聚丙烯酰胺
代谢途径
生物化学
化学
栅藻
固碳
氧化磷酸化
水解
生物降解
细胞外
代谢中间体
新陈代谢
絮凝作用
纤细眼虫
半胱氨酸
聚丙烯酰胺凝胶电泳
加氧酶
脂肪酸
固氮
莱茵衣藻
衣原体
生物合成
小球藻
生物量(生态学)
细菌
氨基酸
光合作用
能源
氮气
生物途径
生物
蛋白质生物合成
降级(电信)
作者
Beibei Zhang,Jun Lü,Zeyan Tao,Baoying Wang,Guang‐Hui Liu,Chunlei Wang,Dongwei Jia,Ying Liu,Jun Cheng
标识
DOI:10.1021/acs.iecr.5c04190
摘要
To treat polyacrylamide-containing oilfield wastewater in a green way, thick-walled and resistant Scenedesmus quadricauda cells were used to biodegrade and utilize polyacrylamide. Extracellular urease secreted by Scenedesmus quadricauda cells degraded polyacrylamide into poly(acrylic acid) and ammonia, which provided carbon and nitrogen sources for cell growth. Proteomics showed that metabolic pathways of ribosome synthesis and fatty acid oxidative decomposition were significantly downregulated, while those of amino acid synthesis and energy supply were significantly upregulated. This indicated that flocculation induced by polyacrylamide within 72 h inhibited gene transcription and proliferation, but biodegraded polyacrylamide after 72 h promoted biomass synthesis. 500 mg/L polyacrylamide was the most favorable concentration to biomass growth (with an increase by 15% to 2.4 g/L) and CO2 fixation for Scenedesmus quadricauda cells.
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