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11.
潮土细菌及真菌群落对化肥减量配施有机肥和秸秆的响应   总被引:6,自引:0,他引:6  
为了研究化肥减量配施有机肥和秸秆对华北麦玉轮作田潮土细菌和真菌群落的影响,在天津市宁河区试验基地开展田间定位施肥试验,采用Illumina高通量测序技术比较了5种施肥模式(单施化肥处理,F;化肥减施处理,FR;化肥减量与秸秆配施处理,FRS;化肥减量与有机肥配施处理,FRO;化肥减量与有机肥和秸秆配施处理,FROS)下土壤细菌及真菌群落的组成、多样性和结构差异,并结合土壤理化性质分析,探究不同施肥处理下驱动细菌和真菌群落变化的关键土壤环境因子.结果表明,FRO处理显著提高了土壤SOM含量.FROS处理的TP含量显著高于FRS处理,增加了13.33%.FRO和FROS处理AP含量较其它处理显著增加,NH4+-N含量显著高于化肥处理(F和FR).各施肥处理土壤中优势细菌门类均为变形菌门(Proteobacteria)、放线菌门(Actinobacteria)、绿弯菌门(Chloroflexi)和酸杆菌门(Acidobacteria),优势真菌门类均为子囊菌门(Ascomycota).在化肥减量配施有机肥(FRO)的基础上添加秸秆(FROS)显著降低了放线菌门(Actinobacteria)的相对丰度.FRS和FROS处理均显著降低了芽单胞菌门(Gemmatimonadetes)的相对丰度.FROS处理显著提高了浮霉菌门(Planctomycetes)和疣微菌门(Verrucomicrobia)的相对丰度.对于真菌群落而言,有机肥(FRO和FROS)的施入显著提高了子囊菌门(Ascomycota)的相对丰度.与FR处理相比,FROS处理显著降低了被孢菌门(Mortierellomycota)和油壶菌门(Olpidiomycota)的相对丰度,且FRS处理同样显著降低了油壶菌门(Olpidiomycota)的相对丰度.FROS处理的细菌群落Shannon多样性指数显著高于F和FR处理,分别增加了1.26%和1.25%,Chao1指数较F处理显著增加了4.51%,细菌Shannon多样性指数与AP和NH4+-N含量显著正相关(P<0.05).与FR处理相比,FRS、FRO和FROS处理显著降低了真菌群落Shannon多样性指数,分别达到29.85%、24.94%和25.73%,真菌Shannon多样性指数与AP含量显著负相关(P<0.05).细菌群落结构在FROS处理下显著区别于F、FR和FRO处理,土壤SM、TP、pH和AP是导致细菌群落结构变化的主要驱动因子;真菌群落结构在FRO和FROS处理下显著区别于F和FR处理,真菌群落结构变化主要受土壤TN、AP和TP的驱动.综上所述,添加有机肥和秸秆改变了土壤理化性质,进而改变了土壤细菌和真菌群落组成,土壤真菌对有机物料的敏感程度高于细菌,细菌和真菌群落结构均受到土壤P的调控,在潮土农业耕作中应引起充分重视.  相似文献   
12.
挥发性有机物(VOCs)大量排放已成为日益严重的环境问题,为了实现VOCs的高效去除,本文采用自蔓延燃烧合成法制备了一系列锰铈复合氧化物催化剂,将稳恒直流电场引入典型VOCs气体苯的催化氧化过程,并基于不同电场条件下催化剂的理化性质表征结果进行机理分析.实验结果表明,MnxCey催化剂对含苯废气的去除有良好的效果,稳恒直流电场显著促进了催化剂的活性,其中Mn1Ce3的催化性能最佳,电流为5 mA时,Mn1Ce3催化剂在155℃可达到50%的苯转化率,在202.4℃可达到90%的苯转化率,对应的转化温度T50T90比传统方法分别降低了62.4℃和48.3℃,且电场中的反应活化能由52.32 kJ·mol-1降低至32.31 kJ·mol-1.根据实验现象及表征结果,发现协同效应与活性位点的快速持续再生及活性氧物种的转化有关,由此提出苯在MnxCey催化剂上的氧化机理及电场协同催化的反应模型.  相似文献   
13.
Carbon–silica materials with hierarchical pores consisting of micropores and mesopores were prepared by introducing nanocarbon microspheres derived from biomass sugar into silica gel channels in a hydrothermal environment.The physicochemical properties of the materials were characterized by nitrogen physical adsorption(BET),scanning electron microscopy(SEM),and thermogravimetric(TG),and the adsorption properties of various organic waste gases were investigated.The results showed that microporous carbon materials were introduced successfully into the silica gel channels,thus showing the high adsorption capacity of activated carbon in high humidity organic waste gas,and the high stability and mechanical strength of the silica gel.The dynamic adsorption behavior confirmed that the carbon–silica material had excellent adsorption capacity for different volatile organic compounds(VOCs).Furthermore,the carbon–silica material exhibited excellent desorption characteristics:adsorbed toluene was completely desorbed at 150℃,thereby showing superior regeneration characteristics.Both features were attributed to the formation of hierarchical pores.  相似文献   
14.
