Li Feili, Chen Cheng, Jin Hui, Ding Tianzheng, Feng Jianru, Qiu Wanting, Wang Qiaoli
College of Environment, Zhejiang University of Technology, Hangzhou 310032, PR China.
College of Environment, Zhejiang University of Technology, Hangzhou 310032, PR China.
J Hazard Mater. 2024 Oct 5;478:135424. doi: 10.1016/j.jhazmat.2024.135424. Epub 2024 Aug 5.
A critical consideration in the application of phytoremediation to remediate sludge soil contaminated with heavy metals is the potential for leaching risks that prevail prior to the efficient uptake of these metals by plants. The most cost-effective method is to use heavy metal stabilizers with selective adsorption. A novel amide-based COF material (COF-TH) has been synthesized as a heavy metal stabilizer for Pb. COF-TH exhibits significant selectivity for Pb in five-metal-mixed solutions, with a distribution coefficient K as high as 3279 mL·g, which was more than 7.3 times that of other heavy metals. The maximum adsorption capacity of COF-TH for Pb was 189 mg·g. The adsorption fitted Langmuir model and intra-particle diffusion model, and satisfied pseudo-second-order kinetic model. The excellent selectivity and adsorption performance originate from the complexation between abundant amide groups and Pb ions. Pot experiments and leaching assays confirm that COF-TH decreased Pb leachate concentrations by 77.8 % without significantly decreasing total phytoextracted amounts of other heavy metals, due to the high selectivity of COF-TH to Pb. Additionally, its positive impact on plant growth and microbial diversity makes it a promising soil remediation agent. This investigation offers a novel approach to mitigate the leaching risk of a specific heavy metal Pb during sludge land application by integrating soil phytoremediation with stabilization techniques.
将植物修复应用于修复受重金属污染的污泥土壤时,一个关键的考虑因素是在植物有效吸收这些金属之前普遍存在的淋溶风险。最具成本效益的方法是使用具有选择性吸附的重金属稳定剂。一种新型的基于酰胺的共价有机框架材料(COF-TH)已被合成作为铅的重金属稳定剂。COF-TH在五金属混合溶液中对铅表现出显著的选择性,分配系数K高达3279 mL·g,是其他重金属的7.3倍以上。COF-TH对铅的最大吸附容量为189 mg·g。吸附符合朗缪尔模型和颗粒内扩散模型,并满足准二级动力学模型。优异的选择性和吸附性能源于丰富的酰胺基团与铅离子之间的络合作用。盆栽试验和淋溶试验证实,由于COF-TH对铅的高选择性,COF-TH使铅渗滤液浓度降低了77.8%,而其他重金属的总植物提取量没有显著降低。此外,它对植物生长和微生物多样性的积极影响使其成为一种有前途的土壤修复剂。这项研究通过将土壤植物修复与稳定化技术相结合,提供了一种减轻污泥土地应用过程中特定重金属铅淋溶风险的新方法。