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741.
文章介绍了南京在青奥会环境保障方面的管控措施与取得的成效,认为南京青奥环境保障成功的关键在于高效畅通的运行机制、强力有效的控污手段、不遗余力的执法监管、紧密配合的区域联防,以及科技支撑的科学决策。最后,从构建南京都市圈生态环保一体化格局、实施重点片区工业布局优化调整、淘汰落后产能、建立环境执法高压严管长效机制等方面,提出了后青奥时代南京加强环境监管、改善环境质量的对策与建议。  相似文献   
742.
• N-doped activated carbon was prepared for catalytic pyrolysis of walnut shell. • Alkylphenols were selectively produced from catalytic pyrolysis process. • The alkylphenols yield increased by 8.5 times under the optimal conditions. • Formation mechanism of alkylphenols was proposed. Alkylphenols are a group of valuable phenolic compounds that can be derived from lignocellulosic biomass. In this study, three activated carbons (ACs) were prepared for catalytic fast pyrolysis (CFP) of walnut shell to produce alkylphenols, including nitrogen-doped walnut shell-derived activated carbon (N/WSAC), nitrogen-doped rice husk-derived activated carbon (N/RHAC) and walnut shell-derived activated carbon (WSAC). Pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) experiments were carried out to reveal the influences of AC type, pyrolytic temperature, and AC-to-walnut shell (AC-to-WS) ratio on the product distributions. Results showed that with nitrogen doping, the N/WSAC possessed stronger capability than WSAC toward the alkylphenols production, and moreover, the N/WSAC also exhibited better effects than N/RHAC to prepare alkylphenols. Under the catalysis of N/WSAC, yields of alkylphenols were significantly increased, especially phenol, cresol and 4-ethylphenol. As the increase of pyrolytic temperature, the alkylphenols yield first increased and then decreased, while high selectivity could be obtained at low pyrolytic temperatures. Such a trend was also observed as the AC-to-WS ratio continuously increased. The alkylphenols production achieved a maximal yield of 44.19 mg/g with the corresponding selectivity of 34.7% at the pyrolytic temperature of 400°C and AC-to-WS ratio of 3, compared with those of only 4.67 mg/g and 6.1% without catalyst. In addition, the possible formation mechanism of alkylphenols was also proposed with the catalysis of N/WSAC.  相似文献   
743.
• Aerosol transmission is an indispensable route of COVID-19 spread. • Different outbreak sites have different epidemiologic feature. • SRAS-CoV-2 can exist for a long time in aerosol. • SRAS-CoV-2 RNA can be detected in aerosol in diverse places. • Some environmental factors can impact SARS-CoV-2 transportation in aerosol. Patients with COVID-19 have revealed a massive outbreak around the world, leading to widespread concerns in global scope. Figuring out the transmission route of COVID-19 is necessary to control further spread. We analyzed the data of 43 patients in Baodi Department Store (China) to supplement the transmission route and epidemiological characteristics of COVID-19 in a cluster outbreak. Incubation median was estimated to endure 5.95 days (2–13 days). Almost 76.3% of patients sought medical attention immediately upon illness onset. The median period of illness onset to hospitalization and confirmation were 3.96 days (0–14) and 5.58 days (1–21), respectively. Patients with different cluster case could demonstrate unique epidemiological characteristics due to the particularity of outbreak sites. SRAS-CoV-2 can be released into the surrounding air through patient’s respiratory tract activities, and can exist for a long time for long-distance transportation. SRAS-CoV-2 RNA can be detected in aerosol in different sites, including isolation ward, general ward, outdoor, toilet, hallway, and crowded public area. Environmental factors influencing were analyzed and indicated that the SARS-CoV-2 transportation in aerosol was dependent on temperature, air humidity, ventilation rate and inactivating chemicals (ozone) content. As for the infection route of case numbers 2 to 6, 10, 13, 16, 17, 18, 20 and 23, we believe that aerosol transmission played a significant role in analyzing their exposure history and environmental conditions in Baodi Department Store. Aerosol transmission could occur in some cluster cases when the environmental factors are suitable, and it is an indispensable route of COVID-19 spread.  相似文献   
744.
