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411.
青岛大气中HNO3、HNO2和NH3的浓度及其影响因素 总被引:6,自引:2,他引:4
硝酸(HNO3)、亚硝酸(HNO2)和氨气(NH3)是大气中重要的含氮化合物,不仅影响大气的光化学氧化能力和酸碱性,还在大气氮沉降中有重要贡献.利用2012年5月4—13日在青岛采集的denuder大气样品,分析了其中HNO3、HNO2和NH3的浓度.青岛大气中HNO3、HNO2和NH3浓度分别为0.88~6.15 μg·m-3、0.07~2.02 μg·m-3和0.47~7.87 μg·m-3,平均分别为2.06 μg·m-3、0.92 μg·m-3和3.03 μg·m-3.大气中3种气体浓度的昼夜变化均无显著性差异.平行采集的样品分析结果显示:denuder涂层的差异对HNO3和NH3的观测结果影响较小,但对HNO2的影响较大,且高温天气易于造成HNO2更大的观测误差.青岛大气中HNO3浓度与温度呈正相关、与湿度呈负相关关系,高温低湿天气时样品中HNO3的浓度一般较高,而高湿或降雨天气时的浓度则较低.NH3浓度与风向呈显著相关关系,主要受局地一次排放源的影响, NH4NO3和NH4NO2分解对青岛大气中NH3的贡献小于23%.青岛大气样品中NH3的浓度在阵雨时以受土壤释放的影响为主,浓度较高;而连续降雨时则以受湿清除作用的影响为主,浓度较低. 相似文献
412.
直接用离子色谱淋洗液吸收垃圾焚烧电厂排气筒中低浓度的氯化氢,不仅减少了分析中的两次稀释操作,而且还降低方法的检出限,可用于同类污染源低浓度氯化氢的测定。 相似文献
413.
Chen Danting Ke Zhixin Tan Yehui 《Environmental science and pollution research international》2021,28(23):29177-29187
Environmental Science and Pollution Research - The C/N/P stoichiometry of organic matter can provide useful information for better understanding of the effects of human activities on aquatic... 相似文献
414.
Yuanhang Zhang Haichao Wang Keding Lu Zhaofeng Tan Xiaorui Chen Yuhan Liu 《环境科学学报(英文版)》2023,123(1):476-486
Over the past decade, fine particulate matter (PM) pollution in China has been abated significantly, benefiting from strict emission control measures, but particulate nitrate continues to rise. Here, we review the progress in particulate nitrate (pNO3−) pollution characterization, nitrate formation mechanisms, and the proposed control strategies in China. The spatial and temporal distributions of pNO3− are summarized. The current status of knowledge on the chemical mechanism is updated, and the significance of its formation pathways is assessed by various approaches such as field observation and modelling of nitrate production rate, as well as isotopic analysis. The factors impacting pNO3− formation and the corresponding pollution regulation strategies are discussed, in which the importance of atmospheric oxidation capacity and ammonia are addressed. Finally, the challenges and open questions in pNO3− pollution control in China are outlined. 相似文献
415.
In this study, ammonia emissions characteristics of typical light-duty gasoline vehicles were obtained through laboratory vehicle bench test and combined with New European Driving Cycle (NEDC) condition and Worldwide Harmonized Light Vehicles Test Cycle (WLTC) condition. The influence of ambient temperature on ammonia emissions is mainly concentrated in the cold start stage. The influence of ambient temperature on ammonia emission is shown that the ammonia emissions of light-duty gasoline vehicles under ambient temperature conditions (14 and 23°C) are lower than those under low ambient temperature conditions (?7°C) and high ambient temperature conditions (35 and 40°C). The influence of TWC on ammonia emission is shown that ammonia is a by-product of the catalytic reduction reaction of conventional gas pollutants in the exhaust gas in the TWC. Under NEDC operating conditions and WLTC operating conditions, ammonia emissions after the catalyst are 45 times and 72 times that before the catalyst, respectively. In terms of ammonia emissions control strategy research, Pd/Rh combination can reduce NH3 formation more effectively than catalyst with a single Pd formula. Precise control of the engine's air-fuel ratio and combination with the optimized matched precious metal ratio TWC can effectively reduce ammonia emissions. 相似文献
416.
