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891.
康重阳  赵军  宋国富 《中国环境科学》2019,39(10):4033-4042
使用2005~2017年遥感数据研究了全球大气边界层SO2时空分布特征及变化趋势.结果表明:空间分布上SO2呈现空间异质性,大气高SO2柱量值集中在以火山喷发为代表的自然源区域和以工业排放为代表的人为源及附近区域;一、二、三级SO2柱量值在全球范围内整体呈现纬度地带性分布特征,北半球受人为影响较为明显,分界线在陆地区域向南凸出,海洋上向北凹陷,而南半球受人为影响较小,分界线呈现与纬线平行趋势;2005~2017年全球大气边界层SO2单元栅格年均值整体呈现先增后减趋势,火山喷发导致2008、2009、2011年夏季出现了明显的波动,其余季节无显著变化;全球范围内大气边界层SO2年内变化,伴随太阳直射点南北移动,2005~2014年一级SO2柱量值延纬向对称轴的纬度,除10~12月份外,其余月份与对应月15日太阳赤纬基本吻合.  相似文献   
892.
The efficient maintenance of the activity of excised branches is the powerful guarantee to accurately determine gas exchange flux between the detached branches of tall trees and the atmosphere. In this study, the net photosynthetic rate(NPR) of the excised branches and branches in situ were measured simultaneously by using two photosynthetic instruments to characterize the activity of the excised branches of Phyllostachys nigra. The ratio of normalized NPR of excised branches to NPR in situ was used to assess the photosynthetic activity of detached branches. Based on photosynthetic activity, an optimal hydroponics protocol for maintaining activity of excised P. nigra branches was presented:1/8 times the concentration of Gamborg B5 vitamin mixture with p H = 6. Under the best cultivation protocol, photosynthetic activity of excised P. nigra branches could be maintained more than 90% within 6 hr in the light intensity range of 200–2000 μmol/(m2·sec) and temperature range of 13.4–28.7°C. The nitrogen dioxide(NO2) flux differences between in situ and in vitro branches and the atmosphere were compared using double dynamic chambers.Based on the maintenance method of excised branches, the NO2 exchange flux between the excised P. nigra branches and the atmosphere(from-1.01 to-2.72 nmol/(m2·sec) was basically consistent with between the branches in situ and the atmosphere(from-1.12 to-3.16 nmol/(m2 sec)) within 6 hr. Therefore, this study provided a feasible protocol for in vitro measurement of gas exchange between tall trees and the atmosphere for a period of time.  相似文献   
893.
Chengdu is a megacity in the southwest of China with high ozone (O3) mixing ratio. Observation of volatile organic compounds (VOCs), NO2 and O3 with high temporal resolution was conducted in Chengdu to investigate the chemical processes and causes of high O3 levels. The hourly mixing ratios of VOCs, NO2, and O3 were monitored by an online system from 28 August to 7 October, 2016. According to meteorological conditions, Chengdu, with relative warm weather and low wind speed, is favorable to O3 formation. Part of the O3 in Chengdu may be transported from the downtown area. In O3 episodes, the average mixing ratios of NO2 and O3 were 20.20?ppbv and 47.95?ppbv, respectively. In non-O3 episodes, the average mixing ratios of NO2 and O3 were 16.38?ppbv and 35.15?ppbv, respectively. The average mixing ratio of total VOCs (TVOCs) was 40.29?ppbv in non-O3 episodes, which was lower than that in O3 episodes (53.19?ppbv). Alkenes comprised 51.7% of the total O3 formation potential (OFP) in Chengdu, followed by aromatics which accounted for 24.2%. Ethylene, trans-pentene, propene, and BTEX (benzene, ethylbenzene, toluene, m/p-xylene, o-xylene) were also major contributors to the OFP in Chengdu. In O3 episodes, intensive secondary formations were observed during the campaign. Oxygenated VOCs (OVOCs), such as acetone, Methylethylketone (MEK), and Methylvinylketone (MVK) were abundant. Isoprene rapidly converted to MVK and Methacrolein (MACR) during O3 episodes. Acetone was mainly the oxidant of C3-C5 hydrocarbons.  相似文献   
894.