低磷浓度下鸟粪石结晶成粒及反应器流态模拟   总被引:1,自引:0,他引:1  
杨露  平倩  李咏梅 《中国环境科学》2016,36(4):1017-1026
为扩大鸟粪石(MAP)结晶成粒技术的应用范围,对低磷浓度下MAP成粒最优条件进行了研究.试验得出该技术应用的磷浓度应大于50mg/L,并在此基础上研究得到低磷浓度条件下MAP结晶成粒的最佳条件:pH 9.0,磷氮物质的量比1:8.此时生成的MAP平均粒径为0.56mm,总体积生长率为4.95cm3/h,纯度可达99.9%.为进一步优化流化床反应器中MAP成粒条件,利用CFD商用软件(Fluent 6.3)对反应器流态进行了模拟.结果表明:MAP流化床反应器的生长区能够形成明显的自下而上的水力分级,截面流速也较为均匀,有利于颗粒的生成,但沉淀区和进水区存在死区、涡流等不利条件.因此,有必要改进生长区和沉淀区的连接方式以及进水管的分布,以获得更为优质的MAP颗粒.  相似文献   
745.
Li  Hui  Lu  Jun  Li  Qu-Sheng  He  Bao-Yan  Mei  Xiu-Qin  Yu  Dan-Ping  Xu  Zhi-Min  Guo  Shi-Hong  Chen  Hui-Jun 《Environmental geochemistry and health》2016,38(1):99-110
Environmental Geochemistry and Health - Leaching experiments were conducted to investigate the effects of desalination levels and sediment depths on potential bioavailability of heavy metal (Cd,...  相似文献   
746.
个人护理用品的大量使用导致其生产量和排放量也日渐增加,会不可避免地进入环境,对生态环境和人体健康产生影响。本文归纳整理了个人护理用品的分类,总结了其中代表化合物对水生生物的生态毒性研究现状,分析比较了主要废水处理工艺技术对个人护理用品的去除效果,为今后对这类物质的生态毒性和处理工艺研究提供参考。  相似文献   
747.
采用批实验研究了蒙脱石对左氧氟沙星的吸附机理及对左氧氟沙星抗菌作用的影响。结果表明,中性条件下存在培养基时,左氧氟沙星在蒙脱石上前2 h即达到吸附平衡,吸附等温线符合Langmuir吸附方程,吸附率达90%以上;蒙脱石吸附左氧氟沙星存在阳离子交换作用、氢键作用、疏水作用、阳离子键桥作用、静电吸附作用等物理化学过程;蒙脱石本身不具有抑菌、杀菌活性,且由于蒙脱石增大了微生物附着的比表面积,在特定情况下可以促进微生物的生长;扣除其对微生物生长的促进作用后,蒙脱石吸附左氧氟沙星降低了后者的毒性效应,其抑菌率降低约25%。上述结果为进一步研究抗生素在环境中的毒理效应提供了基础依据。  相似文献   
748.
