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371.
氯代挥发性有机物(CVOCs)因其性质稳定、反应性差且毒性高,成为目前大气污染物净化技术中的难点。催化氧化法是去除CVOCs最有效的方法之一。对CVOCs催化氧化的研究进行综述,列举实例介绍了各类催化剂对常见CVOCs的催化研究现状,对催化性能、催化剂失活、反应机理等方面进行了详细分析,总结出积碳和氯中毒是催化剂失活的两大主要因素,而载体性质、活性组分分散度、水等对催化性能产生很大影响。最后,展望了未来催化剂的研究重点。 相似文献
372.
Four sequence batch reactors (SBRs) fed by fermented sugar cane wastewater were continuously operated under the aerobic dynamic feeding (ADF) mode with different configurations of sludge retention time (SRT), carbon and initial biomass concentrations to enrich polyhydroxyalkanoate (PHA) accumulating mixed microbial cultures (MMCs) from municipal activated sludge. The stability of SBRs was investigated besides the enrichment performance. The microbial community structures of the enriched MMCs were analyzed using terminal restriction fragment length polymorphism (T-RFLP). The optimum operating conditions for the enrichment process were: SRT of 5 days, carbon concentration of 2.52 g COD/L and initial biomass concentration of 3.65 g/L. The best enrichment performance in terms of both operating stability and PHA storage ability of enriched cultures (with the maximum PHA content and PHA storage yield (YPHA/S) of 61.26% and 0.68 mg COD/mg COD, respectively) was achieved under this condition. Effects of the SRT, carbon concentration and initial biomass concentration on the PHA accumulating MMCs selection process were discussed respectively. A new model including the segmentation of the enrichment process and the effects of SRT on each phase was proposed. 相似文献
373.
为获得同时具有优良的吸附性能和磁分离特性的生物吸附材料,以汽爆秸秆为基质,采用戊二醛交联剂法制备了磁性聚乙烯亚胺功能化秸秆吸附剂(Fe3O4-PEI-RS),通过SEM、XRD、FTIR、XPS和VSM等手段表征了材料的结构和性质,测定了Pb(Ⅱ)在Fe3O4-PEI-RS上的吸附性能,考察了pH、吸附时间、吸附剂投加量、Pb(Ⅱ)初始浓度、温度等因素对吸附的影响.结果表明,Fe3O4-PEI-RS对Pb(Ⅱ)的吸附具有强烈的pH依赖性;吸附时间对Pb(Ⅱ)的吸附效率有明显的影响,在180 min时吸附达到平衡,吸附过程符合准二级动力学模型;Langmuir和Freundlich模型都能很好地描述Pb(Ⅱ)在Fe3O4-PEI-RS上的吸附行为,20、30和40℃时最大吸附量分别为192.31、200.00和212.77 mg/g;热力学参数△G < 0,而焓变△H>0、△S>0,说明该吸附属于熵增加的自发吸热反应过程,升温有利于吸附.重复试验表明,EDTA作解吸剂,经5次吸附/解吸附循环后吸附剂仍能保持较高的吸附容量.研究显示,所制Fe3O4-PEI-RS对Pb(Ⅱ)具有较高的吸附容量,稳定性好、可循环利用,能在磁场下实现快速分离. 相似文献
374.
第24届冬季奥运会将于2022年2月4—20日在我国北京市和河北省张家口市联合举办,主要会场有北京奥体中心、北京延庆县和张家口市崇礼县.为了模拟分析冬奥会空气质量情况,利用冬奥会同期(2006—2016年2月)北京市和张家口市空气质量资料及韩国气象厅天气图资料(2013—2016年2月),分析该时段重污染发生的频次,统计不利于污染物扩散的天气形势出现概率及污染传输路径,并结合嵌套网格空气质量预报模式(NAPQMS),评估不同减排方案对ρ(PM2.5)的影响.结果表明:① 2006—2016年冬奥会同期,北京奥体中心和延庆县发生重污染天气的概率分别为17%和9%,污染发生的风险频率为北京奥体中心>延庆县>张家口市,并且北京奥体中心和延庆县在2月13—16日易出现持续的重污染天气过程;② 2013—2016年2月不利于污染扩散的天气形势出现概率较为频繁,尤其在850 hPa高度和地面,不利天气形势出现的概率分别为35%和41%;地面偏南风易将在北京西南方滞留较长时间的污染气团沿太行山输送至北京;③ 冬奥会期间,若于2月2—12日及17—20日将京津冀及周边城市污染物排放量在当前的基础上减排50%、2月13—16日减排75%,将可能不出现重污染日.严格控制北京及周边地区的大气污染物排放是保障冬奥会期间空气质量的必要措施. 相似文献
375.
