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1.
Metal oxides( Fe, Mn oxides) in natural surface coatings(biofilms and associated minerals) are believed to play a significant role n the fate and transport of trace metal in aquatic environments. Seasonal variation of Fe, Mn oxides and organic materials in surface oatings, which were developed periodically on glass slides in Nanhu Lake, Jilin Province, China over the time frame of three seasons,was investigated in order to understand the influence of metal oxides on Pb and Cd adsorption to heterogeneous surface coating materials(biofilm). Pb and Cd adsorption was measured under controlled laboratory conditions( mineral salts solution with defined speciation, ionic trength 0.05 mol/L, 25~C and pH 6.0). The classical Langmuir adsorption isotherm was applied to estimate equilibrium coefficients of Pb nd Cd adsorption to the surface coatings. In general, components in the surface coatings varied greatly with seasons altering and btained higher concentrations in summer while the content of iron oxides always exceeded that of manganese oxides. Correlation nalyses between the maximum adsorption of Pb and Cd and components in the surface coatings developed periodically indicated that Pb hase association with Mn oxides and Cd phase association with Fe oxides as well as Mn oxides were statistically significant. Effect of Mn xides on Cd adsorption was confirmed in view of its higher content in the surface coatings. The importance of ferromanganese oxides for b and Cd adsorption to the natural surface coatings developed in different seasons was evidenced.  相似文献   

2.
2,4,6-trinitrotoluene (TNT) red water from Chinese explosive industry was adsorbed by activated coke (AC) from lignite. Since the composition of TNT red water was very complicated, chemical oxygen demand (COD) was used as the index for evaluating the treatment efficiency. This study focused on the sorption kinetics and equilibrium sorption isotherms of AC for the removal of chemical oxygen demand (COD) from TNT red water, and the changes of water quality before and after adsorption were evaluated by using high performance liquid chromatograph (HPLC), UV-vis spectra and Gas Chromatography/Mass Spectroscopy (GC/MS). The results showed that the sorption kinetics of adsorbing COD from TNT red water onto AC was fitted well with the pseudo-second order model. The adsorption process was an exothermic and physical process. The sorption isotherm was in good agreement with Redlich–Peterson isotherm. At the conditions of initial pH, 20℃ and 3 hr of agitation, when the AC dosage was 160 g L-1, 64.8% of COD could be removed. The removal efficiencies of 2,4-dinitrotoluene-3-sulfonate (2,4-DNT-3-SO3-) and 2,4-dinitrotoluene-5-sulfonate (2,4-DNT-5-SO3-) were 80.5% and 84.3%, respectively. After adsorption, the acute toxicity of TNT red water reduced 81.8%, compared with that of unprocessed TNT red water.  相似文献   

3.
Pb adsorption capacities of Fe oxide, Mn oxide and organic materials in natural surface coatings (biofilms and associated minerals) collected in three lakes, two ponds and a river in Jilin Province, China and Cayuga Lake in US were studied. A novel extraction technique was employed to remove one or more component(s) from the surface coatings. Pb adsorption to surface coatings before and after extraction was performed to determine the adsorptive properties of the extracted component(s). The statistical analysis of observed Pb adsorption was carried out using nonlinear least squares fitting (NLSF) to estimate the Pb adsorption capacity of each component of surface coatings. For each body of water, the estimated Pb adsorption capacity of Mn oxide( mol Pb/mol Mn) was significantly higher than that of Fe oxide( mol Pb/ mol Fe). The value of estimated adsorption capacities of organic materials with the unit mol Pb per kg COD was similar to or less than that of Fe oxides with the unit mol Pb per mol Fe. Comparison of components of surface coatings in different waters showed that the estimated Pb adsorption capacities of components in surface coatings developed in different natural waters were different,especially for Mn oxides.  相似文献   

