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981.
Fulvic acid (FA), typical organic matter derived from humification process in composted sludge, possesses the potential to remediate mine soils contaminated by heavy metals. To understand the cooper (Cu) immobilizing process in open-pit mine soil induced by FA, changes of Cu speciation in mixture of open-pit mine soil and composted sludge was tracked over 180 days. It was observed that the organic-bound and residual fraction of Cu increased dramatically with the corresponding decrease of Fe/Mn oxide-bound Cu in the first 60 days, then the organic-bound fraction decreased to about its initial proportion during 60-120 days, while residual fraction still increased, and the proportion of residual Cu accounted for over 85% and became stable after 120 days. To reveal the mechanism of FA inducing Cu fixation on Albite which is the main phase of soil primary ore, two groups of Cu adsorption experiments with and without FA were designed. With the addition of FA, the adsorption capacity of Cu by Albite increased by 1.55 times and the content of residual Cu in Albite increased by 7.7 times. It was found that the Cu absorbed in smaller Albite particle induced by FA formed a secondary mineral——Chrysocolla, causing increase of residual fraction of Cu. These results revealed the mechanism: FA was absorbed on the surface of Albite after complexing with Cu ions in the solution, and then it induced Cu into the interlayer and pore channels of Albite. The Cu in the Albite was immobilized by forming Chrysocolla finally. 相似文献
982.
Rui Chen Ruili Guan Tao Wang Xiaoru Dong Kejun Du Juan Li Fang Zhao Jie Xu Bin Li Gang Zheng Xuefeng Shen Baohua Cao Jing Wang Michael Aschner Mingchao Liu 《环境科学学报(英文版)》2022,34(11):65-76
Lead (Pb) and manganese (Mn) are common neurotoxins. However, individuals are subject to co-exposures in real life, and it is therefore important to study these metals in combination. Weaning Sprague-Dawley rats were given ad libitum access to drinking water solutions containing Pb (100 mg/L), Mn (2.5 mg/mL) or a mixture, and each treatment had its own minocycline (50 mg/(kg•day)) supplement group. The results showed a significant difference in spatial memory and induction levels of hippocampal long-term potentiation (LTP) in all exposure groups when compared with controls. The combined-exposure group exhibited the most pronounced effect when compared with each of the single-metal exposure groups. Microglia displayed activation at day 3 after exposure alone or in combination, while astrocytes showed activation at day 5, accompanied by decreased expression levels of GLAST, GLT-1, and GS. Furthermore, the levels of glutamate in the synaptic cleft increased significantly. When microglial activation was inhibited by minocycline, the activation of astrocytes and the expression of GLAST, GLT-1, and GS were both reversed. In addition, upon minocycline treatment, hippocampal LTP impairment and cognitive injury were significantly alleviated in each of the exposure groups. These results suggest that combined exposure to Pb and Mn can cause greater effects on cognition and synaptic plasticity when compared to single-metal exposure groups. The reason may involve abnormal activation of microglia leading to excessive regulation of astrocytes, resulting in glutamate reuptake dysfunction in astrocytes and leading to perturbed cognition and synaptic plasticity. 相似文献
983.
984.
Li Xiaoyu Zhang Rusheng Huang Zheng Yao Dong Luo Lei Chen Jingfang Ye Wen Li Lingzhi Xiao Shan Liu Xiaolei Ou Xinhua Sun Biancheng Xu Mingzhong Yang Rengui Zhang Xian 《Food and environmental virology》2022,14(1):30-39
Food and Environmental Virology - In routine surveillance for avian influenza viruses (AIVs) in the environments of live poultry markets (LPMs), certain samples were positive for AIVs type A while... 相似文献
985.
高径比对生活污水好氧颗粒污泥系统的影响 总被引:1,自引:0,他引:1
采用3组高径比分别为3:1,4.5:1和6:1的SBR反应器(R1,R2,R3),以实际生活污水为进水并接种污水处理厂二沉池的回流污泥,研究SBR高径比对生活污水好氧颗粒污泥形成,同步去除碳,氮,磷性能的影响.结果表明,R1,R2,R3分别历时42,35和28d启动成功;颗粒污泥培养成熟后,其平均粒径逐渐趋于稳定,分别可达750,900,1100μm.启动阶段,R1,R2,R3对总氮的去除率分别为66%,61%,62%;颗粒污泥成熟后,R1,R2和R3出水均满足《城镇污水处理厂污染物排放标准》一级A标准,总氮去除率分别为79%,85%,91%,总磷去除率分别为91%,93%,94%,COD去除率分别为89%,92%,93%.进一步分析表明,在本试验研究范围内,SBR高径比增大有利于好氧颗粒污泥的形成,且利于增大颗粒粒径,进而提高沉淀性能和同步去除碳,氮,磷的性能. 相似文献
986.
