首页> 外文期刊>Journal of Hazardous Materials >Bioremediation of cadmium polluted soil using a novel cadmium immobilizing plant growth promotion strain Bacillus sp. TZ5 loaded on biochar
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Bioremediation of cadmium polluted soil using a novel cadmium immobilizing plant growth promotion strain Bacillus sp. TZ5 loaded on biochar

机译:使用一种新型的固定化镉植物生长促进菌株芽孢杆菌(Bacillus sp。)对镉污染的土壤进行生物修复。 TZ5装载在生物炭上

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摘要

Bioremediation of cadmium polluted soil using biochar (BC) and plant growth promotion bacteria (PGPB) have been widely concerned. In our study, a novel Cd immobilizing PGPB strain TZ5 was isolated based on the Cd immobilizing potential and plant growth promotion (PGP) traits. Further, changes of surface morphology and functional groups of TZ5 cells were observed after exposed to Cd2+ by SEM-EDS and FTIR analyses. Then, the strain TZ5 was successfully loaded on BC as biochemical composites material (BCM). Pot experiment indicated that the percentage of acetic acid-extractable Cd in BCM treatments significantly decreased by 11.34 % than control. Meanwhile, BCM significantly increased the dry weight of ryegrass by 77.78 %, and decreased the Cd concentration of ryegrass by 48.49 %, compared to control. Microbial counts and soil enzyme activities in rhizosphere were both significantly improved by BCM. Furthermore, the proportion of relative abundance of Bacillus genus was enhanced after treated by BCM, which indicated that the strain TZ5 was successfully colonized in the rhizosphere. This study provided a practical strategy for bioremediation of Cd contaminated soil.
机译:使用生物炭(BC)和植物生长促进细菌(PGPB)对镉污染土壤进行生物修复已受到广泛关注。在我们的研究中,基于镉的固定潜力和植物生长促进(PGP)性状,分离了一种新型的镉固定型PGPB菌株TZ5。此外,通过SEM-EDS和FTIR分析,在暴露于Cd2 +后,观察到TZ5细胞的表面形态和功能基团的变化。然后,菌株TZ5成功地作为生物化学复合材料(BCM)加载到BC上。盆栽试验表明,BCM处理中可提取乙酸的Cd的百分比显着降低了11.34%。同时,与对照相比,BCM显着增加了黑麦草的干重77.78%,并使黑麦草的Cd浓度降低了48.49%。 BCM显着改善了根际微生物数量和土壤酶活性。 BCM处理后,芽孢杆菌属的相对丰度增加,表明TZ5菌株成功定殖于根际。该研究为Cd污染土壤的生物修复提供了实用的策略。

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