The selective catalytic reduction(SCR) activities of the MoO_3 doped V/WTi catalysts prepared by the incipient wetness impregnation method at low temperature were investigated.The results showed that the addition of MoO_3 could enhance the NO_ xconversion at low temperature and the best SCR activity was obtained when the dosage of MoO_3 reached5 wt.%. The NH3-TPD and DRIFTS experiments indicated that the addition of MoO_3 changed the type and number of acid sites on the surface of catalysts and reaction activities of acid sites were altered at the same time. The redox capacity and amount of active oxygen species got improved for V3Mo5/WTi catalyst, which could be confirmed by the H_2-TPR and transient response experiments. Water vapor inhibited the NO_xconversion at low temperature. Deposition of ammonium sulfate or bisulfate might be main reason for the loss of catalytic activity in the presence of SO_2 at low temperature. Choosing the suitable NH_3/NO ratio and elevation of reaction temperature both could weaken the influence of SO_2 on the SCR activity of the V3Mo5/WTi catalyst. Thermal treatment of the deactivated catalyst at350°C could get the low temperature activity recovered. The decrease of GHSV improved the de NO_x efficiency at low temperature and we speculated that the rational technological process and operation parameters could contribute to the application of this kind of catalysts in real industrial environment. 相似文献
376.
Biodegradation of polycyclic aromatic hydrocarbons (PAHs) by fungal enzymes: A review 总被引:1,自引:0,他引:1
Tayssir Kadri Tarek Rouissi Satinder Kaur Brar Maximiliano Cledon Saurabhjyoti Sarm Mausam Verma 《环境科学学报(英文版)》2017,29(1):52-74
Polycyclic aromatic hydrocarbons (PAHs) are a large group of chemicals. They represent an
important concern due to their widespread distribution in the environment, their
resistance to biodegradation, their potential to bioaccumulate and their harmful effects.
Several pilot treatments have been implemented to prevent economic consequences and
deterioration of soil and water quality. As a promising option, fungal enzymes are regarded
as a powerful choice for degradation of PAHs. Phanerochaete chrysosporium, Pleurotus ostreatus
and Bjerkandera adusta are most commonly used for the degradation of such compounds
due to their production of ligninolytic enzymes such as lignin peroxidase, manganese
peroxidase and laccase. The rate of biodegradation depends on many culture conditions,
such as temperature, oxygen, accessibility of nutrients and agitated or shallow culture.
Moreover, the addition of biosurfactants can strongly modify the enzyme activity. The removal of PAHs is dependent on the ionization potential. The study of the kinetics is not completely comprehended, and it becomes morem hallenging when fungi are applied for bioremediation. Degradation studies in soil are much more complicated than liquid cultures because of the heterogeneity of soil, thus, many factors should be considered when studying soil bioremediation, such as desorption and bioavailability of PAHs. Different degradation pathways can be suggested. The peroxidases are heme-containing enzymes having common catalytic cycles. One molecule of hydrogen peroxide oxidizes the resting enzyme withdrawing two electrons. Subsequently, the peroxidase is reduced back in two steps of one electron oxidation. Laccases are copper-containing oxidases. They reduce molecular oxygen to water and oxidize phenolic compounds. 相似文献
377.
This study aimed to reveal how amoxicillin(AMX) affected the microbial community and the spread mechanism of antibiotic resistance genes(ARGs) in the AMX manufacture wastewater treatment system. For this purpose, a 1.47 L expanded granular sludge bed(EGSB) reactor was designed and run for 241 days treating artificial AMX manufacture wastewater. 454 pyrosequencing was applied to analyze functional microorganisms in the system. The antibiotic genes OXA_(-1), OXA_(-2), OXA_(-10), TEM_(-1), CTX-M_(-1), class I integrons(intI1) and 16 SrRNA genes were also examined in sludge samples. The results showed that the genera Ignavibacterium, Phocoenobacter,Spirochaeta, Aminobacterium and Cloacibacillus contributed to the degradation of different organic compounds(such as various sugars and amines). And the relative quantification of eachβ-lactam resistance gene in the study was changed with the increasing of AMX concentration.Furthermore the vertical gene transfer was the main driver for the spread of ARGs rather than horizontal transfer pathways in the system. 相似文献
378.
