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691.
692.
曲雅微  王体健  袁成  吴昊 《环境科学》2023,44(12):6598-6609
近年来,中国大气细颗粒物(PM2.5)污染的治理已取得阶段性成效,但臭氧(O3)污染快速上升,实现PM2.5和O3协同控制的基础与关键是针对大气污染物的精细化探测和污染溯源.随着无人机技术和传感器技术的迅速发展,基于无人机平台的大气污染探测可以有效获得近地层的PM2.5和O3结构特征,并结合计算机算法对大气污染事件进行精准溯源,具有高时效性、高灵活性和高时空分辨率的特征,有助于研究人员了解区域污染物的分布、变化以及来源,为大气复合污染的协同控制提供科学依据.通过回顾传统的大气污染探测方法,总结了污染探测领域常用的无人机飞行平台类型和探测仪器,归纳了基于无人机的PM2.5和O3污染探测应用与相关溯源算法,并展望了无人机大气探测的未来研究方向.  相似文献   
693.
以沉淀-回流方法于磷酸银(Ag3PO4)中掺杂氮化碳(g-C3N4)制备新型复合光催化剂,同时采用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射图(XRD)等手段对合成催化剂的形态特征、晶型结构以及物理化学性质进行表征.以碘帕醇(IPM)作为目标污染物,通过改变催化剂的使用条件考察了氙灯光照下催化剂对水溶液中含碘类造影剂(ICMs)的光催化降解性能,并且分析了催化氧化过程中可能的污染物降解途径以及转化产物.结果表明,合成后的催化剂结构稳定,相对于使用单一催化剂(Ag3PO4或g-C3N4)条件下,复合催化剂对ICMs的光降解性能都得到大幅度提升,经条件优化后,确定Ag3PO4与g-C3N4的质量比例为0.15∶0.1时降解效果最佳,但不可超过0.2∶0.1,且降解性能与催化剂的投加浓度呈正相关,浓度在0.75 ...  相似文献   
694.
Ce1-xZrxO2 composite oxides (molar, x = 0-1.0, interval of 0.2) were prepared by a cetyltrimethylammonium bromide-assisted precipitation method. The enhancement of silver-species modification and catalytic mechanism of adsorption-transformation-desorption process were investigated over the Ag-impregnated catalysts for low-temperature selective catalytic oxidation of ammonia (NH3-SCO). The optimal 5 wt.% Ag/Ce0.6Zr0.4O2 catalyst presented good NH3-SCO performance with >90% NH3 conversion at temperature (T) ≥ 250°C and 89% N2 selectivity. Despite the irregular block shape and underdeveloped specific surface area (∼60 m2/g), the naked and Ag-modified Ce0.6Zr0.4O2 solid solution still obtained highly dispersed distribution of surface elements analyzed by scanning electron microscope-energy dispersive spectrometer (SEM-EDS) (mapping), N2 adsorption-desorption test and X-ray diffraction (XRD). H2 temperature programmed reduction (H2-TPR) and X-ray photoelectron spectroscopy (XPS) results indicated that Ag-modification enhanced the mobility and activation of oxygen-species leading to a promotion on CeO2 reducibility and synergistic Ag0/Ag+ and Ce4+/Ce3+ redox cycles. Besides, Ag+/Ag2O clusters could facilitate the formation of surface oxygen vacancies that was beneficial to the adsorption and activation of ammonia. NH3-temperature programmed desorption (NH3-TPD) showed more adsorption-desorption capacity to ammonia were provided by physical, weak- and medium-strong acid sites. Diffused reflectance infrared Fourier transform spectroscopy (DRIFTS) experiments revealed the activation of ammonia might be the control step of NH3-SCO procedure, during which NH3 dehydrogenation derived from NHx-species and also internal selective catalytic reduction (i-SCR) reactions were proposed.  相似文献   
695.
