Anthraquinone-2-sulfonate(AQS) was employed in humus substitutes to evaluate the effects and influencing factors of U(VI) reduction by Shewanella oneidensis MR-1(S. oneidensis MR-1) under anaerobic condition. Th...Anthraquinone-2-sulfonate(AQS) was employed in humus substitutes to evaluate the effects and influencing factors of U(VI) reduction by Shewanella oneidensis MR-1(S. oneidensis MR-1) under anaerobic condition. The removal rate of U(VI) at 30 °C reaches 99.0% afterd 96 h with the p H value of 7.0 and AQS concentration of 1.0 mmol/L. The effective concentrations of AQS as the accelerator for U(VI) bioreduction are approximately 0.5-1.0 mmol/L. The bioreduction of U(VI) is inhibited when the concentration of AQS exceeds 2.0 mmol/L. The coexistence of ions, such as Cu2+, Cr6+, Mn2+, shows a remarkable negative effect on the U(VI) reduction, and Zn2+ shows less influence on the process compared with other tested ions. The U(VI) reduction is remarkably inhibited when the concentration of nitrate ion exceeds 1.0 mmol/L. Otherwise, no difference is found when the nitrate ion concentration is less than 0.5 mmol/L. Sulfate ion(5.0 mmol/L) slightly promotes the U(VI) reduction. Zero-valent iron(ZVI) promotes the U(VI) reduction by S. oneidensis, and the reduction rate improves with increasing the amount of ZVI in the range of 0-2.0 g/L. The XPS result indicates that uranium deposits on the cell surface are in U(VI) and U(IV) forms, and the majority of uranium in the solution is stable UO2.展开更多
The photochemical reaction process of anthraquinone-2-sodium sulfonate (AQS) in the mixture of water (H2O) and N-butylpyridinium tetrafluoroborate ([BPy] [BF4]) was studied using the laser flash photolysis techn...The photochemical reaction process of anthraquinone-2-sodium sulfonate (AQS) in the mixture of water (H2O) and N-butylpyridinium tetrafluoroborate ([BPy] [BF4]) was studied using the laser flash photolysis technique. Experimental results show that the excited triplet of AQS (3AQS*) could react rapidly with H2O and the transient absorption spectra greatly changed by increasing the volume fraction of the ionic liquid (VIL) in [BPy][BF4]/H2O mixtures. The absorbance at 510 nm increased gradually with increasing VIL when 0〈VIL〈0.1. By contrast, the absorbance decreased gradually when VIL〉0.1. Otherwise, the absorbance of the band near 380 nm steadily increased. The apparent kinetic parameters of transient species B and ^3AQS* are obtained approximately. 3AQS* abstracting hydrogen from [BPy]+ was also explored. It was deduced that the 350-420 nm band was the superposition of the peaks of 3AQS* and AQSH'. The two reactions of 3AQS* with [BPy][BF4] and H2O are a pair of competitive reactions. We also concluded that the entire reaction processes slow down in the case of high [BPy] [BF4] concentrations.展开更多
从受溴氨酸污染的泥土中分离出1株蒽醌染料中间体1-氨基蒽醌-2-磺酸(简称ASA-2)降解菌株GF3.经形态学观察和16S r DNA序列分析,鉴定该菌株为嗜吡啶红球菌.研究了该菌对ASA-2脱色的特性,并利用液相-质谱联用仪初步分析了ASA-2降解终产物...从受溴氨酸污染的泥土中分离出1株蒽醌染料中间体1-氨基蒽醌-2-磺酸(简称ASA-2)降解菌株GF3.经形态学观察和16S r DNA序列分析,鉴定该菌株为嗜吡啶红球菌.研究了该菌对ASA-2脱色的特性,并利用液相-质谱联用仪初步分析了ASA-2降解终产物.研究结果表明,外加蛋白胨、酵母膏和水解酪蛋白均能促进ASA-2的生物脱色,其中蛋白胨促进作用最为明显.进一步的研究发现多种氨基酸可加速ASA-2的生物脱色过程,其中L-亮氨酸促进效果最好.ASA-2脱色的最适环境条件为p H 8.0、30℃和150 r·min^(-1).最适条件下,菌株GF3可使108 mg·L-1的ASA-2在30 h内脱色率达95%以上,TOC去除率为62%.紫外-可见波谱显示,当ASA-2水溶液由红色褪成无色时,ASA-2的特征吸收峰完全消失,并在340 nm产生了新峰.进一步分析发现,ASA-2降解终产物质荷比为260,初步推测产物为3-氨基-4-磺酸基邻苯二甲酸.此外,菌株GF3还可以降解溴氨酸、蒽醌-2-磺酸钠和蒽醌-2-羧酸.展开更多