The performance of Ce-OMS-2 catalysts was improved by tuning the fill percentage in the hydrothermal synthesis process to increase the oxygen vacancy density. The Ce-OMS-2 samples were prepared with different fill percentages by means of a hydrothermal approach (i.e. 80%, 70%, 50% and 30%). Ce-OMS-2 with 80% fill percentage (Ce-OMS-2-80%) showed ozone conversion of 97%, and a lifetime experiment carried out for more than 20?days showed that the activity of the catalyst still remained satisfactorily high (91%). For Ce-OMS-2-80%, Mn ions in the framework as well as K ions in the tunnel sites were replaced by Ce4+, while for the others only Mn ions were replaced. O2-TPD and H2-TPR measurements proved that the Ce-OMS-2-80% catalyst possessed the greatest number of mobile surface oxygen species. XPS and XAFS showed that increasing the fill percentage can reduce the AOS of Mn and augment the amount of oxygen vacancies. The active sites, which accelerate the elimination of O3, can be enriched by increasing the oxygen vacancies. These findings indicate that increasing ozone removal can be achieved by tuning the fill percentage in the hydrothermal synthesis process.  相似文献   
15.
F-V_2 O_5-WO3/Ti02 catalysts were prepared by the impregnation method.As the content of F ions increased from 0.00 to 0.35 wt.%,the NO conversion of F-V_2 O_5-WO_3/TiO_2 catalysts initially increased and then decreased.The 0.2 F-V_2 O_5-WO_3/TiO_2 catalyst(0.2 wt.% F ion)exhibited the best denitration(De-NOx) performance,with more than 95% NO conversion in the temperature range 160-360℃,and 99.0% N2 selectivity between 110 and 280℃.The addition of an appropriate amount of F ions eroded the surface morphology of the catalyst and reduced its grain size,thus enhancing the NO conversion at low temperature as well as the sulfur and water resistance of the V_2 O_5-WO3/Ti02 catalyst.After selective catalytic reduction(SCR) reaction in a gas flow containing SO_2 and H_2 O,the number of NH3 adsorption sites,active component content,specific surface area and pore volume decreased to different degrees.Ammonium sulfate species deposited on the catalyst surface,which blocked part of the active sites and reduced the NO conversion performance of the catalyst.On-line thermal regeneration could not completely recover the catalyst activity,although it prolonged the cumulative life of the catalyst.In addition,a mechanism for the effects of S02 and H_2 O on catalyst NO conversion was proposed.  相似文献   
16.
Changes in water quality from source water to finished water and tap water at two conventional drinking water treatment plants(DWTPs) were monitored.Beside the routine water quality testing,Caenorhabditis elegans-based toxicity assays and the fluorescence excitation–emission matrices technique were also applied.Both DWTPs supplied drinking water that met government standards.Under current test conditions,both the investigated finished water and tap water samples exhibited stronger lethal,genotoxic and reprotoxic potential than the relative source water sample,and the tap water sample was more lethal but tended to be less genotoxic than the corresponding finished water sample.Meanwhile,the nearly complete removal of tryptophan-like substances and newly generated tyrosine-like substances were observed after the treatment of drinking water,and humic-like substances were identified in the tap water.Based on these findings,toxic pollutants,including genotoxic/reproductive toxicants,are produced in the drinking water treatment and/or distribution processes.Moreover,further studies are needed to clarify the potentially important roles of tyrosine-like and humic-like substances in mediating drinking water toxicity and to identify the potential sources of these contaminants.Additionally,tryptophan-like fluorescence may be adopted as a useful parameter to monitor the treatment performance of DWTPs.Our observations provided insights into the importance of utilizing biotoxicity assays and fluorescence spectroscopy as tools to complement the routine evaluation of drinking water.  相似文献   
17.
Ozone (O3), as a harmful air pollutant, has been of wide concern. Safe, efficient, and economical O3 removal methods urgently need to be developed. Catalytic decomposition is the most promising method for O3 removal, especially at room temperature or even subzero temperatures. Great efforts have been made to develop high-efficiency catalysts for O3 decomposition that can operate at low temperatures, high space velocity and high humidity. First, this review describes the general reaction mechanism of O3 decomposition on noble metal and transition metal oxide catalysts. Then, progress on the O3 decomposition performance of various catalysts in the past 30 years is summarized in detail. The main focus is the O3 decomposition performance of manganese oxides, which are divided into supported manganese oxides and non-supported manganese oxides. Methods to improve the activity, stability, and humidity resistance of manganese oxide catalysts for O3 decomposition are also summarized. The deactivation mechanisms of manganese oxides under dry and humid conditions are discussed. The O3 decomposition performance of monolithic catalysts is also summarized from the perspective of industrial applications. Finally, the future development directions and prospects of O3 catalytic decomposition technology are put forward.  相似文献   
18.