南京城市大气氨-铵的高频演化及其气粒转化机制   总被引:2,自引:1,他引:1  
本研究于2018年秋季利用在线气体和气溶胶组分监测仪以高时间分辨率连续测定南京市大气中的气体(主要是NH_3)与二次无机气溶胶(主要是NH_4~+、NO_3~-和SO_4~(2-))浓度,借此研究污染和非污染期城市大气NH_3和NH_4~+的演化规律,进而探讨NH_3-NH_4~+气粒转化过程中的化学机制.结果表明,观测期间NH_3和NH_4~+浓度的平均值(±1σ)分别为(15. 3±6. 7)μg·m-3和(11. 3±7. 8)μg·m-3,且日变化在污染和非污染事件中呈现出显著的差异.综合在线观测的NH_3和NH_4~+浓度数据,通过计算潜在源贡献因子,分析了NH_3和NH_4~+的潜在贡献源区在重污染过程受长距离污染传输影响较小,证明城市也是NH_3排放的重要热点地区.进一步分析发现,NH_3-NH_4~+的气粒转化是影响NH_3和NH_4~+日变化的主要驱动因子.具体体现在:低温、高湿(温度在7. 5~12. 5℃,湿度在50%~90%)时,NH_3和NH_4~+的气固转化速度较快,NH_3与酸性物质反应生成更多的NH_4~+,使得(NH4)2SO4和NH4NO3的形成从而导致污染事件的加剧.研究结果有助于厘清城市大气NH_3的来源和转化机制及其对颗粒物的潜在贡献.  相似文献   
696.
环渤海芦苇湿地磷的吸附容量及释放风险评估   总被引:6,自引:6,他引:0  
宋佳伟  徐刚  张扬  吕迎春 《环境科学》2020,41(2):728-733
滨海湿地地处陆海交汇的关键带,是磷的"汇"、"源"和"转化器",在全球磷循环过程中扮演着十分重要的角色,其对水体磷素的截留能力日益受到关注.本文以环渤海地区芦苇湿地沉积物为研究对象,利用批处理实验研究了湿地磷的吸附容量和释放风险.结果表明,湿地沉积物磷的最大吸附容量(Qmax)为693.7~2117.2 mg·kg-1,平均值为1468.6 mg·kg-1,Qmax的大小顺序为七里海湿地 > 北大港湿地 > 南大港湿地 > 辽河三角洲湿地 > 寿光滨海湿地 > 黄河三角洲湿地.环渤海湿地沉积物磷吸附主要受Ca、Mg和TOC含量的影响.环渤海湿地磷吸附饱和度(DPS)和释放风险指数(ERI)分别为0.28%~4.50%和0.53%~10.10%,结果表明除寿光滨海湿地磷释放风险为中度风险外,其它湿地磷释放风险较低.总之,环渤海地区芦苇湿地沉积物具有较强磷吸附能力,沉积物为水体磷的"汇",沉积物释磷风险较低.建议在环渤海污染治理过程中充分发挥滨海湿地对磷的净化拦截作用,以降低陆源污染对近海水环境的影响.  相似文献   
697.
打印材料是限制3D打印技术发展和推广应用的瓶颈问题,目前已经发现部分固体废弃物与3D打印的契合度很高,可以用于制备3D打印材料.本文综述了4类可以用于3D打印的固体废弃物,包括硅铝基废弃物、农林废弃物、废旧塑料和废旧金属,着重讨论了这4类废弃物制备3D打印材料的方法以及废弃物的添加对原打印材料造成的影响,同时分析了当前废弃物制备3D打印材料需要解决的问题,并对废弃物基3D打印材料的发展趋势进行了展望.  相似文献   
698.