基金Projects(1117508111475080)supported by the National Natural Science Foundation of China+3 种基金project(13JJ3078)supported by the Natural Science Foundation of Hunan ProvinceChinaProject(14k083)supported by the Innovation Platform Open Fund Project of University in Hunan ProvinceChina
文摘Anthraquinone-2-sulfonate(AQS) was employed in humus substitutes to evaluate the effects and influencing factors of U(VI) reduction by Shewanella oneidensis MR-1(S. oneidensis MR-1) under anaerobic condition. The removal rate of U(VI) at 30 °C reaches 99.0% afterd 96 h with the p H value of 7.0 and AQS concentration of 1.0 mmol/L. The effective concentrations of AQS as the accelerator for U(VI) bioreduction are approximately 0.5-1.0 mmol/L. The bioreduction of U(VI) is inhibited when the concentration of AQS exceeds 2.0 mmol/L. The coexistence of ions, such as Cu2+, Cr6+, Mn2+, shows a remarkable negative effect on the U(VI) reduction, and Zn2+ shows less influence on the process compared with other tested ions. The U(VI) reduction is remarkably inhibited when the concentration of nitrate ion exceeds 1.0 mmol/L. Otherwise, no difference is found when the nitrate ion concentration is less than 0.5 mmol/L. Sulfate ion(5.0 mmol/L) slightly promotes the U(VI) reduction. Zero-valent iron(ZVI) promotes the U(VI) reduction by S. oneidensis, and the reduction rate improves with increasing the amount of ZVI in the range of 0-2.0 g/L. The XPS result indicates that uranium deposits on the cell surface are in U(VI) and U(IV) forms, and the majority of uranium in the solution is stable UO2.
基金This work was supported by the National Natural Science Foundation of China (No.21173002) and the Anhui Provincial Natural Science Foundation, China (No.1308085MB20).
文摘The photochemical reaction process of anthraquinone-2-sodium sulfonate (AQS) in the mixture of water (H2O) and N-butylpyridinium tetrafluoroborate ([BPy] [BF4]) was studied using the laser flash photolysis technique. Experimental results show that the excited triplet of AQS (3AQS*) could react rapidly with H2O and the transient absorption spectra greatly changed by increasing the volume fraction of the ionic liquid (VIL) in [BPy][BF4]/H2O mixtures. The absorbance at 510 nm increased gradually with increasing VIL when 0〈VIL〈0.1. By contrast, the absorbance decreased gradually when VIL〉0.1. Otherwise, the absorbance of the band near 380 nm steadily increased. The apparent kinetic parameters of transient species B and ^3AQS* are obtained approximately. 3AQS* abstracting hydrogen from [BPy]+ was also explored. It was deduced that the 350-420 nm band was the superposition of the peaks of 3AQS* and AQSH'. The two reactions of 3AQS* with [BPy][BF4] and H2O are a pair of competitive reactions. We also concluded that the entire reaction processes slow down in the case of high [BPy] [BF4] concentrations.
文摘从受溴氨酸污染的泥土中分离出1株蒽醌染料中间体1-氨基蒽醌-2-磺酸(简称ASA-2)降解菌株GF3.经形态学观察和16S r DNA序列分析,鉴定该菌株为嗜吡啶红球菌.研究了该菌对ASA-2脱色的特性,并利用液相-质谱联用仪初步分析了ASA-2降解终产物.研究结果表明,外加蛋白胨、酵母膏和水解酪蛋白均能促进ASA-2的生物脱色,其中蛋白胨促进作用最为明显.进一步的研究发现多种氨基酸可加速ASA-2的生物脱色过程,其中L-亮氨酸促进效果最好.ASA-2脱色的最适环境条件为p H 8.0、30℃和150 r·min^(-1).最适条件下,菌株GF3可使108 mg·L-1的ASA-2在30 h内脱色率达95%以上,TOC去除率为62%.紫外-可见波谱显示,当ASA-2水溶液由红色褪成无色时,ASA-2的特征吸收峰完全消失,并在340 nm产生了新峰.进一步分析发现,ASA-2降解终产物质荷比为260,初步推测产物为3-氨基-4-磺酸基邻苯二甲酸.此外,菌株GF3还可以降解溴氨酸、蒽醌-2-磺酸钠和蒽醌-2-羧酸.