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901.
902.
苯胺水溶液的电子束辐照降解 总被引:5,自引:0,他引:5
以苯胺类化合物中的苯胺为具体对象,进行了苯胺水溶液受到电子束辐照后的降解过程和特性研究,分别考察了吸收剂量、溶液初始浓度、溶液初始pH和过氧化氢加入量等因素对苯胺辐照降解效果的影响.实验结果表明,电子束辐照可以有效降解水溶液中的苯胺,当苯胺初始浓度为70 mg·L-1,吸收剂量为23.7 kGy时,苯胺降解率可达91%,COD去除率可达27%.过氧化氢的加入能够明显地提高苯胺的降解效果,COD去除率最高可达98%.溶液初始pH在2.0~11.0范围内,pH对苯胺的辐射降解影响较小. 相似文献
903.
904.
在水资源日趋紧张的今天,污水的深度处理回用工艺成了人们探讨的热点。结合郑州市五龙口污水处理厂的设计与运行,介绍了以改良氧化沟为主体的污水深度处理回用工艺,并对工艺除磷脱氮及污水深度处理的原理、设计参数、运行情况及运行条件的控制进行了介绍。运行结果表明该工艺既具有较高的COD、SS去除效率,又解决了传统氧化沟在脱氮除磷时存在相互影响的矛盾问题,在进水COD为326mg/L、SS为301mg/L、NH_4~+-N为45.1mg/L、TP为4.1mg/L;出水COD为21mg/L、SS为9mg/L、NH_4~+-N为1.4mg/L、TP为0.6mg/L,各项指标均达到了景观用水标准。 相似文献
905.
药品及个人护理用品(PPCPs)是一类痕量、顽固的新兴有机污染物,采用传统水处理工艺不易去除,需深度处理。采用批量试验方法,研究了臭氧氧化二级出水中添加的19种PPCPs的去除效果,考察了臭氧投加量、p H值、自由基抑制剂对去除效率的影响,并根据氧化产物推断可能的反应途径。结果表明,在原水水样p H=7.1条件下,臭氧质量浓度为1.2 mg/L时,能有效去除大多数PPCPs。其中,抗生素类PPCPs和个人防护类PPCPs的去除率分别达到了68%和70%,而雷尼替汀和噻苯咪唑去除效果不明显,仅为17.73%和12.3%。增加臭氧投加量或提高反应p H值会显著提高除雷尼替汀和噻苯咪唑外的PPCPs去除率。加入的自由基抑制剂对臭氧氧化PPCPs有明显抑制作用。PPCPs的氧化降解产物有机酸会降低反应p H值,进而影响PPCPs的去除效果。 相似文献
906.
为了对全绿吊兰盆栽茎叶系统净化室内空气甲醛污染的效率及其叶片各生理指标的变化特征进行全面研究,采用动态熏蒸系统在甲醛环境下对全绿吊兰进行长达7 d的熏蒸处理,分析盆栽茎叶系统在不同时间段内对空气中甲醛的去除率及熏蒸后叶片的生理变化特性.结果表明,全绿吊兰盆栽茎叶系统在φ(甲醛)为1×10-6、5×10-6及8×10-6时对空气中甲醛的平均去除率分别为54.4%、48.2%和30.7%,并且白天的去除率(71.1%±0.2%)明显高于夜间(36.2%±0.2%),下午的去除率(60.0%±0.0%)高于上午(50.7%±0.1%),熏蒸后期的去除率(57.0%±0.2%)高于前期(51.9%±0.3%).对熏蒸后全绿吊兰盆栽叶片的生理指标测定结果表明,与对照组相比,除了叶片中w(叶绿素)和CAT活性下降外,其余生理指标均表现为上升,其中,电导率和H2O2含量的变化最大,φ(甲醛)为8×10-6时分别提高了165.8%和522.2%,而抗氧化酶总活性的增强有效地清除了积累的氧化物,维持了全绿吊兰盆栽的正常生长.另外,经过8×10-6的甲醛熏蒸后,与对照组相比,叶片表面气孔形态变得更加细小狭长甚至完全闭合,但是全绿吊兰盆栽的茎叶外观并无明显受损症状,而且叶片中MDA含量与T-AOC活性在熏蒸后15 d时基本能恢复至正常水平.研究显示,全绿吊兰盆栽对甲醛具有较高的去除能力且有较强的抗耐性及自愈能力,其叶片中各项生理指标的变化则反映了全绿吊兰盆栽与甲醛之间的相互反应机制. 相似文献
907.