目的 了解延迟焦化装置非密闭除焦工序职业病危害程度.方法 选取某大型炼化企业延迟焦化装置一套,通过现场调查,确定非密闭式除焦工序存在的主要职业病危害因素及其接触岗位,对职业病危害因素进行检测,评判并分析各岗位化学有害因素职业接触水平,确定职业病危害程度.结果 除焦工岗位接触硫化氢、粉尘危害因素检测结果超标,装车工接触粉尘危害因素检测结果超标.除焦工硫化氢、粉尘接触水平均为Ⅳ级,装车工粉尘接触水平为Ⅳ级.结论 加强延迟焦化装置非密闭除焦工序个人使用的职业病防护用品的配备,新建延迟焦化装置应尽量选择密闭除焦技术,当前运行的存在非密闭除焦工序的延迟焦化装置应进行工艺技术改造. 相似文献
417.
Yichang Yang Xingang Liu Jun Zheng Qinwen Tan Miao Feng Yu Qu Junling An Nianliang Cheng 《环境科学学报(英文版)》2019,31(5):297-310
A continuous online observation of ozone and its precursors(NOx, VOCs) was carried out in central urban Wuhan from September 2016 to August 2017. The concentration levels of ozone,NOx, VOCs and their variations in urban Wuhan were analyzed, as well as effects of VOCs on ozone photochemical generation and the main controlling factors for ozone production. During the observation period, the average concentrations of ozone and NOx in Wuhan was 22.63 and30.14 ppbv, respectively, and the average concentration of VOCs was 32.61 ppbv(42.3% alkanes,13.0% alkenes, 10.0% aromatics, 7.3% acetylene, 9.9% OVOCs, and 10.5% halohydrocarbons).Ozone concentration was higher in spring and summer as compared with autumn and winter,wheras VOCs and NOx concentratios were lower in spring and summer but higher in autumn and winter. Aromatics and alkenes, two of VOCs species, showed the highest contributions to ozone formation potential in Wuhan(35.7% alkenes, 35.4 aromatics, 17.5% alkanes, 8.6% OVOCs,1.6% halogenated hydrocarbons, and 1.4% acetylene). Among all VOCs species, those with the highest contribution were ethylene, m-xylene, toluene, propylene and o-xylene. The contribution of these five compounds to the total ozone formation potential concentration was 43.90%.Ozone-controlling factors in Wuhan changed within one day; during the early morning hours(6:00–9:00), VOCs/NOx was low, and ozone generation followed a VOCs-limited regime.However, during the peak time of ozone concentration(12:00–16:00), the ratio of VOCs/NOx was relatively high, suggesting that ozone generation followed a NOx-limited regime. 相似文献
418.
Yiding M Zongshuang Wang Yufei Tan Shu Xu Shaofei Kong Gang Wu Xuefang Wu Hong Li 《环境科学学报(英文版)》2017,29(5):339-353
To compare the inorganic chemical compositions of TSP(total suspended paniculate),PM_(10)(particulate matter with an aerodynamic diameter less than 10 μm) and PM_(2.5)(particulate matter with an aerodynamic diameter less than 2.5 μm) in southern and northern cities in China,atmospheric particles were synchronously collected in Dalian(the northern city)and Xiamen(the southern city) in spring and autumn of 2004.The mass concentrations,twenty-three elements and nine soluble ions were assessed.The results show that in Dalian,the mass concentrations of Mg,Al,Ca,Mn and Fe in spring were 4.0-10.1,2.6-8.0,4.1-12,1.2-3.6 and 2.9-7.9 times higher,respectively,than those in Xiamen.The dust storm influence is more obvious in Dalian in spring.However,in Xiamen,heavy metals accounted for 13.9%-17.9%of TSP,while heavy metals contributed to 5.5%-9.3%of TSP in Dalian.These concentrations suggest that heavy metal pollution in Xiamen was more serious.In addition,the concentrations of Na~+,Cl~-,Ca~(2+) and Mg~(2+) were higher in Dalian due to the influence of marine aerosol,construction activities and soil dust.The NO~(3-)/SO_4~(2-) ratios in Dalian(0.25-0.49) were lower than those in Xiamen(0.51-0.62),indicating that the contributions of vehicle emission to particles in Xiamen were higher.Coefficient of divergence values was higher than 0.40,implying that the inorganic chemical composition profiles for the particles of Dalian and Xiamen were quite different from each other. 相似文献
419.
420.