低温SNAD颗粒污泥工艺启动方式 总被引:1,自引:1,他引:0
为研究启动方式对同步短程硝化、厌氧氨氧化耦合反硝化(SNAD)颗粒污泥工艺的影响,低温(12.7~18.3℃)条件下,R1和R2反应器分别通过先启动全程自养脱氮(CANON)工艺和先启动厌氧氨氧化耦合反硝化(SAD)工艺的方式逐步启动SNAD颗粒污泥工艺.结果表明,R1反应器启动成功后,氨氮几乎完全去除,总氮去除率达到86.7%.低氨氮浓度运行时,出水总氮去除率下降至75.3%,出水总氮浓度在10 mg·L~(-1)左右,NOB存在过量增殖现象,出水总氮浓度超过北京市水污染物排放标准一级A规定.R2反应器启动成功后,出水几乎不含氨氮,总氮去除率在89.1%左右,略高于R1反应器.低氨氮浓度运行时,出水氨氮浓度小于1.0 mg·L~(-1),出水总氮浓度小于6 mg·L~(-1),出水氨氮和总氮浓度满足地标一级A标准.先启动SAD工艺可以在启动初期通过厌氧运行将NOB逐渐淘汰出系统内,维持了系统的稳定性,为后续曝气启动SNAD工艺提供了良好的基础,维持了反应器的稳定运行,实现出水总氮长期排放达标. 相似文献
987.
采用腐殖酸(HA)作为溶解有机质的代表物,考察了HA浓度、p H、离子强度和溶解氧等环境因子对HA诱导双氯芬酸(DCF)光降解的影响。结果表明:DCF在纯水和HA溶液中的光化学降解过程均服从一级动力学规律。与DCF纯水溶液相比,当HA浓度由0增至5. 0 mg C/L时,DCF光降解速率增大,但当HA浓度高于5. 0 mg C/L时,DCF的光降解过程受到抑制。在环境浓度水平(5. 0 mg C/L)下,HA对DCF光降解的诱导作用随DCF初始浓度增大而逐渐减弱。同时,HA对DCF光降解的诱导作用还受到多种水环境因子的影响,其随p H增大先减弱后增强,随离子强度增大而增强,随溶解氧浓度增大而减弱。研究结果可为环境水体中药物的归趋预测及生态风险评价提供依据。 相似文献
988.
研究了紫外光照条件下不同来源的胡敏酸(HA),包括标准品胡敏酸(SPHA)、水稻土胡敏酸(SDHA)、泥炭土胡敏酸(NTHA)和落叶覆盖地胡敏酸(LYHA)对抗生素磺胺嘧啶(SDZ)光降解的影响以及主要活性物种对其光降解效能的贡献.结果表明:SDZ在纯水中及与HA共存条件下,其光降解过程均符合一级动力学模型,且HA对SDZ的光降解具有促进作用,其促进效果从大到小为SPHA > SDHA > NTHA > LYHA.通过羟基自由基(·OH)和单线态氧(1O2)淬灭实验发现,不同来源HA产生·OH和1O2的能力具有一定差异性.同等背景条件下,SPHA产生的·OH量相对较多,其对SDZ光降解的贡献率(26.97%)最大,而LYHA贡献相对较小(9.33%).同时,1O2对SDZ光降解起主导作用,其降解贡献率为41.33%~51.95%. 相似文献
989.
Chao Wang Feng Yu Mingyuan Zhu Changjin Tang Ke Zhang Dan Zhao Lin Dong Bin Dai 《环境科学学报(英文版)》2019,31(1):124-135
We first present preparation of MnOx–CeO_2–Al_2O_3 catalysts with varying Mn contents through a self-propagating high-temperature synthesis(SHS) method, and studied the application of these catalysts to the selective catalytic reduction of NOxwith NH3(NH_3-SCR).Using the catalyst with 18 wt.% Mn(18 MnCe1Al2), 100% NO conversion was achieved at 200°C and a gas hourly space velocity of 15384 hr-1, and the high-efficiency SCR temperature window, where NO conversion is greater than 90%, was widened to a temperature range of 150–300°C. 18 MnCe1Al2 showed great resistance to SO_2(100 ppm)and H_2O(5%) at 200°C. The catalysts were characterized using X-ray diffraction, X-ray photoelectron spectroscopy, Brunauer–Emmett–Teller(BET) analysis, scanning electron microscopy, Fourier transform infrared spectroscopy, and H_2 temperature programmed reduction. The characterization results showed that the surface atomic concentration of Mn increased with increasing Mn content, which led to synergism between Mn and Ce and improved the activity in the SCR reaction. 18 MnCe1Al2 has an extensive pore structure,with a BET surface area of approximately 135.4 m~2/g, a pore volume of approximately 0.16 cm~3/g, and an average pore diameter of approximately 4.6 nm. The SCR reaction on 18 MnCe1Al2 mainly followed the Eley-Rideal mechanism. The performances of the MnOx–CeO_2–Al_2O_3 catalysts were good, and because of the simplicity of the preparation process,the SHS method is applicable to their industrial-scale manufacture. 相似文献
990.
Metal ions and fiber are common compounds in the livestock and poultry manure,which will affect the fate of organic compounds in aqueous environment. However,limited research has addressed the effect of coexisting metal ions and fiber on the biodegradation of sulfonamide antibiotics. Accordingly, a compositing study was performed to assess the effect of metal ions(Fe3+and Cu2+) on the biodegradation of sulfadimethoxine sodium salt(SDM) in the presence of fiber. The enhanced adsorption of SDM onto fiber in the presence of metal ions can be attributed to the π+–π electron donor acceptor(EDA) interaction. The microbial(Phanerochaete chrysosprium) could easily attach onto fiber forming attached microbial, and the degradation rates of SDM of immobilized bacteria in the presence of Fe3 +were 100%, which were significantly higher than those of free bacteria(45%). This study indicates that Fe3 +and fiber could enhance the biodegradation of SDM. Fiber acts as adsorbent, carrier, and substrate which enhanced the removal of SDM. 相似文献