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201.
以喹诺酮类抗生素氧氟沙星(OFL)为目标物质,研究高铁酸钾(Fe (VI))对OFL的去除及氧化机理.采用高效液相色谱仪(HPLC)、液相色谱-质谱联用仪(UPLC-QTOF-MS)等方法,考察Fe (VI)投加量、pH值、温度和共存物质等因素对OFL降解效果的影响,分析反应动力学,计算过程中Fe (VI)的贡献率,识别Fe (VI)氧化OFL的产物并推测主要反应路径.结果表明:当Fe (VI)与OFL的物质的量比为40:1、pH值为8、温度为25℃时,反应30min后OFL的降解率达到92.38%,前5min快速反应阶段,OFL的降解符合伪二级反应动力学.反应过程的活化能为28.17kJ/mol.反应中Fe (VI)及中间高价态铁的贡献率为70.34%,且腐殖酸会显著抑制该反应.通过对氧化产物进行分析提出了Fe (VI)氧化OFL的3条主要路径.OFL经脱羧、去甲基、脱羰、羟基化等反应,实现其分子上喹诺酮取代基、哌嗪基环及恶嗪基环的开环.  相似文献   
202.
Fe(VI)/Fenton联合体系降解多环芳烃的效果良好,但其机理及降解路径仍需进一步被探究.采用荧光及GC-MS技术,考察弱酸条件下Fe(VI)降解菲的效果,并对比中性及碱性条件研究其氧化机理,进而分析Fe(VI)/Fenton联合体系对菲的作用机理及菲的降解路径.结果表明,弱酸条件下Fe(VI)氧化菲时,·OH参与反应较少,起氧化作用的可能为中间高价态铁.在该条件下,Fe(VI)对菲的降解效果稍差于中性及碱性,但此时Fe(VI)的高氧化性能可提高菲的矿化效果.联合氧化体系中,菲逐步被氧化、羟基化、脱碳、加氢而最终转化为CO2和H2O,主要的中间产物为邻苯二甲酸酯衍生物和9-芴甲醛衍生物.联合氧化体系可合理利用Fe(VI)氧化过程中产生的Fe(II),并发挥高价态铁与·OH在氧化性能上的优势,实现对菲及产物的降解与矿化.  相似文献   
203.
Anaerobic sludge from a sewage treatment plant was used to acclimatize microbial colonies capable of anaerobic oxidation of methane (AOM) coupled to sulfate reduction. Clone libraries and fluorescence in situ hybridization were used to investigate the microbial population. Sulfate-reducing bacteria (SRB) (e.g., Desulfotomaculum arcticum and Desulfobulbus propionicus) and anaerobic methanotrophic archaea (ANME) (e.g., Methanosaeta sp. and Methanolinea sp.) coexisted in the enrichment. The archaeal and bacterial cells were randomly or evenly distributed throughout the consortia. Accompanied by sulfate reduction, methane was oxidized anaerobically by the consortia of methane-oxidizing archaea and SRB. Moreover, CH4 and SO42 ? were consumed by methanotrophs and sulfate reducers with CO2 and H2S as products. The H3CSH produced by methanotrophy was an intermediate product during the process. The methanotrophic enrichment was inoculated in a down-flow biofilter for the treatment of methane and H2S from a landfill site. On average, 93.33% of H2S and 10.71% of methane was successfully reduced in the biofilter. This study tries to provide effective method for the synergistic treatment of waste gas containing sulfur compounds and CH4.  相似文献   
204.
运用透射电镜技术、电镜细胞化学技术、酶组织化学技术和JC-1荧光染色,观察不同浓度镉对河南华溪蟹(Sinopotamon henanense)肝胰腺线粒体的损伤.实验设对照组和5个染毒组:3.56、7 12、14.25、28.49和56.98 mg·L-1,处理时间为72 h.透射电镜观察显示,在低浓度组,线粒体轻度肿胀,部分线粒体外膜破裂,随染毒浓度的增加,线粒体水肿增加,嵴缩短甚至消失,直至线粒体破裂.酶组织化学检测显示,琥珀酸脱氢酶(succinic dehydrogenase,SDH)主要在细胞浆中表达,呈蓝紫色颗粒.SDH活性在3.56、7.12和14.25 mg·L-1浓度组中比对照组显著增加(p<0.05),而在28.49和56.98 mg·L-1浓度组中没有明显变化.SDH的亚细胞定位结果与酶组织化学检测的结果一致.JC-1荧光强度在3.56、7.12和14.25 mg·L-1浓度组比对照组显著增加(p<0.05).线粒体膜电位与SDH的活性有正相关性(r=0.736,p<0.05).结果显示,镉引起线粒体结构损伤、功能障碍,并与镉浓度具有剂量-效应关系.线粒体是镉细胞毒性的重要靶位.  相似文献   
205.