CuSO_4/TiO_2 catalysts with high catalytic activity and excellent resistant to SO_2 and H_2 O,were thought to be promising catalysts used in Selective catalytic reduction of nitrogen oxides by NH_3.The performance of catalysts is largely affected by calcination temperature.Here,effects of calcination temperature on physicochemical property and catalytic activity of CuSO_4/TiO_2 catalysts were investigated in depth.Catalyst samples calcined at different temperatures were prepared first and then physicochemical properties of the catalyst were characterized by N2 adsorption-desorption,X-ray diffraction,thermogravimetric analysis,Raman spectra,Fourier-transform infrared spectroscopy,X-ray photoelectron spectroscopy,temperature-pro grammed desorption of NH_3,temperature-programmed reduction of H_2 and in situ diffuse reflectance infrared Fourier transform spectroscopy.Results revealed that high calcination temperature had three main effects on the catalyst.First,sintering and anatase transform into rutile with increase of calcination temperature,causing a decrement of specific surface area.Second,decomposition of CuSO_4 under higher calcination temperature,resulting in disappears of Br(?)nsted acid sites(S-OH),which had an adverse effect on surface acidity.Third,CuO from the decomposition of CuSO_4 changed surface reducibility of the catalyst and favored the process of NH_3 oxidation to nitrogen oxides(NO_x).Thus,catalytic activity of the catalyst calcined under high temperatures(≥600℃) decreased largely.  相似文献   
19.
Tri(2-chloroethyl) phosphate (TCEP) with the initial concentration of 5 mg/L was degraded by UV/H2O2 oxidation process. The removal rate of TCEP in the UV/H2O2 system was 89.1% with the production of Cl? and PO43? of 0.23 and 0.64 mg/L. The removal rate of total organic carbon of the reaction was 48.8% and the pH reached 3.3 after the reaction. The oxidative degradation process of TCEP in the UV/H2O2 system obeyed the first order kinetic reaction with the apparent rate constant of 0.0025 min?1 (R2=0.9788). The intermediate products were isolated and identified by gas chromatography-mass spectrometer. The addition reaction of HO? and H2O and the oxidation reaction with H2O2 were found during the degradation pathway of 5 mg/L TCEP in the UV/H2O2 system. For the first time, environment risk was estimated via the “ecological structure activity relationships” program and acute and chronic toxicity changes of intermediate products were pointed out. The luminescence inhibition rate of photobacterium was used to evaluate the acute toxicity of intermediate products. The results showed that the toxicity of the intermediate products increased with the increase of reaction time, which may be due to the production of chlorine compounds. Some measures should be introduced to the UV/H2O2 system to remove the highly toxic Cl-containing compounds, such as a nanofiltration or reverse osmosis unit.  相似文献   
20.
为描述草海湿地DOM(dissolved organic matter,溶解性有机物)荧光特征,探究其对PFASs(per-and polyfluoroalkyl substances,全氟及多氟化合物)环境行为造成的影响,利用超高效液相色谱-质谱联用技术和三维荧光光谱技术,结合平行因子分析,开展DOM光谱学特性研究,分析ρ(DOM)与ρ(PFASs)的相关关系.结果表明:①草海湿地中共解析出3类4种荧光组分,分别为类腐殖酸[λEx(360 nm)/λEm(450 nm)]、长波段腐殖质[λEx(400 nm)/λEm(510 nm)]、类富里酸[λEx(330 nm)/λEm(400 nm)]和类色氨酸[λEx(280 nm)/λEm(350 nm)],贡献率分别为48.6%、23.6%、22.9%和4.9%,其中类腐殖质总贡献率高达72.2%.在农业生产和人类活动的影响下,总荧光强度大致呈现从入湖区向出湖区逐渐降低、湖心区略高的趋势.②在草海湿地表层水中共检出了12种PFASs,ρ(PFASs)为233.18 ng/L,每种平均值为19.43 ng/L,PFBA(perfluorobutanoic acid,全氟丁酸)是主要污染物;草海湿地入湖区点源影响特征明显,生活污水和农业生产用水是主要的潜在污染源.③相关性分析结果显示,各荧光组分含量均与ρ(PFBS)(potassium perfluorobutanesulfonate,全氟丁烷磺酸)负相关;类色氨酸含量与ρ(PFHpA)(perfluororoheptanoic acid,全氟庚酸)负相关,与ρ(PFTriDA)(perfluorotrideanoic acid,全氟十三酸)则显著正相关.研究显示,草海湿地水体腐殖化程度高,外源特征明显,共检出12种PFASs,初步揭示了草海湿地水环境中ρ(DOM)与ρ(PFASs)的相关关系,其受水体性质及化合物结构等差异的影响,有待进一步开展深入研究.   相似文献   
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