Can Shen Xiangping Gu Bin Yang Dexian Zhang Zhilin Wang Zhengxiang Shu Jeffrey Dick Anhuai Lu 《环境科学学报(英文版)》2020,32(3):156-166
Different natural sphalerites have a range of photocatalytic properties that can potentially be exploited for environmental remediation purposes. To develop value in the exploitation of sphalerite, samples were collected from 19 ore deposits in China and characterized for their mineralogical and photocatalytic properties. X-ray diffraction (XRD) and electron probe micro analysis (EPMA) measurements indicated that all the natural sphalerites from various localities crystallized in cubic phases with various chemical compositions. The substitution of Fe for Zn ranged from 0.235% to 14.826% by weight, Mn from 0.004% to 4.868%, Cu from 0.009% to 5.529% and Cd from 0.133% to 1.576%. As Fe became more abundant, the color of natural sphalerite darkened, becoming almost black; and higher Fe content was associated with stronger visible light absorption. Photoluminescence spectra showed emission mainly related to S-vacancies and progressively decreasing fluorescence intensity with increasing Fe content. Tests of the photocatalytic degradation of methyl orange indicated that the sample with the highest Cd content but moderate Fe content had the highest photocatalytic activity. Specifically, the degradation of Methyl Orange (30 mg/L) attained 82.11% efficiency under visible light irradiation for 4 hr of natural sphalerite with 4.262% Fe and 1.576% Cd. Overall, the Fe content in sphalerite was found to contribute to the visible light absorption ability and the recombination rate of photo-generated electrons and holes, while substitution by Cd was observed to have a greater effect on the photocatalytic properties. These findings provide a scientific basis for the profitable utilization of base metal resources like sphalerite. 相似文献
908.
Excessive nitrate(NO_3~-) is among the most problematic surface water and groundwater pollutants.In this study,a type of magnetic cationic hydrogel(MCH) is employed for NO_3~-adsorption and well characterized herein.Its adsorption capacity is considerably pHdependent and achieves the optimal adsorption(maximum NO_3~--adsorption capacity is95.88±1.24 mg/g) when the pH level is 5.2-8.8.The fitting result using the homogeneous surface diffusion model indicates that the surface/film diffusion controls the adsorption rate,and NO_3~-approaches the center of MCH particles within 30 min.The diffusion coefficient(D_s) and external mass transfer coefficient(k_F) in the liquid phase are1.15 × 10~(-6) cm~2/min and 4.5 × 10~(-6) cm/min,respectively.The MCH is employed to treat surface water that contains 10 mg/L of NO_3~-,and it is found that the optimal magnetic separation time is 1.6 min.The high-efficiency mass transfer and magnetic separation of MCH during the adsorption-regeneration process favors its application in surface water treatment.Furthermore,the study of the mechanism involved reveals that both-N~+(CH_3)_3 groups and NO_3~-are convoluted in adsorption via electrostatic interactions.It is further found that ion exchange between NO_3~-and chlorine occurs. 相似文献
909.
The effect of dissolved oxygen concentration on long-term stability of partial nitrification process
Dissolved oxygen (DO) concentration is regarded as one of the crucial factors to influence partial nitrification process. However, achieving and keeping stable partial nitrification under different DO concentrations were widely reported. The mechanism of DO concentration influencing partial nitrification is still unclear. Therefore, in this study two same sequencing batch reactors (SBRs) cultivated same seeding sludge were built up with real-time control strategy. Different DO concentrations were controlled in SBRs to explore the effect of DO concentration on the long-term stability of partial nitrification process at room temperature. It was discovered that ammonium oxidation rate (AOR) was inhibited when DO concentration decreased from 2.5 to 0.5 mg/L. The abundance of Nitrospira increased from 1011.5 to 1013.7 copies/g DNA, and its relative percentage increased from 0.056% to 3.2% during 190 operational cycles, causing partial nitrification gradually turning into complete nitrification process. However, when DO was 2.5 mg/L the abundance of Nitrospira was stable and AOB was always kept at 1010.7 copies/g DNA. High AOR was maintained, and stable partial nitrification process was kept. Ammonia oxidizing bacteria (AOB) activity was significantly higher than nitrite oxidizing bacteria (NOB) activity at DO of 2.5 mg/L, which was crucial to maintain excellent nitrite accumulation performance. 相似文献
910.
以磁混凝预处理后的生活污水为处理对象,构建了部分亚硝化-厌氧氨氧化分体式反应器,通过曝气调控与生物强化促进部分亚硝化反应的稳定进行,并耦合厌氧氨氧化反应进行深度脱氮.近100d的运行结果表明,在生物强化和间歇曝气的控制条件下,亚硝酸盐积累率达到了89.93%;提高亚硝化反应器中曝气阶段溶解氧浓度(从0.6~0.8mg/L升高至1.0~1.2mg/L)有利于氨氮与总氮去除.该系统最高能够去除95.45%的氨氮和86.28%的总氮,实现了稳定、高效脱氮;磁混凝预处理后的生活污水在亚硝化反应器中,间歇曝气条件促进了残留的溶解性有机物为反硝化提供碳源,COD总去除率达到64.65%~74.42%,并且亚硝化反应器出水与系统最终出水的有机物组分相似,主要为难降解有机物. 相似文献