PM2.5 concentrations have dramatically reduced in key regions of China during the period 2013–2017, while O3 has increased. Hence there is an urgent demand to develop a synergetic regional PM2.5 and O3 control strategy. This study develops an emission-to-concentration response surface model and proposes a synergetic pathway for PM2.5 and O3 control in the Yangtze River Delta (YRD) based on the framework of the Air Benefit and Cost and Attainment Assessment System (ABaCAS). Results suggest that the regional emissions of NOx, SO2, NH3, VOCs (volatile organic compounds) and primary PM2.5 should be reduced by 18%, 23%, 14%, 17% and 33% compared with 2017 to achieve 25% and 5% decreases of PM2.5 and O3 in 2025, and that the emission reduction ratios will need to be 50%, 26%, 28%, 28% and 55% to attain the National Ambient Air Quality Standard. To effectively reduce the O3 pollution in the central and eastern YRD, VOCs controls need to be strengthened to reduce O3 by 5%, and then NOx reduction should be accelerated for air quality attainment. Meanwhile, control of primary PM2.5 emissions shall be prioritized to address the severe PM2.5 pollution in the northern YRD. For most cities in the YRD, the VOCs emission reduction ratio should be higher than that for NOx in Spring and Autumn. NOx control should be increased in summer rather than winter when a strong VOC-limited regime occurs. Besides, regarding the emission control of industrial processes, on-road vehicle and residential sources shall be prioritized and the joint control area should be enlarged to include Shandong, Jiangxi and Hubei Province for effective O3 control.  相似文献   
206.
Air pollution control policies in China have been experiencing profound changes, highlighting a strategic transformation from total pollutant emission control to air quality improvement, along with the shifting targets starting from acid rain and NOx emissions to PM2.5 pollution, and then the emerging O3 challenges. The marvelous achievements have been made with the dramatic decrease of SO2 emission and fundamental improvement of PM2.5 concentration. Despite these achievements, China has proposed Beautiful China target through 2035 and the goal of 2030 carbon peak and 2060 carbon neutrality, which impose stricter requirements on air quality and synergistic mitigation with Greenhouse Gas (GHG) emissions. Against this background, an integrated multi-objective and multi-benefit roadmap is required to provide decision support for China's long-term air quality improvement strategy. This paper systematically reviews the technical system for developing the air quality improvement roadmap, which was integrated from the research output of China's National Key R&D Program for Research on Atmospheric Pollution Factors and Control Technologies (hereafter Special NKP), covering mid- and long-term air quality target setting techniques, quantitative analysis techniques for emission reduction targets corresponding to air quality targets, and pathway optimization techniques for realizing reduction targets. The experience and lessons derived from the reviews have implications for the reformation of China's air quality improvement roadmap in facing challenges of synergistic mitigation of PM2.5 and O3, and the coupling with climate change mitigation.  相似文献   
207.
许恒韬  付小航  丰卫华  王挺 《环境科学》2023,44(6):3260-3269
为了探明海水体系中多相光催化降解污染物的机制和路径,研究了在可见光激发下不同介孔TiO2光催化降解纯水和模拟海水中四环素(TC)的过程,明确了不同盐离子对光催化降解过程的影响.结合自由基捕获实验,电子自旋共振(ESR)光谱和中间产物分析研究了光降解污染物的主要活性物种和模拟海水中TC降解途径.结果表明,模拟海水中TC光催化过程会受到显著抑制,手性介孔TiO2催化剂对TC光降解反应速率相比其在纯水体系降低了70%左右,而非手性TiO2光催化剂在海水体系中几乎不能降解TC.模拟海水中阴离子对光降解过程影响较小,但Mg2+和Ca2+存在会显著抑制光催化过程.无论在纯水还是模拟海水中,可见光激发后催化剂产生的活性物种都是空穴为主,因此模拟海水中降解路径与纯水体系中相同.盐离子不会抑制活性物种的产生,但Mg2+和Ca2+会富集在TC分子中电负性强的原子周边,阻碍空穴等对TC分子中电负性强原子的攻击,从而抑制了光催化降解效率.  相似文献   
208.