Pathogenic viruses in drinking water are great threats to public health. Visible-light-driven photocatalysis is a promising technology for virus inactivation. However, the existing photocatalytic antiviral research studies have mostly been carried out in single-component systems, neglecting the effect of natural organic matter, which exists widely in actual water bodies. In this paper, electrospun Cu-TiO2 nanofibers were prepared as photocatalysts, and their photocatalytic antiviral performance in the presence of humic acid (HA) was comprehensively studied for the first time. The properties of the reaction mixture were measured during the reaction. In addition, the safety, reliability and stability of photocatalytic disinfection in the mixed system were evaluated. The results showed that the virus removal efficiency decreased with the increase of the HA concentration. The type of reaction solution, such as PBS buffer solution or water, did not affect the removal efficiency noticeably. Under acidic conditions, the electrostatic forces between photocatalysts and viruses were strengthened, leading to higher virus removal efficiency. As the reaction time went on, the pH value in the solution increased first and then tended to be stable, the conductivity remained stable, and the dissolved oxygen increased first and then decreased. The safety test showed that the concentration of Cu ions released into the solution was lower than specified by the international standards. No photoreactivation was observed, and the addition of HA significantly reduced the reutilization efficiency of the photocatalysts.  相似文献   
895.
Novel 3D biogenic C-doped Bi_2 MoO_6/In_2O_3-ZnO Z-scheme heterojunctions were synthesized for the first time, using cotton fiber as template. The as-prepared samples showed excellent adsorption and photodegradation performance toward the hazardous antibiotic doxycycline under simulated sunlight irradiation. The morphology, phase composition and in situ carbon doping could be precisely controlled by adjusting processing parameters. The carbon doping in Bi_2 MoO_6/In_2O_3-ZnO was derived from the cotton template, and the carbon content could be varied in the range 0.9–4.4 wt.% via controlling the heat treatment temperature. The sample with Bi_2 MoO_6/In_2O_3-ZnO molar ratio of 1:2 and carbon content of1.1 wt.% exhibited the highest photocatalytic activity toward doxycycline degradation,which was 3.6 and 4.3 times higher than those of pure Bi_2 MoO_6 and Zn In Al-CLDH(calcined layered double hydroxides), respectively. It is believed that the Z-scheme heterojunction with C-doping, the 3D hierarchically micro–meso–macro porous structure, as well as the high adsorption capacity, contributed significantly to the enhanced photocatalytic activity.  相似文献   
896.
水泥工业作为工业生态系统的汇,能够多样化地利用其他行业的副产物,这种典型的产业共生模式可以通过减少资源和能源的消耗带来显著的CO2减排效果.由于产业共生在水泥行业具有一定的普遍性及巨大的CO2减排潜力,所以对水泥工业产业共生现状的了解与分析就显得尤为重要;而通过对产业共生现状的全面了解,才能对现有水泥行业产业共生的程度进行分析,并以此为参照,对未来不同政策与情景下的CO2减排潜力进行量化与评估.为实现对产业共生实际情况的模拟,以水泥-电力行业的产业共生为例,采用最优化的方法,提出了一套基于一般统计数据来模拟产业共生实际情况的系统方法,将技术、经济与政策3类不同的决策变量影响纳入模型,以模拟出最接近真实情景的产业共生情况.为验证模型的有效性,对新乡市水泥-电力行业实际的产业共生情况进行分析.结果表明:新乡市水泥-电力行业间存在普遍的产业共生现象,实地调查中有77.8%(21家)的水泥制造企业利用粉煤灰作为水泥制造的原材料.将一般统计数据与实地调查数据对比发现,一般统计数据能较好地反映企业实际物质投入产出情况;利用一般统计数据,模型对新乡市产业共生网络结构模拟的准确率高达92.6%,显示该模型能较为有效地对产业共生的实际情况进行模拟.   相似文献   
897.
随着全球气候变化的不断加剧,大气CO2浓度呈明显增加趋势,这将间接影响土壤-植物-微生物系统的氮循环过程.为研究典型水稻土壤反硝化细菌对CO2浓度升高的响应规律和机制,借助水稻密闭培养箱,运用实时荧光定量聚合酶链式反应(Real-Time qPCR)分子技术,设置不施氮(0 mg/kg)和常规施氮(100 mg/kg)2个处理,研究CO2倍增对水稻不同生长期土壤关键反硝化功能细菌(narG、nirK和nirS型)丰度的影响.结果表明:①在2种施氮水平,CO2倍增显著促进了水稻分蘖期、孕穗期、扬花期和成熟期水稻根系生长(增幅为2.96%~28.4%)、地上部生物量增加(增幅为7.1%~107.3%)以及成熟期籽粒干质量的增加(增幅为19.5%和38.0%),具有显著的增产效应.②反硝化细菌丰度对CO2倍增的响应与生育期及施氮水平有关,CO2倍增在2个施氮水平均抑制分蘖期反硝化细菌的繁殖,显著增加孕穗期反硝化细菌数量;在水稻扬花期,CO2倍增促进了施氮处理narG和nirS型反硝化细菌数量的增加,在成熟期抑制未施氮处理下narG、nirK和nirS型反硝化细菌的生长.另外,narG、nirK、nirS型反硝化细菌丰度整体表现为narG > nirS > nirK,且随水稻的生长,其在成熟期的丰度均呈降低趋势.nirK和nirS基因同属亚硝酸还原酶,但nirS基因丰度高于nirK,且对CO2倍增和施氮的响应有所差异.研究显示,CO2倍增可显著增加水稻生长和产量,不同施氮水平对稻田土壤反硝化细菌丰度的影响存在差异.   相似文献   
898.