4.
The study focused on the effect of several typical competing solutes on removal of arsenic with Fe_2O_3 and AL_2O_3.The test results indicate that chloride,nitrate and sulfate did not have detectable effects,and that selenium(Ⅳ)(Se(Ⅳ))and vanadium(Ⅴ)(V(Ⅴ)) showed slight effects on the adsorption of As(Ⅴ)with Fe_2O_3.The results also showed that adsorption of As(Ⅴ)on AL_2O_3 was not affected by chloride and nitrate anions,but slightly by Se(Ⅳ)and V(Ⅴ)ions.Unlike the adsorption of As(Ⅴ)with Fe_2O_3,that with Fe_2O_3 was affected by the presence of sulfate in water solutions.Both phosphate and silica have significant adverse effects on the adsorption of As(Ⅴ)adsorption with Fe_2O_3 and Al_2O_3.Compared to the other tested anions,phosphate anion was found to be the most prominent solute affecting the As(Ⅴ)adsorption with Fe_2O_3 and Al_2O_3.In general,Fe_2O_3 has a better performance than Al_2O_3 in removal of As(Ⅴ)within a water environment where multi competing solutes are present.  相似文献   

5.
La-EDTA-Fe3O4 was prepared by a chemical co-precipitation method. The magnetic composite was characterized by transmission electron microscopy (TEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR). Furthermore, the adsorption properties of La-EDTA-Fe3O4 toward phosphate in water were investigated. The uptake rate of phosphate in water by La-EDTA-Fe3O4 was 3-1000 times than that of EDTA-Fe3O4 , and reached 97.8% at 7 hr. The adsorption process agreed well with the Freundlich model and kinetics studies showed that the adsorption of phosphate proceeds according to pseudo second-order adsorption kinetics. The maximum removal rate was achieved at pH 6.0-7.0. The La-EDTA-Fe3O4 had good adsorption properties and could be separated well from aqueous solution by a permanent magnet. Therefore, this nanomaterial has potential application for the removal of phosphate from large water bodies.  相似文献   

6.
The development of low-cost and efficient new mineral adsorbents has been a hot topic in recent years. In this study, Friedel’s salt (FS:3CaO·A12O3 ·CaCl2 ·10H2O), a hexagonal layered inorganic absorbent, was synthesized to remove Cd2+ from water. The adsorption process was simulated by Langmuir and Freundlich models. The adsorption mechanism was further analyzed with TEM, XRD, FT-IR analysis and monitoring of metal cations released and solution pH variation. The results indicated the adsorbent FS had an outstanding ability for Cd(Ⅱ) adsorption. The maximum adsorption capacity of the FS for Cd(Ⅱ) removal can reach up to 671.14 mg/g. The nearly equal numbers of Cd2+ adsorbed and Ca2+ released demonstrated that ion-exchange (both surface and inner) of the FS for Cd(Ⅱ) played an important role during the adsorption process. Furthermore, the surface of the FS after adsorption was microscopically disintegrated while the inner lamellar structure was almost unchanged. The behavior of Cd(Ⅱ) adsorption by FS was significantly affected by surface reactions. The mechanisms of Cd2+ adsorption by the FS mainly included surface complexation and surface precipitation. In the present study, the adsorption process was fitted better by the Langmuir isotherm model (R2 = 0.9999) than the Freundlich isotherm model (R2 = 0.8122). Finally, due to the high capacity for ion-exchange on the FS surface, FS is a promising layered inorganic adsorbent for the removal of Cd(Ⅱ) from water.  相似文献   

7.
In the study,the catalyst precursors of Ce-modified γ-MnO_2 were washed with deionized water until the pH value of the supernatant was 1,2,4 and 7,and the obtained catalysts were named accordingly.Under space velocity of 300,000 hr~(-1),the ozone conversion over the pH=7 catalyst under dry conditions and relative humidity of 65% over a period of 6 hr was 100% and 96%,respectively.However,the ozone decomposition activity of the pH=2 and 4 catalysts distinctly decreased under relative humidity of 65% compared to that under dry conditions.Detailed physical and chemical characterization demonstrated that the residual sulfate ions on the pH=2 and 4 catalysts decreased their hydrophobicity and then restrained humid ozone decomposition activity.The pH=2 and 4 catalysts had inferior resistance to high space velocity under dry conditions,because the residual sulfate ion on their surface reduced their adsorption capacity for ozone molecules and increased their apparent activation energies,which was proved by temperature programmed desorption of O_2 and kinetic experiments.Long-term activity testing,X-ray photoelectron spectroscopy and density functional theory calculations revealed that there were two kinds of oxygen vacancies on the manganese dioxide catalysts,one of which more easily adsorbed oxygen species and then became deactivated.This study revealed the detrimental effect of surface acid ions on the activity of catalysts under humid and dry atmospheres,and provided guidance for the development of highly efficient catalysts for ozone decomposition.  相似文献   

