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31.
采用絮凝沉淀-ClO2脱色-砂滤-微波无极紫外光催化氧化工艺对青岛凤凰印染有限公司蜡染印花水洗废水进行处理,详细论述了该工艺的运行特点、处理及回用效果。结果表明,在进水COD及色度波动很大的情况下,处理后废水水质长期稳定达到COD100 mg/L,色度10倍,其他各项水质指标均可满足蜡染水洗工序的生产回用要求,并回收了水中的热能。废水回用率达80%,日节水200 t,节约热能折合成标准煤约为1 t,为印染行业完成节能20%,减排20%的总体目标提供了新的思路。  相似文献   
32.
The UV (254 nm) and UV/VUV (254/185 nm) photolysis of two anti-inflammatory drugs, ibuprofen and ketoprofen, have been studied in aqueous solutions as a possible process for the removal of non-biodegradable compounds.We have examined the effects of dissolved oxygen and initial target concentration. Upon irradiation at 254 nm, the decomposition rate of ketoprofen is almost forty times higher as it of ibuprofen whilst VUV irradiation only increased the ibuprofen decomposition rate. The presence of dissolved oxygen accelerated the photodegradation of ibuprofen, whereas no effect was observed on the degradation of ketoprofen. The maximum quantum yield for the phototransformation was 0.2. The rate of mineralization in both cases was ∼60%, even after 1 h of treatment and this suggests the formation of stable by-products which were identified using GC-MS and HPLC-MS, respectively.  相似文献   
33.
由LED七彩莲花灯的变色同步机制受大功率电磁炉低频传导干扰的案例为出发点,首先介绍莲花灯的基本原理及其变色同步机制,然后对出现的问题进行原因分析,最后运用低通滤波器抑制电磁炉的低频传导干扰,实现七彩莲花灯稳定的变色同步。  相似文献   
34.
真空紫外灯动态降解空气中低浓度甲醛的研究   总被引:4,自引:0,他引:4  
以集中空调中处理室内可挥发性有机物(VOCs)为应用背景,搭建了试验台。实验研究了真空紫外灯(主波长254nm,185nm)降解甲醛的影响因素以及产生O3的情况。研究表明,在产生的O3浓度低于室内空气质量标准(0.16mg/m^3)的情况下,真空紫外灯也能够高效地降解空气中低浓度甲醛(〈1mg/m^3);甲醛降解率与反应器空气流速及甲醛初始浓度成反比;降解速率与甲醛初始浓度成正比,与反应器空气的流速成反比;绝对湿度对真空紫外灯降解甲醛有一定的影响;反应器空间大小对甲醛降解影响比较显著。应用于集中空调系统净化室内空气中VOCs,取得了很好的效果。  相似文献   
35.
Volatile organic compounds (VOCs) have attracted much attention for decades as they are the precursors of photochemical smog and are harmful to the environment and human health. Vacuum ultraviolet (VUV) photodegradation is a simple and effective method to decompose VOCs (ranging from tens to hundreds of ppmV) without additional oxidants or catalysts in the air at atmospheric pressure. In this paper, we review the research progress of VOCs removal via VUV photodegradation. The fundamentals are outlined and the key operation factors for VOCs degradation, such as humidity, oxygen content, VOCs initial concentration, light intensity, and flow rate, are discussed. VUV photodegradation of VOCs mixture is elucidated. The application of VUV photodegradation in combination with ozone-assisted catalytic oxidation (OZCO) and photocatalytic oxidation (PCO) systems, and as the pre-treatment technique for biological purification are illustrated. Based on the summary, we propose the challenges of VUV photodegradation and perspectives for its future development.  相似文献   
36.
VUV/Fe3+体系对水中全氟辛酸(PFOA)脱氟影响因素研究   总被引:3,自引:1,他引:2  
采用VUV/Fe3+光催化体系对全氟辛酸(PFOA)进行脱氟处理,考察了PFOA初始浓度、Fe3+浓度、体系pH值对体系脱氟的影响,并运用响应面正交法(RSM)优化分析了最佳反应条件.结果表明,VUV/Fe3+体系对PFOA具有明显的脱氟作用.PFOA浓度与Fe3+浓度比为1.8∶1~1.2∶1和pH为3~4时,有利于体系的脱氟.基于Box-Behnken响应曲面法,各影响因子显著性排序为pH>Fe3+投加量>PFOA初始浓度,pH值和Fe3+投加量交互作用显著.模型回归性良好,最佳运行条件组合为:pH=3.41,Fe3+投加量为30μmol·L-1和PFOA初始浓度为38.6μmol·L-1(16mg·L-1)条件下,反应4h的脱氟率达到54.13%,与预测值相比偏差为0.36%.在VUV体系引入Fe3+提高了PFOA及中间产物对紫外光利用的效率.  相似文献   
37.
