College of Life Science, Northeast Agricultural University, Harbin 150030, China.
College of Life Science, Northeast Agricultural University, Harbin 150030, China.
Bioresour Technol. 2019 Dec;293:122095. doi: 10.1016/j.biortech.2019.122095. Epub 2019 Aug 31.
The aim of this study was to remove heavy metals from composting system using a novel method combined functional bacteria with adsorbent materials. Four types of adsorbent materials were selected in this study. Results showed that Cr had significant removal efficiency, especially in sponge treatment (19.09%) and cotton treatment (26.36%). In addition, a significant movement of heavy metals from the outside to adsorbent column was also observed. RDA results indicated that bands 1, 2, 10, 18, 19 and 20 had negative correlations with six types of heavy metals, which contributed to the removal of heavy metals. Structural equation models further confirmed functional bacteria can directly affect the removal of Cu, Cd and Cr. In addition, it can also indirectly remove Pb and Cr by changing native bacteria. In summary, this study suggested the combination of functional bacteria and adsorbent materials was effective to remove heavy metals from composting system.
本研究旨在采用一种新型方法,利用功能细菌与吸附材料结合,从堆肥系统中去除重金属。本研究选择了四种吸附材料。结果表明,Cr 具有显著的去除效率,尤其是在海绵处理(19.09%)和棉花处理(26.36%)中。此外,还观察到重金属从外部向吸附柱显著迁移。RDA 结果表明,带 1、2、10、18、19 和 20 与六种重金属呈负相关,这有助于重金属的去除。结构方程模型进一步证实,功能细菌可以直接影响 Cu、Cd 和 Cr 的去除。此外,通过改变土著细菌,还可以间接去除 Pb 和 Cr。综上所述,本研究表明,功能细菌与吸附材料的结合可有效去除堆肥系统中的重金属。