8.
Competitive and cooperative adsorption of arsenate and citrate on goethite   总被引:1,自引:1,他引:0  
The fate of arsenic in natural environments is influenced by adsorption onto metal (hydr)oxides. The extent of arsenic adsorption is strongly a ected by coexisting dissolved natural organic acids. Recently, some studies reported that there existed competitive adsorption between arsenate and citrate on goethite. Humic acid is known to interact strongly with arsenate by forming complexes in aqueous solution, hence it is necessary to undertake a comprehensive study of the adsorption of arsenate/citrate onto goethite in the presence of one another. The results showed that at the arsenate concentrations used in this study (0.006–0.27 mmol/L), citrate decreased arsenate adsorption at acidic pH but no e ect was observed at alkaline pH. In comparison, citrate adsorption was inhibited at acidic pH, but enhanced at alkaline pH by arsenate. This was probably due to the formation of complex between arsenate and citrate like the case of arsenate with humic acid. These results implied that the mechanism of the adsorption of arsenate and citrate onto goethite in the presence of one another involved not only competition for binding sites, but the cooperation between the two species at the watergoethite interface as well.  相似文献   

9.
The photocatalytic oxidation of gaseous chlorobenzene(CB) by the 365 nm-induced photocatalyst La/N–Ti O2, synthesized via a sol–gel and hydrothermal method, was evaluated. Response surface methodology(RSM) was used to model and optimize the conditions for synthesis of the photocatalyst. The optimal photocatalyst was 1.2La/0.5N–Ti O2(0.5) and the effects of La/N on crystalline structure, particle morphology, surface element content, and other structural characteristics were investigated by XRD(X-ray diffraction), TEM(Transmission Electron Microscopy), FTIR(Fourier transform infrared spectroscopy), UV–vis(Ultraviolet–visible spectroscopy), and BET(Brunauer Emmett Teller). Greater surface area and smaller particle size were produced with the co-doped Ti O2 nanotubes than with reference Ti O2. The removal of CB was effective when performed using the synthesized photocatalyst,though it was less efficient at higher initial CB concentrations. Various modified Langmuir-Hinshelwood kinetic models involving the adsorption of chlorobenzene and water on different active sites were evaluated. Fitting results suggested that competitive adsorption caused by water molecules could not be neglected, especially for environments with high relative humidity. The reaction intermediates found after GC–MS(Gas chromatography–mass spectrometry) analysis indicated that most were soluble, low-toxicity, or both. The results demonstrated that the prepared photocatalyst had high activity for VOC(volatile organic compounds) conversion and may be used as a pretreatment prior to biopurification.  相似文献   

10.
In this study,graphene oxide was covalently immobilized on silica-coated magnetite and then modified with 2-phenylethylamine to give a nanocomposite of type Fe_3O_4@SiO_2@GO-PEA that can be applied to the magnetic solid-phase extraction of polycyclic aromatic hydrocarbons(PAHs) from water samples.The resulting microspheres(Fe_3O_4@SiO_2@GO-PEA) were characterized by Fourier transform-infrared spectroscopy(FT-IR),scanning electron microscopy(SEM),CHNS elemental analysis,and vibrating sample magnetometry(VSM) techniques.The adsorbent possesses the magnetic properties of Fe_3O_4 nanoparticles that allow them easily to be separated by an external magnetic field.They also have the high specific surface area of graphene oxide which improves adsorption capacity.Desorption conditions,extraction time,amount of adsorbent,salt concentration,and pH were investigated and optimized.Following desorption,the PAHs were quantified by gas chromatography with flame ionization detection(GC-FID).The limits of detection(at an S/N ratio of 3) were achieved from 0.005 to0.1 μg/L with regression coefficients(R~2) higher than 0.9954.The relative standard deviations(RSDs) were below 5.8%(intraday) and 6.2%(inter-day),respectively.The method was successfully applied to the analysis of PAHs in environmental water samples where it showed recoveries in the range between 71.7%and 106.7%(with RSDs of 1.6%to 8.4%,for n = 3).The results indicated that the Fe_3O_4@SiO_2@GO-PEA microspheres had a great promise to extraction of PAHs from different water samples.  相似文献   