Ammonia (NH3) is ubiquitous in the atmosphere, it can affect the formation of secondary aerosols and particulate matter, and cause soil eutrophication through sedimentation. Currently, the use of radioactive primary reagent ion source and the humidity interference on the sensitivity and stability are the two major issues faced by chemical ionization mass spectrometer (CIMS) in the analysis of atmospheric ammonia. In this work, a vacuum ultraviolet (VUV) Kr lamp was used to replace the radioactive source, and acetone was ionized under atmospheric pressure to obtain protonated acetone reagent ions to ionize ammonia. The ionization source is designed as a separated three-zone structure, and even 90 vol.% high-humidity samples can still be directly analyzed with a sensitivity of sub-ppbv. A signal normalization processing method was designed, and with this new method, the quantitative relative standard deviation (RSD) of the instrument was decreased from 17.5% to 9.1%, and the coefficient of determination was increased from 0.8340 to 0.9856. The humidity correction parameters of the instrument were calculated from different humidity, and the ammonia concentrations obtained under different humidity were converted to its concentration under zero humidity condition with these correction parameters. The analytical time for a single sample is only 60 sec, and the limit of detection (LOD) was 8.59 pptv (signal-to-noise ratio S/N = 3). The ambient measurement made in Qingdao, China, in January 2021 with this newly designed CIMS, showed that the concentration of ammonia ranged from 1 to 130 ppbv.  相似文献   
38.
Photodegradation products of the herbicide Goal active ingredient were obtained with a xenon lamp and analyzed using direct inlet mass spectrometry, MS/MS and GC/MS. A number of products were identified and their generation pathways were established to be mainly Ar—O bond cleavage, dechlorination and photocyclisation. The latter process gives chlorinated and unchlorinated dibenzofurans some of which may be toxic.  相似文献   
39.
In this study, ultraviolet (UV) and vacuum ultraviolet (VUV) photolysis were investigated for the pre-treatment and post-treatment of coking wastewater. First, 6-fold diluted raw coking wastewater was irradiated by UV and VUV. It was found that 15.9%-35.4% total organic carbon (TOC) was removed after 24 hr irradiation. The irradiated effluent could be degraded by the acclimated activated sludge. Even though the VUV photolysis removed more chemical oxygen demand (COD) than UV, the UV-irradiated effluent demonstrated better biodegradability. After 4 hr UV irradiation, the biological oxygen demand BOD5/COD ratio of irradiated coking wastewater increased from 0.163 to 0.224, and its toxicity decreased to the greatest extent. Second, the biologically treated coking wastewater was irradiated by UV and VUV. Both of them were able to remove 37%-47% TOC within 8 hr irradiation. Compared to UV, VUV photolysis could significantly improve the transparency of the bio-treated effluent. VUV also reduced 7% more ammonia nitrogen (NH4+-N), 17% more nitrite nitrogen (NO2--N), and 18% more total nitrogen (TN) than UV, producing 35% less nitrite nitrogen (NO3--N) as a result. In conclusion, UV irradiation was better in improving the biodegradability of coking wastewater, while VUV was more effective at photolyzing the residual organic compounds and inorganic N-species in the bio-treated effluent.  相似文献   
40.
以1000W氙灯为光源,研究了阿替洛尔在模拟太阳光照射下的光降解行为,采用HPLC和SPE-LC-MS技术鉴定了阿替洛尔在250~600nm波长照射下的主要光解产物并提出了可能的光解途径.探讨了溶液pH值、硝酸根离子浓度、腐殖质和碳酸氢根离子等因素对阿替洛尔在模拟太阳光照射下光解的影响.结果表明,阿替洛尔在模拟太阳光下的直接光解很难发生,且改变溶液pH值不能促进直接光解.而在250~600nm波长照射下,阿替洛尔4h光解率达42%,光解途径主要有母体羟基化和支链的断裂反应.在模拟太阳光照下,NO3-对阿替洛尔光解有显著的光敏化作用,而富里酸(SRFA)光敏化作用微弱.HCO3-抑制了模拟太阳光照下阿替洛尔在NO3-溶液中的光解,腐殖质则通过自由基淬灭和内滤机制抑制了阿替洛尔在NO3-溶液中的光解.  相似文献   
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