Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.
Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.
J Environ Sci (China). 2020 Mar;89:194-205. doi: 10.1016/j.jes.2019.09.017. Epub 2019 Oct 31.
A newly designed aluminum hydroxide gel-coated nanoscale zero-valent iron (AHG@NZVI) with enhanced activity and dispersibility of NZVI was successfully synthesized. The AHG@NZVI composite was synthesized via control of the surface AHG content. AHG@NZVI-1, AHG@NZVI-2 and AHG@NZVI-3 were prepared under centrifugal mixing speeds of 1000, 2000 and 4000 r/min, respectively. The activity of AHG@NZVI was evaluated by its tetracycline (TC) removal efficiency. The effects of AHG content, pH value, reaction temperature, and presence of competitive anions on TC removal were investigated. TC could be removed by both adsorption and chemical reduction on AHG@NZVI-2 (centrifugal speed 2000 r/min) in a short time with high removal efficiency (≥98.1%) at the optimal conditions. Such excellent performance can be attributed to a synergistic interaction between aluminum hydroxide gel and NZVI: (1) AHG could enhance the stability and dispersity of NZVI; (2) aluminum hydroxide gel could absorb a certain amount of TC and Fe/Fe, which facilitated the mass transfer of TC onto the NZVI surface, resulting in acceleration of the reduction rate of TC by the AHG@NZVI composite; and (3) AHG-Fe/Fe could absorb a certain amount of TC by flocculation. The kinetics of TC removal by AHG@NZVI composite was found to follow a two-parameter pseudo-first-order model. The presence of competitive anions slightly inhibited the activity of AHG@NZVI systems for TC removal. Overall, this study provides a promising alternative material and environmental pollution management option for antibiotic wastewater treatment.
一种新设计的具有增强的纳米零价铁(NZVI)活性和分散性的氢氧化铝凝胶包覆纳米零价铁(AHG@NZVI)成功合成。通过控制表面 AHG 含量来合成 AHG@NZVI 复合材料。在分别为 1000、2000 和 4000 r/min 的离心混合速度下制备 AHG@NZVI-1、AHG@NZVI-2 和 AHG@NZVI-3。通过其四环素(TC)去除效率评价 AHG@NZVI 的活性。考察了 AHG 含量、pH 值、反应温度和共存竞争阴离子对 TC 去除的影响。在最佳条件下,TC 可以通过吸附和化学还原同时在 AHG@NZVI-2(离心速度为 2000 r/min)上短时间内被去除,去除效率高(≥98.1%)。这种优异的性能可归因于氢氧化铝凝胶和 NZVI 之间的协同相互作用:(1)AHG 可以增强 NZVI 的稳定性和分散性;(2)氢氧化铝凝胶可以吸附一定量的 TC 和 Fe/Fe,促进 TC 向 NZVI 表面的传质,从而加速 AHG@NZVI 复合材料对 TC 的还原速率;(3)AHG-Fe/Fe 可以通过絮凝吸附一定量的 TC。AHG@NZVI 复合材料去除 TC 的动力学符合双参数伪一级模型。共存的竞争阴离子对 AHG@NZVI 体系去除 TC 的活性略有抑制。总的来说,这项研究为抗生素废水处理提供了一种有前途的替代材料和环境污染管理选择。