ANAMMOX菌利用零价铁转化氨和硝酸盐实验   总被引:4,自引:4,他引:0  
周健  黄勇  袁怡  刘忻  李祥  沈杰  杨朋兵 《环境科学》2015,36(12):4546-4552
研究在自养条件下,零价铁促使厌氧氨氧化菌同步转化硝酸盐和氨氮的性能.添加零价铁,温度35℃±0.5℃,进水p H7~8,进水氨氮、硝态氮分别为50~100 mg·L~(-1)、50~100 mg·L~(~(-1))条件下,添加ANAMMOX菌后硝酸盐的还原加快8.2倍,并且出现硝酸盐和氨的同步转化,其转化速率最高达17.2 mg·(L·h)~(-1).改变反应时间及进水n(NH+4):n(NO-3),两者摩尔转化比于1.2~3.5范围内波动,该反应并非基元反应.实验证明,氨与硝酸盐同步转化途径为零价铁作用首先将硝酸盐还原为亚硝酸盐,生成的亚硝酸盐再与氨发生厌氧氨氧化反应.  相似文献   
209.
The development of highly active carbon material catalysts in catalytic wet air oxidation(CWAO)has attracted a great deal of attention. In this study different carbon material catalysts(multi-walled carbon nanotubes,carbon fibers and graphite) were developed to enhance the CWAO of phenol in aqueous solution. The functionalized carbon materials exhibited excellent catalytic activity in the CWAO of phenol. After 60 min reaction,the removal of phenol was nearly100% over the functionalized multi-walled carbon,while it was only 14% over the purified multi-walled carbon under the same reaction conditions. Carboxylic acid groups introduced on the surface of the functionalized carbon materials play an important role in the catalytic activity in CWAO. They can promote the production of free radicals,which act as strong oxidants in CWAO. Based on the analysis of the intermediates produced in the CWAO reactions,a new reaction pathway for the CWAO of phenol was proposed in this study. There are some differences between the proposed reaction pathway and that reported in the literature. First,maleic acid is transformed directly into malonic acid. Second,acetic acid is oxidized into an unknown intermediate,which is then oxidized into CO2 and H2O. Finally,formic acid and oxalic acid can mutually interconvert when conditions are favorable.  相似文献   
210.
ZnBiYO4 was synthesized by a solid-state reaction method for the first time. The structural and photocatalytic properties of ZnBiYO4 were characterized by X-ray diffraction, scanning electron microscopy, X-ray photoelectron spectroscopy and UV–Vis diffuse reflectance. ZnBiYO4 crystallized with a tetragonal spinel structure with space group I41/A. The lattice parameters for ZnBiYO4 were a = b = 11.176479 Å and c = 10.014323 Å. The band gap of ZnBiYO4 was estimated to be 1.58 eV. The photocatalytic activity of ZnBiYO4 was assessed by photodegradation of methyl orange under visible light irradiation. The results showed that ZnBiYO4 had higher catalytic activity compared with N-doped TiO2 under the same experimental conditions using visible light irradiation. The photocatalytic degradation of methyl orange with ZnBiYO4 or N-doped TiO2 as catalyst followed first-order reaction kinetics, and the first-order rate constant was 0.01575 and 0.00416 min− 1 for ZnBiYO4 and N-doped TiO2, respectively. After visible light irradiation for 220 min with ZnBiYO4 as catalyst, complete removal and mineralization of methyl orange were observed. The reduction of total organic carbon, formation of inorganic products, SO42 − and NO3, and evolution of CO2 revealed the continuous mineralization of methyl orange during the photocatalytic process. The intermediate products were identified using liquid chromatography–mass spectrometry. The ZnBiYO4/(visible light) photocatalysis system was found to be suitable for textile industry wastewater treatment and could be used to solve other environmental chemical pollution problems.  相似文献   
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