11.
为评估城市道路扬尘治理效果及精准治理道路扬尘,于2020年10月—2021年2月对河南省郑州市城区典型道路的积尘负荷和道路扬尘浓度进行测定,计算了不同类型保洁工艺的扬尘控制效率,分析了典型的湿式保洁工艺实施后的道路扬尘浓度变化. 结果表明:①各种保洁工艺的平均扬尘控制效率受保洁时间、环境温度和相对湿度等因素影响. 实施保洁工艺后1 h内扬尘控制效率平均值为23%~47%,在1~2 h内扬尘控制效率为20%~40%,在2~2.5 h内扬尘控制效率为5%~27%,3 h后路面积尘基本恢复原有水平. 扬尘控制效率与环境温度、相对湿度均呈弱相关. 日气温较高时,会加速路面水分蒸发,进而导致湿式作业的扬尘控制效率较低. ②不同类型保洁工艺控制效率存在差异. 在1 h内混合作业的扬尘控制效率(37%~51%)最高,湿式作业的扬尘控制效率(11%~48%)次之,干式作业的扬尘控制效率(5%~19%)最低,原因在于各类保洁工艺的除尘和抑尘能力不同. ③湿式作业干燥后可有效控制路面积尘和道路扬尘约1 h. 洒水量会影响控尘效果,冬季降低洒水量(防止道路结冰)作业的控制道路扬尘效果较差. 研究显示,道路积尘负荷及扬尘控制效率受保洁工艺、保洁作业时间、环境温度、相对湿度和季节变化等多因素影响,在控制和治理城市道路扬尘时应综合考虑这些因素.   相似文献   

12.
Elimination of formaldehyde over Cu-Al2O3 catalyst at room temperature   总被引:2,自引:0,他引:2  
Catalytic elimination of formaldehyde (HCHO) was investigated over Cu-Al2O3 catalyst at room temperature. The results indicated that no oxidation of HCHO into CO2 occurs at room temperature, but the adsorption of HCHO occurs on the catalyst surface.With the increase of gas hourly space velocity(GHSV) and inlet HCHO concentration, the time to reach saturation was shortened proportionally. The results of the in situ DRIFTS, Density functional theory calculations and temperature programmed desorption(TPD) showed that HCHO was completely oxidized into HCOOH over Cu-Al2O3 at room temperature. With increasing the temperature in a flow of helium, HCOOH was completely decomposed into CO2 over the catalyst surface, and the deactivated Cu-Al2O3 is regenerated at the same time. In addition, although Cu had no obvious influence on the adsorption of HCHO on Al2O3, Cu dramatically lowered the decomposition temperature of HCOOH into CO2. It was shown that Cu-Al2O3 catalyst had a good ability for the removal of HCHO, and appeared to be promising for its application in destroying HCHO at room temperature.  相似文献   

13.
为研究新疆奎独乌(奎屯、独山子、乌苏)区域冬季大气重污染过程的PM2.5污染特征及其成因,于2015年2月4-10日在奎屯、独山子和乌苏三地开展PM2.5样品采集,并对其中的元素、水溶性离子及碳组分进行测试,分析不同污染水平下PM2.5中化学组分的变化规律.结果表明,采样期间奎独乌区域ρ(PM2.5)日均值均超过GB 3095-2012《环境空气质量标准》二级标准(75 μg/m3),2月9日ρ(PM2.5)最高(298.58 μg/m3),超标2.98倍.通过比较PM2.5载带化学组分质量百分比发现,随着污染等级加剧,SO42-、NO3-质量百分比呈逐渐增加的趋势,严重污染时SO42-、NO3-质量百分比分别较轻度污染时增长11.7%、5.5%;NH4+、碳组分及元素组分质量百分比则呈下降趋势,严重污染较轻度污染时分别下降0.7%、9.5%、2.4%;结合采样期间静稳及高湿的气象条件,说明此次重污染由本地污染物累积及二次颗粒物生成所致.随着污染水平的加重,SOR(硫氧化率)及NOR(氮氧化率)的值也在随之增大,说明污染越重大气二次转化程度越高,进一步验证了二次颗粒物是导致此次重污染的原因之一.对不同污染等级PM2.5进行质量重构发现,PM2.5中主要组分均为硫酸盐和OM(有机物),硫酸盐和OM的质量百分比分别在23.0%~34.7%、16.4%~28.7%之间,说明此次重污染过程的主要污染源为燃煤及机动车尾气.   相似文献   