通过两步法合成花状MoS_2/BiOI复合光催化剂,采用X射线衍射(XRD)、扫描电镜(SEM)、紫外可见漫反射(UVVis)、光电子能谱(XPS)等方法对合成的样品进行了表征,对其可能的形成机制进行探究,通过电化学表征计算出BiOI与MoS_2的价带与导带位置,显示复合材料形成了1型异质结.同时以罗丹明B(RhB)与含Cr6+溶液作为目标污染物测试光催化剂的氧化还原性能,相比于BiOI和MoS_2单体,MoS_2/BiOI复合光催化剂表现出更强的光催化氧化与还原能力,其中以质量分数为2%的MoS_2与BiOI复合光催化剂效果最佳,可见光照20 min后RhB降解率达到98.92%,80 min后Cr6+溶液光催化还原率可达到97.87%,较纯BiOI分别提高了1.79倍与3.85倍,且经过4次重复利用后仍具有较高的光催化活性.光催化降解Rh B过程中空穴(h+)与超氧自由基(·O-2)作为主要活性物种,其中空穴影响更为显著.  相似文献   
899.
NH3针对传统近地面NO2浓度空间模拟过程中NO2浓度与其影响要素之间关系的复杂非线性机制解释不充分的缺陷,本研究基于随机森林(RF)算法、融合多源地理要素开展了近地面NO2浓度空间分布模拟研究.以卫星OMI对流层NO2柱浓度数据和多源地理要素(道路交通、气象因子、土地利用/覆盖、地形高程、人口数量)为输入变量,近地面NO2浓度为输出变量,利用RF算法构建近地面NO2浓度反演模型.通过对比地面观测数据与传统土地利用回归模型(LUR)检验RF模型的有效性,基于所构建的最优RF模型在不同时间尺度下模拟分析中国大陆地区近地面NO2浓度空间分布特征.结果表明:(1)集成多源地理要素的RF回归模型精度高,月均模型整体拟合度R2 0.85,RMSE 6.08μg/m3,交叉验证的R2 0.84,RMSE 6.33μg/m3,显著高于LUR模型(拟合R2 0.53,RMSE 10.48μg/m3,交叉验证的R2 0.53,RMSE 10.49μg/m3); (2)地面NO2浓度与预测变量呈现显著的复杂非线性与时间尺度依赖关系,卫星OMI柱浓度对模型影响程度最大,重要性指标IncMSE介于97.40%~116.54%,多源地理特征变量对RF模型同样具有不可忽视的贡献力(IncMSE在23.34%~47.53%之间);(3)中国大陆地区NO2污染程度较高,年均模拟浓度为24.67μg/m3,存在明显季节性空间差异,NO2浓度冬季(31.85μg/m3) > 秋季(24.86μg/m3) > 春季(23.24μg/m3) > 夏季(18.75μg/m3),呈现以华北平原为高值中心、向外围逐渐减轻的空间分布格局.较已有研究揭示对流层NO2柱浓度宏观分布特征,本研究对近地面NO2污染特征的研究成果对于合理制定污染防控策略、降低居民暴露健康损害具有指导意义.  相似文献   
900.
选择内蒙古河套灌区强度盐碱土壤S1[电导率(EC)2.60dS/m]和轻度盐碱土壤S2[电导率(EC) 0.74dS/m]为研究对象,2014~2016年,利用静态箱法3年野外原位观测试验,研究盐碱土壤氧化亚氮(N2O)排放通量.结果表明:2种不同盐碱程度土壤N2O排放每年均存在显著差异,轻度盐碱土壤N2O累积排放量低;随EC升高,土壤盐碱程度加重,土壤N2O累积排放量升高.2014~2016年作物生长季(4~11月)轻度盐碱土壤N2O累积排放量分别为180.6,167.6,118.2mg/m2;强度盐碱土壤N2O累积排放量比轻度盐碱土壤分别增加19%、26%和45%,修复盐碱土壤成为减缓盐碱土壤N2O累积排放的重要农艺措施.  相似文献   
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