为117.647mg/g,而PBC对CR的吸附量为25.316mg/g。[nZVMn/PBC]、[CR]和pH值的变化影响了CR的吸附。Freundlich吸附等温线和准一级动力学模型最能拟合CR的吸附。nZVMn/PBC与HO的耦合促进了CR的去除,这可能是由于羟基自由基(OH)的形成,导致CR的去除率达到95%,而单独使用nZVMn/PBC时CR的去除率为77%。OH清除剂抑制了CR的去除。nZVMn/PBC表现出良好的可重复使用性,在高达第七个处理周期时仍能高效去除CR。结果表明,nZVMn提高了生物炭的性能以及热稳定性和可重复使用性。通过超高效液相色谱-质谱检测器研究了OH介导的CR降解产物,以确定降解途径。离子色谱分析表明形成了无毒的无机乙酸盐产物,这表明新制备的吸附剂在去除CR方面具有很大潜力。

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