Sulfur poisoning of V_2O_5/BaSO_4–TiO_2(VBT),V_2O_5/WO_3–TiO_2(VWT) and V_2O_5/BaSO_4–WO_3–TiO_2(VBWT) catalysts was performed in wet air at 350℃ for 3 hr,and activities for the selective catalytic reduction of NO_x with NH_3 were evaluated for 200–500℃.The VBT catalyst showed higher NO_x conversions after sulfur poisoning than the other two catalysts.The introduction of barium sulfate contributed to strong acid sites for the as-received catalyst,and eliminated the redox cycle of active vanadium oxide to some extent,which resulted in a certain loss of activity.Readily decomposable sulfate species formed on VBT-S instead of inactive sulfates on VWT-S.These decomposable sulfates increased the number of strong acid sites significantly.Some sulfate species escaped during catalyst preparation and barium sulfate was reproduced during sulfur poisoning,which protects vanadia from sulfur oxide attachment to a great extent.Consequently,the VBT catalyst exhibited the best resistance to sulfur poisoning. 相似文献
379.
为评估不同交通状态下公交车运行特征和排放水平的差异,现场采集广州市B9、226线路公交车的逐秒GPS数据,以ES-VSP(发动机负荷-机动车比功率)分布表征畅通、轻度拥堵和中度拥堵下的公交车运行特征,结合IVE(international vehicle emission)模型求得公交车平均排放因子并分析其差异.结果表明:①所测公交车的发动机低负荷区中bin11(-1.6 < ES ≤ 3.1,-2.9 kW/t ≤ VSP < 1.2 kW/t)频率范围为50.55%~83.39%,中度拥堵时bin 11频率是畅通时的1.1~1.3倍;② 3种交通状态下公交车的CO、VOC(运行产生的挥发性有机物)、VOCevap(蒸发产生的挥发性有机物)、NOx(氮氧化物)和PM(颗粒物)平均排放因子范围分别为7.63~11.40、0.26~0.46、0.68~1.56、0.32~0.51和0.72×10-2~1.28×10-2 g/km;③同种交通状态下,主干路公交车专用道和BRT车道的公交车的大部分污染物平均排放因子低于次干路混行车道、主干路混行车道,中度拥堵时主干路BRT车道的CO、VOC、VOCevap、NOx和PM平均排放因子相对其他道路最低,分别为7.66、0.27、0.87、0.32和0.75×10-2 g/km;④次干路混行车道、主干路混行车道的公交车污染物平均排放因子随交通状态愈加拥堵而增大,但畅通时主干路BRT车道的公交车行驶速度、加速度较高,导致CO平均排放因子较高,对应3种交通状态其比例为1.0:0.9:0.8.研究显示,交通状态对公交车运行和排放具有显著影响. 相似文献
380.
为分析北京市燃煤源排放控制措施的污染物减排效益,基于MEIC(中国多尺度排放清单模型),采用情景分析法,评估了北京市电厂能源清洁化与末端治理、燃煤锅炉改造和城区平房区居民采暖改造等措施的污染物减排效益.结果表明,相对于无控情景,2013年北京市电厂能源清洁化与末端治理减少PM2.5、PM10、SO2和NOx排放量为1.28×104、2.10×104、5.13×104和4.98×104 t,分别占无控情景的85%、86%、87%、74%;北京市燃煤锅炉改造减少PM2.5、PM10、SO2、NOx排放量为1.09×104、2.68×104、11.64×104和5.81×104 t,分别占无煤改气情景的83%、89%、83%、83%;北京市老旧平房区的居民采暖改造减少PM2.5、PM10、SO2和NOx排放量分别为630、870、2 070和790 t,均占无煤改电情景的8%.研究显示,北京市从1998年开始采取的各种减排措施有效地减少了污染物的排放,对北京市空气质量改善具有重要意义. 相似文献