Liu Qianjun, Luo Jiayi, Tang Jiepeng, Chen Zhiliang, Chen Zhaowei, Lin Qintie
School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou, 510006, PR China.
School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou, 510006, PR China.
Chemosphere. 2022 Nov;307(Pt 3):135853. doi: 10.1016/j.chemosphere.2022.135853. Epub 2022 Aug 7.
Iron oxide-lignin composites (GLS) were prepared based on the significant role of Fe-OM in the environmental behaviour of heavy metals and lignin binding with iron oxide preferentially in soil. GLS was applied in Cd/Pb immobilization and the stability under acid rain was investigated. The results show that the iron oxide appeared weakly crystalline or amorphous similar to 2-line ferrihydrite after the addition of lignin. Agglomerates of nanoparticles with higher adsorption capacity were observed for GLS. The mobility factor (MF) of Cd/Pb in the soil decreased rapidly after adding GLS. At the 3% dosage, the MF of Cd and Pb in the soil was decreased by 58.94% and 78.15% respectively, which was approximately 5 times that of goethite (GE). The mobile and exchangeable Cd/Pb were converted to organic, amorphous Fe oxide-bound and residue fractions. Under acid rain conditions, MF continues to decline for the GLS group, increasing the organic and amorphous Fe oxide-bound fractions, while for control group (CK) and GE, the trend was the opposite. Lignin could inhibit iron oxide dissolution and stabilize the combination of Cd/Pb and iron oxides in soil. The better stability performance of GLS for Cd/Pb may be related to the higher adsorption capacity and microstructural difference after iron oxide combined with lignin.
基于铁氧化物-有机质(Fe-OM)在重金属环境行为中的重要作用以及木质素在土壤中优先与铁氧化物结合的特性,制备了氧化铁-木质素复合材料(GLS)。将GLS应用于镉/铅的固定,并研究了其在酸雨条件下的稳定性。结果表明,添加木质素后,氧化铁呈现出类似于二线水铁矿的弱结晶或无定形状态。观察到GLS具有更高吸附容量的纳米颗粒团聚体。添加GLS后,土壤中镉/铅的迁移因子(MF)迅速下降。在3%的用量下,土壤中镉和铅的MF分别下降了58.94%和78.15%,约为针铁矿(GE)的5倍。可移动和可交换的镉/铅转化为有机态、无定形氧化铁结合态和残留态。在酸雨条件下,GLS组的MF继续下降,有机态和无定形氧化铁结合态组分增加,而对照组(CK)和GE的趋势则相反。木质素可以抑制氧化铁的溶解,并稳定土壤中镉/铅与铁氧化物的结合。GLS对镉/铅更好的稳定性可能与氧化铁与木质素结合后更高的吸附容量和微观结构差异有关。