观察8周中等强度游泳运动对2,3,7,8-四氯二苯并二恶英(2,3,7,8-tetrachlorodibenzo-p-dioxin,2,3,7,8-TCDD)急性暴露大鼠肝脏氧化应激的影响。以8周龄雄性Sprague Dawley大鼠为研究对象,将大鼠随机分为玉米油静养组(NC组)、玉米油运动组(EC组)、TCDD静养组(NT)和TCDD运动组(ET组)。将TCDD溶于玉米油中,NT和ET组大鼠按照10μg·kg-1(以单位体重计)腹腔注射TCDD,NC和EC组大鼠注射等量玉米油。正式实验开始后,EC和ET组大鼠进行运动(尾部负重5%游泳30min),每周运动5 d,共8周,NC和NT组大鼠不进行任何运动干预。8周后,称重并宰杀大鼠,收集血清和肝组织样本,待测血清天门冬氨酸氨基转移酶(AST)、丙氨酸氨基转移酶(ALT)的活性;肝组织丙二醛(MDA)含量,超氧化物歧化酶(SOD)、过氧化氢酶(CAT)以及谷胱甘肽过氧化物酶(GSH-Px)的活性。将数据进行多因素方差分析,结果表明,染毒可升高大鼠血清AST的活性,增加肝脏MDA的含量,降低肝脏SOD、CAT和GSH-Px的活性;运动可降低大鼠肝脏GSH-Px的活性;染毒后运动可减少肝脏MDA的含量,升高肝脏SOD、CAT和GSH-Px的活性。研究表明,TCDD急性暴露可导致大鼠肝细胞功能受损,导致大鼠肝脏发生氧化应激。8周有氧运动改善TCDD急性暴露诱导的肝细胞损伤,改善肝脏氧化应激,这可能是运动改善TCDD肝毒性的机制之一。  相似文献   
749.
小麦根系菲与磷吸收及转运的相互作用   总被引:1,自引:0,他引:1  
作物根系对多环芳烃(PAHs)与磷吸收及转运之间的相互作用研究对农产品的安全生产和PAHs污染环境植物修复的强化具有重要意义。为此,本文以菲为PAHs的代表,采用水培试验研究了不同磷、菲水平下小麦根系菲、磷吸收及其转运的效果,旨在揭示植物根系吸收PAHs与磷素的相互作用。结果表明,在0~1 200μmol·L~(-1)磷浓度范围内,小麦根系、茎叶菲含量在低磷浓度(10μmol·L~(-1))时最高,分别为36.87 mg·kg~(-1)和2.07 mg·kg~(-1);磷含量总体呈现随磷处理浓度的升高而增大的趋势;成对数据t-检验显示无论加菲与否,根系、茎叶磷含量无显著性差异(P0.05)。磷可促进菲从根部向地上部转运,而菲对磷转运没有显著性影响。在低磷浓度下(10μmol·L~(-1)),随着菲浓度的升高,小麦根系、茎叶菲含量呈现显著升高趋势(P0.05)。磷、菲共存处理介质pH升高幅度大于单一处理。  相似文献   
750.
New particle formation (NPF) event at multi rural sites in China Identifying the characteristics of NPF event Comparing NPF event between clean and polluted conditions Quantifying contribution to the cloud condensation nuclei Implication of climate and air quality Long-term continuous measurements of particle number size distributions with mobility diameter sizes ranging from 3 to 800 nm were performed to study new particle formation (NPF) events at Shangdianzi (SDZ), Mt. Tai (TS), and Lin’an (LAN) stations representing the background atmospheric conditions in the North China Plain (NCP), Central East China (CEC), and Yangtze River Delta (YRD) regions, respectively. The mean formation rate of 3-nm particles was 6.3, 3.7, and 5.8 cm−3·s−1, and the mean particle growth rate was 3.6, 6.0, and 6.2 nm·h−1 at SDZ, TS, and LAN, respectively. The NPF event characteristics at the three sites indicate that there may be a stronger source of low volatile vapors and higher condensational sink of pre-existing particles in the YRD region. The formation rate of NPF events at these sites, as well as the condensation sink, is approximately 10 times higher than some results reported at rural/urban sites in western countries. However, the growth rates appear to be 1–2 times higher. Approximately 12%–17% of all NPF events with nucleated particles grow to a climate-relevant size (>50 nm). These kinds of NPF events were normally observed with higher growth rate than the other NPF cases. Generally, the cloud condensation nuclei (CCN) number concentration can be enhanced by approximately a factor of 2–6 on these event days. The mean value of the enhancement factor is lowest at LAN (2–3) and highest at SDZ (~4). NPF events have also been found to have greater impact on CCN production in China at the regional scale than in the other background sites worldwide.  相似文献   
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