采集太原市城区夏季VOCs样品并分析其浓度特征,使用参数修正法得到VOCs初始浓度,分析其来源及对O3生成的贡献.结果显示:太原市城区总VOCs平均浓度为48.13 μg/m3,烷烃(25.52 μg/m3)为主要组分.VOCs浓度呈明显日变化特征,在日间(10:00~14:00)光化学产生O3的关键时段浓度最低.油品挥发、机动车排放、燃煤、植物排放与液化石油气/天燃气(LPG/NG)使用源对修正后环境VOCs的贡献分别为26.89%、25.55%、21.14%、14.99%、11.44%,对O3生成的贡献分别为21.44%、33.10%、24.07%、13.77%、7.62%.机动车为新鲜排放气团VOCs的重要来源,而油品挥发、燃煤的输送与本地积累是其他(混合、夜间与反应)气团VOCs的重要来源.机动车排放、油品挥发与燃煤为VOCs与O3生成的重要贡献源,控制此类源排放可减少太原市城区环境VOCs浓度并有效降低O3生成.  相似文献   
699.
Environment-friendly nano-catalysts capable of activating peroxymonosulfate (PMS) have received increasing attention recently. Nevertheless, traditional nano-catalysts are generally well dispersed and difficult to be separated from reaction system, so it is particularly important to develop nano-catalysts with both good catalytic activity and excellent recycling efficiency. In this work, magnetically recoverable Fe3O4-modified ternary CoFeCu-layered double hydroxides (Fe3O4/CoFeCu-LDHs) was prepared by a simple co-precipitation method and initially applied to activate PMS for the degradation of Rhodamine B (RhB). X-ray diffraction (XRD), fourier transform infrared spectrometer (FT-IR), scanning electron microscope (SEM), transmission electron microscopy (TEM), Brunauer-Emmett-Teller method (BET), and vibrating sample magnetometer (VSM) were applied to characterize morphology, structure, specific surface area and magnetism. In addition, the effects of several key parameters were evaluated. The Fe3O4/CoFeCu-LDHs exhibited high catalytic activity, and RhB degradation efficiency could reach 100% within 20 min by adding 0.2 g/L of catalyst and 1 mmol/L of PMS into 50 mg/L of RhB solution under a wide pH condition (3.0-7.0). Notably, the Fe3O4/CoFeCu-LDHs showed good super-paramagnetism and excellent stability, which could be effectively and quickly recovered under magnetic condition, and the degradation efficiency after ten cycles could still maintain 98.95%. Both radicals quenching tests and electron spin resonance (ESR) identified both HO? and SO4?? were involved and SO4?? played a dominant role on the RhB degradation. Finally, the chemical states of the sample's surface elements were measured by X-ray photoelectron spectroscopy (XPS), and the possible activation mechanism in Fe3O4/CoFeCu-LDHs/PMS system was proposed according to comprehensive analysis.  相似文献   
700.
Understanding ozone (O3) formation regime is a prerequisite in formulating an effective O3 pollution control strategy. Photochemical indicator is a simple and direct method in identifying O3 formation regimes. Most used indicators are derived from observations, whereas the role of atmospheric oxidation is not in consideration, which is the core driver of O3 formation. Thus, it may impact accuracy in signaling O3 formation regimes. In this study, an advanced three-dimensional numerical modeling system was used to investigate the relationship between atmospheric oxidation and O3 formation regimes during a long-lasting O3 exceedance event in September 2017 over the Pearl River Delta (PRD) of China. We discovered a clear relationship between atmospheric oxidative capacity and O3 formation regime. Over eastern PRD, O3 formation was mainly in a NOx-limited regime when HO2/OH ratio was higher than 11, while in a VOC-limited regime when the ratio was lower than 9.5. Over central and western PRD, an HO2/OH ratio higher than 5 and lower than 2 was indicative of NOx-limited and VOC-limited regime, respectively. Physical contribution, including horizontal transport and vertical transport, may pose uncertainties on the indication of O3 formation regime by HO2/OH ratio. In comparison with other commonly used photochemical indicators, HO2/OH ratio had the best performance in differentiating O3 formation regimes. This study highlighted the necessities in using an atmospheric oxidative capacity-based indicator to infer O3 formation regime, and underscored the importance of characterizing behaviors of radicals to gain insight in atmospheric processes leading to O3 pollution over a photochemically active region.  相似文献   
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