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不溶性腐殖酸/电气石复合颗粒对矿山废水中铁和锰的动态吸附特性

Dynamic Adsorption Properties of Insoluble Humic Acid/Tourmaline Composite Particles for Iron and Manganese in Mine Wastewater.

作者信息

Liu Ling, Ma Jiadi, Yu Xiaowan, Zhang Tianyi, Mkandawire Vitumbiko, Li Xilin

机构信息

School of Civil Engineering, Liaoning Technical University, Fuxin 123000, China.

Information Industry Electronics Eleventh Design and Research Institute Technology Engineering Co., Ltd., Dalian Branch, Dalian 116000, China.

出版信息

Materials (Basel). 2022 Jun 19;15(12):4338. doi: 10.3390/ma15124338.

Abstract

Iron- and manganese-contaminated mine water is widespread around the world, and economical and efficient remediation has become a priority. Insoluble humic acid/tourmaline composite particles (IHA/TM) were prepared by combining inorganic tourmaline (TM) with the natural organic polymer humic acid (HA), and the effects of different calcination temperatures and calcination times of TM and IHA on the adsorption of Fe and Mn were analyzed. Based on the microscopic characterization of Scanning electron microscopy (SEM), Energy Dispersive Spectroscopy (EDS), Brunnauer-Emmet-Teller (BET), X-ray diffractometer (XRD) and Fourier transform infrared (FTIR), the simultaneous adsorption performance of IHA/TM on Fe and Mn was studied through dynamic adsorption tests, and a dynamic adsorption model was established. Adsorption regeneration experiments were carried out to further investigate the effectiveness of the composite particles in practical applications. The results show that, when the calcination temperature was 330 °C and the calcination time was 90 min, the removal rates of iron and manganese by the IHA/TM composite particles reached 99.85% and 99.51%, respectively. The curves for penetration of Fe and Mn ions into the IHA/TM composite particles were affected by the bed height, flow rate and influent concentration. Decreasing the flow rate, decreasing the influent concentration, or increasing the bed height prolonged the operation time of the dynamic column. If the bed height was too low, the penetration point was reached before the expected treatment was achieved, and when the bed height was too high, the removal of Fe and Mn was slow, and the utilization rate of the adsorbent was also reduced. If the flow rate was too low, longitudinal remixing easily occurred in the column. However, when the flow rate was too high, the speed of Fe and Mn ions passing through the adsorption layer increased, which reduced the total amount of adsorption. The increase in influent concentration not only reduces the removal rate, but also greatly shortens the total operation time of the dynamic column and reduces the treatment water. The dynamic process for the adsorption of Fe and Mn by IHA/TM was fitted best by the Thomas model. The adsorption column was continuously regenerated five times, and the results show that the IHA/TM composite particles were suitable for iron and manganese removal from mine wastewater. The research results will provide a reference for the effectiveness of the IHA/TM composite particles in practical applications.

摘要

含铁和锰的污染矿井水在全球广泛存在,经济高效的修复已成为当务之急。通过将无机电气石(TM)与天然有机聚合物腐殖酸(HA)结合制备了不溶性腐殖酸/电气石复合颗粒(IHA/TM),并分析了TM和IHA不同煅烧温度及煅烧时间对铁和锰吸附的影响。基于扫描电子显微镜(SEM)、能谱仪(EDS)、布鲁诺尔-埃米特-泰勒(BET)、X射线衍射仪(XRD)和傅里叶变换红外光谱(FTIR)的微观表征,通过动态吸附试验研究了IHA/TM对铁和锰的同步吸附性能,并建立了动态吸附模型。进行吸附再生实验以进一步研究复合颗粒在实际应用中的有效性。结果表明,当煅烧温度为330℃、煅烧时间为90min时,IHA/TM复合颗粒对铁和锰的去除率分别达到99.85%和99.51%。铁和锰离子进入IHA/TM复合颗粒的穿透曲线受床层高度、流速和进水浓度的影响。降低流速、降低进水浓度或增加床层高度可延长动态柱的运行时间。若床层高度过低,在达到预期处理效果前就会到达穿透点,而床层高度过高时,铁和锰的去除缓慢,吸附剂利用率也会降低。若流速过低,柱内易发生纵向返混。然而,当流速过高时,铁和锰离子通过吸附层的速度加快,吸附总量降低。进水浓度增加不仅降低去除率,还会大幅缩短动态柱的总运行时间并减少处理水量。IHA/TM对铁和锰的吸附动态过程最适合用托马斯模型拟合。吸附柱连续再生5次,结果表明IHA/TM复合颗粒适用于去除矿井废水中的铁和锰。研究结果将为IHA/TM复合颗粒在实际应用中的有效性提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec85/9231116/042970ac2566/materials-15-04338-g001.jpg

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