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嵌入含多孔纤维素天然木材中的镍掺杂二硫化钼用于四环素的压电催化降解。

Ni-doped MoS embedded in natural wood containing porous cellulose for piezo-catalytic degradation of tetracycline.

作者信息

Huo Bingjie, Wang Jingxue, Wang Zichen, Liu Chao, Hao Wenjing, Wang Yinglong, Cui Peizhe, Qi Jianguang, Gao Jun, Yang Jingwei, Meng Fanqing

机构信息

College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

College of Chemical and Environmental Engineering, Shandong University of Science and Technology, Qingdao 266590, China.

出版信息

Int J Biol Macromol. 2023 Apr 1;233:123589. doi: 10.1016/j.ijbiomac.2023.123589. Epub 2023 Feb 9.

Abstract

Wood is a natural material with low cost and easy recovery, which porous, layered, excellent structure and mechanical properties make it possible to apply in wastewater treatment. We have successfully grown MoS on natural wood containing porous cellulose and introduced the high conductivity circuit path provided by Ni nanoparticles to construct a new piezoelectric three-dimensional wood block for the efficient degradation of tetracycline. Ni/MoS/Wood exhibited excellent piezo-catalytic degradation performance, and the degradation rate of tetracycline reached 95.96 % (k = 0.0411 min) under ultrasonic vibration. After 5 cycles, the degradation rate still reached 90.20 %. In addition, Ni/MoS/Wood was used as the reactor filler to degrade tetracycline through piezoelectric response triggered by hydrodynamic force, and the degradation rate reached 90.27 % after 60 min. Further, the mechanism and the possible degradation pathways of tetracycline degradation were proposed. This low-cost, recyclable and stable three-dimensional wood block piezoelectric material provides a new idea for the practical application of wastewater treatment.

摘要

木材是一种成本低且易于回收的天然材料,其多孔、分层的结构以及优异的机械性能使其能够应用于废水处理。我们已成功在含有多孔纤维素的天然木材上生长出二硫化钼,并引入由镍纳米颗粒提供的高导电电路路径,构建了一种新型压电三维木块,用于高效降解四环素。镍/二硫化钼/木材表现出优异的压电催化降解性能,在超声振动下,四环素的降解率达到95.96%(k = 0.0411 min⁻¹)。经过5个循环后,降解率仍达到90.20%。此外,镍/二硫化钼/木材被用作反应器填料,通过水力触发的压电响应来降解四环素,60分钟后降解率达到90.27%。进一步提出了四环素降解的机理及可能的降解途径。这种低成本、可回收且稳定的三维木块压电材料为废水处理的实际应用提供了新思路。

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