14.
铜的大气腐蚀研究   总被引:6,自引:1,他引:6  
综述了各种因素对铜大气腐蚀的影响,其中介绍了单一气体SO2、NOx、O3及混合气体协同作用对铜大气腐蚀的影响。在铜腐蚀中,SO2 NO2的协同效应只有在一个相对高的湿度(90%)下才发生。SO2 O3的协同效应要强于SO2 NO2的协同效应,这可以解释为什么铜在富含O3的乡村环境中有高的腐蚀率。重点阐述了硫酸铵微粒的影响,在硫酸铵的临界相对湿度(CRH)时,铜的腐蚀率和机制变化很显著;同时介绍了铜的几种腐蚀产物及其形成机制。简述了研究铜大气腐蚀的常用实验方法和几种表征手段,并展望了铜大气腐蚀的研究趋势。  相似文献   

15.
王钧伟  杨建丽  刘振宇 《环境科学》2009,30(12):3455-3460
利用固定床反应器研究了模拟烟气(N_2、SO_2、O_2)气氛下,气态Hg~0在V_2O_5/AC催化剂上的吸附脱除行为.考察了V_2O_5担载量、SO_2浓度和吸附温度等对V_2O_5/AC吸附脱除Hg~0的影响,并对V_2O_5/AC上吸附汞的形态进行了XPS分析表征.研究发现,V_2O_5/AC对Hg~0的吸附能力远大于载体AC.汞的吸附量与V_2O_5/AC中V_2O_5的质量分数有关,随着V_2O_5质量分数从0.5%增加到1.0%,汞的吸附量从75.9 μg·g~(-1)增加到89.6 μg·g~(-1) (无氧) 和115.9 μg·g~(-1)增加到185.5 μg·g~(-1) (有氧),远高于相同吸附条件下的AC上的汞吸附量 (9.6 μg·g~(-1)和23.3 μg·g~(-1)).SO_2对Hg~0的吸附有促进作用,主要是由于SO_2和Hg~0在V_2O_5/AC上发生了化学反应.但是当SO_2体积分数从500×10~(-6)增加到2 000×10~(-6)时,V_2O_5/AC对汞的吸附量只增加了5%.不同温度下的实验结果表明,V_2O_5/AC催化剂在150℃左右的吸附脱除Hg~0的能力最高,汞的吸附量达到98.5 μg·g~(-1) (无氧) 和187.7 μg·g~(-1) (有氧).XPS 分析结果表明,在V_2O_5/AC催化剂表面有HgO和HgSO_4生成,证实了V_2O_5和SO_2的作用.  相似文献   

16.
研究了CuO/γ-Al2O3脱硫剂脱除烟气中SO2的反应动力学。采用浸渍法制备了CuO/(γ-Al2O3)为0.12g/g脱硫剂,X-射线衍射(XRD)表明CuO呈亚单层状态分布。0.12gCuO/g(γ-Al2O3)脱硫剂硫化反应的等压吸附表明,在100~300℃、300~550℃、550~800℃范围内,SO2的吸附性质分别为物理吸附、化学吸附、化学脱附。针对化学吸附过程,提出了Langmuir反应动力学模型。计算得到SO2的反应级数为1级,活化能Ea为19.98kJ/moL,指前因子K0为9.97×10-5s-1.Pa-1。模型检验显示Langmuir反应动力学模型可以很好地描述CuO/(γ-Al2O3)为0.12g/g脱硫剂硫化过程中CuO与SO2的反应。  相似文献   

17.
黑臭水净化菌株的筛选及其水质改善能力   总被引:4,自引:0,他引:4  
生活污水的过度排放引起的水体黑臭是一个亟待解决的环境问题.为建立黑臭水的微生物净化方法,从不同重污染水体或底泥中筛选获得了多种光合细菌,分析发现其中10种光合细菌(P1~P10)及其混合菌(Pm)对黑臭指标有改善效果.黑臭水厌氧光照净化试验结果表明,菌液投加量为1.0%,3d后光合细菌P1,P2,P3,P4,P8,P9和Pm对人工黑臭水CODCr,NH3-N,S2-,色阈值及臭阈值去除率分别为75.00%~82.00%,24.20%~27.97%,72.03%~87.89%,58.90%~69.08%和75.29%~87.89%,其中P9的效果最好.黑臭水兼性厌氧光照净化试验结果表明,菌液投加量为1.0%,3d后光合细菌P2,P3,P4,P8,P9和Pm对人工黑臭水中的CODCr,NH3-N,S2-,色阈值及臭阈值去除率分别为60.67%~79.92%,35.92%~40.16%,72.03%~82.93%,58.25%~66.55%和75.29%~85.09%,ρ(DO)由0.54mgL增至1.80~2.63mgL,其中P2和P9的效果最好.经鉴定P9为沼泽红假单胞菌.研究发现,在菌液投加量为0.1%,30℃,厌氧光照条件下P9可明显改善水的黑臭指标.  相似文献   

