降级(电信)
污染物
盐度
环境化学
环境科学
微生物降解
苯胺
化学
微生物
生态学
生物
细菌
计算机科学
有机化学
遗传学
电信
作者
Qi He,Bin Tan,Meng Li,Junhao Su,Bing Lin,Nanping Wu,Hao-nan Shen,Jiajing Chen,Qian Zhang
标识
DOI:10.1016/j.envres.2024.119162
摘要
In order to evaluate the impact of salinity gradients on the aniline biodegradation system, six reactors at salinity concentrations (0%-5%) were established. The results presented the salinity except for 5% imposed negligible effects on aniline degradation performance. Nitrification had prominent resistance to salinity (0%-1.5%) while were significantly restrained when salinity increased. The total nitrogen (TN) removal efficiency of Z4 (1.5%) was 20.5% higher than Z1 (0%) during the stable operation phase. Moreover, high throughput sequencing analysis showed that halophilic bacterium,such as Halomonas, Rhodococcus, remained greater survival advantages in high salinity system. The substantial enrichment of Flavobacterium, Dokdonella, Paracoccus observed in Z4 ensured its excellent nitrogen removal performance. The close cooperation among dominant functional bacteria was strengthened when salt content was below 1.5% while exceeding 1.5% led to the collapse of metabolic capacity through integrating the toxicity of aniline and high osmotic pressure.
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