Gu Kaiyuan, Yang Xiongwei, Yan Xing, He Chenggang, Mao Wanchong, Xiao Fengkun, Wei Xiaomeng, Fu Xinxi, Jiang Yonglei
Yunnan Academy of Tobacco Agricultural Sciences, Kunming, 650021, China.
College of Agronomy and Biotechnology, Southwest University, Chongqing, 400715, China.
Environ Sci Pollut Res Int. 2024 Mar;31(11):17052-17063. doi: 10.1007/s11356-024-32191-7. Epub 2024 Feb 9.
Improving the adsorption performance of wetland fillers is of great significance for enhancing pollutant removal in constructed wetlands. Currently, limited by complex preparation processes and high costs, large numbers of high adsorption fillers studied in lab are difficult to be applied in practical engineering. In this study, a newly low-cost and efficient phosphorus removal composite wetland filler (CFB) is prepared by using industrial and agriculture waste (steel slag and oyster shells) and natural ore (volcanic rock) as raw materials. The results show that phosphorus removal efficiency was largely enhanced by synergistic effects of steel slag, oyster shells, and volcanic rock, and it was mainly influenced by the proportion of each component of CFB. Based on the fitting of the classical isothermal equation, the adsorption capacity of CFB is 18.339 mg/g. The adsorption of phosphorus by CFB is endothermic and spontaneous, and there are heterogeneous surfaces and multi-layer adsorption processes, as well as pH value and temperature, are free from the influence on CFB phosphorus removal. During the practical wastewater application experiments, the phosphorus removal rate of the CFB-filled constructed wetland apparatus (CW-A) can reach 94.89% and is free from the influence on the removal of other pollutants (COD, TN, and NH-N) by the system. Overall, the prepared CFB is of excellent decontamination effect, an extremely simple preparation process, low cost, and sound practical engineering application potential, providing new ideas and approaches for enhancing the phosphorus removal capacity and waste resource utilization of constructed wetland systems.
提高湿地填料的吸附性能对于增强人工湿地中污染物的去除具有重要意义。目前,受复杂制备工艺和高成本的限制,实验室中研究的大量高吸附性填料难以应用于实际工程。本研究以工农业废弃物(钢渣和牡蛎壳)和天然矿石(火山岩)为原料,制备了一种新型低成本高效除磷复合湿地填料(CFB)。结果表明,钢渣、牡蛎壳和火山岩的协同作用大大提高了除磷效率,且主要受CFB各组分比例的影响。基于经典等温方程拟合,CFB的吸附容量为18.339mg/g。CFB对磷的吸附是吸热且自发的,存在非均相表面和多层吸附过程,pH值和温度对CFB除磷无影响。在实际废水应用实验中,填充CFB的人工湿地装置(CW-A)的除磷率可达94.89%,且对系统中其他污染物(COD、TN和NH-N)的去除无影响。总体而言,制备的CFB具有优异的去污效果、极其简单的制备工艺、低成本以及良好的实际工程应用潜力,为提高人工湿地系统的除磷能力和废弃物资源利用提供了新思想和新途径。