18.
StudyoncatalystsforcombustionofleanCH_4ZhouZexing,YinLing,XuJingKesearchCenterforEco-FnvironmentalSciences,ChineseAcademyofSc...  相似文献   

19.
为了解石家庄市主城区O3(臭氧)污染特征及其影响因子,基于2015-2018年石家庄市空气质量连续监测资料和同期气象数据分析了主城区O3污染总体特征及气象成因.结果表明:①石家庄市主城区大气光化学污染日益严峻,ρ(O3)日均值由2015年的47 μg/m3增至2018年的66 μg/m3,ρ(O3)超过GB 3095-2012《环境空气质量标准》二级标准限值的天数由2015年的20 d增至2018年的70 d.②ρ(O3)存在明显的季节性差异,呈夏季[(89±33)μg/m3] >春季[(69±25)μg/m3] >秋季[(40±26)μg/m3] >冬季[(28±16)μg/m3]的特征;ρ(O3)日变化呈单峰型分布,谷值出现在06:00-07:00,峰值出现在15:00-16:00,且15:00-17:00是ρ(O3)超标的高发时段.③ρ(O3)与气温呈指数关系,当气温为20~25、25~30、≥ 30℃时,ρ(O3)日均值分别为75、90及119 μg/m3.ρ(O3)在相对湿度为60%时存在拐点,当相对湿度≤ 60%时,ρ(O3)随相对湿度的增大而上升;当相对湿度>60%时,ρ(O3)随相对湿度的增大而下降.风速与ρ(O3)呈分段线性关系,当风速 < 2 m/s时,ρ(O3)随风速的增加而上升;当风速≥ 2 m/s时,ρ(O3)随风速的增加而下降.④影响石家庄市主城区ρ(O3)升高的污染源主要位于其东-东南-南方位,其次为东北-东方位,而西部和北部地区则较少.⑤石家庄市主城区ρ(O3)超标多发生在气温>20℃,相对湿度介于40%~70%之间,风速在1.5~3.0 m/s之间的气象背景下,经统计,当气象条件同时符合上述三项气象要素时,ρ(O3)超标天数占3-10月总超标天数的66.5%.研究显示,气温>20℃、相对湿度为40%~70%、风速为1.5~3.0 m/s的气象条件可初步作为石家庄市主城区O3污染的预警指标.   相似文献   

20.
低温磁性铁基SCR烟气脱硝的实验研究   总被引:3,自引:2,他引:1  
姚桂焕  张琦  秦烨  王芳  陆芳  归柯庭 《环境科学》2009,30(10):2852-2857
在流化床反应器中,以磁性铁氧化物(Fe3O4、γ-Fe2O3)颗粒为床料,氨为还原剂,进行了中低温SCR烟气脱硝实验研究,然后对反应辅加磁场,初步研究磁场对磁性γ-Fe2O3催化剂SCR脱硝的影响,并对床料进行了XRD分析.结果表明,Fe3O4的SCR活性较差,γ-Fe2O3的SCR活性较佳,在250℃其催化脱硝效率能达到90%,但在250℃以上Fe2O3会对氨的氧化起作用,因而在250℃及以下的邻近温度区间是最佳催化温度区间.此外,在150~290℃,外加磁场能促进γ-Fe2O3对NO的吸附,提高脱硝效率,使250℃时的脱硝效率达到95%左右,但在290℃以上,则会降低脱硝效率.为了抑制氨的氧化,发挥磁场对γ-Fe2O3脱硝的作用,适合在200~250℃低温区间内采用γ-Fe2O3催化剂进行SCR脱硝.  相似文献   

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