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991.
基于IVE模型和大数据分析的杭州市道路移动源主要温室气体排放清单研究 总被引:1,自引:0,他引:1
利用IVE模型和对杭州市机动车排放管理数据库大数据的分析,得到杭州市2015年各类机动车主要温室气体高分辨率排放清单,分析了排放分担情况及时间变化特征,并利用Arc GIS及杭州市路网信息建立了1 km×1 km网格化空间分布.结果表明,杭州市道路移动源温室气体排放中CO_2、CH_4和N_2O的年排放量分别为818.11×10~4、0.85×10~4和0.07×10~4t,合计856.79×10~4t(以CO2当量计).从温室气体种类来看,CO_2占道路移动源温室气体排放总量的绝大部分,为95.5%;从机动车类型来看,小微型客车对道路移动源温室气体排放的贡献率最大,占72.8%;从道路类型的排放情况来看,杭州市市中心、城区、城郊和郊区中温室气体合计CO_2当量贡献率最高的均为主干路,分别为43.4%、61.8%、58.0%和42.4%.杭州市道路移动源温室气体排放强度均呈现由城市中心向城市边缘递减的趋势,同时温室气体排放量日变化特征明显,均出现弱双峰现象. 相似文献
992.
为了解深圳地区黑碳气溶胶(BC)的污染特征,使用深圳市西涌(XC)站点(郊区)和竹子林(ZZL)站点(城区)2014年1月1日~2015年6月30日测得的BC浓度及常规气象资料,对比研究了深圳地区两个不同代表性站点的BC变化特征.结果表明:在观测期间,郊区XC和城区ZZL站点BC小时平均浓度分别为(1.12±0.90),(2.58±2.00)μg/m3,本底浓度分别为(0.27±1.31),(1.07±0.85)μg/m3,气溶胶吸收系数σabs分别为(5.87±4.81),(13.47±10.50) Mm-1,城区站点值均高于郊区站点.两站点BC浓度分布均为对数正态分布,且都呈现干季高、湿季低的季节变化特点.日变化分析表明ZZL站点BC浓度呈现明显的双峰结构,XC站点日变化不明显.通过计算两地的气溶胶波长吸收指数AAE值,发现两地AAE值均接近1,说明两地BC污染主要来源于化石燃料的燃烧.进一步分析可知XC站点西北方向32km处是世界第三大集装箱码头,当西北风达到一定程度时(10~20m/s),码头排放的污染物将严重影响XC站点的BC浓度.后向轨迹聚类分析结果表明,XC站点主要受中远距离输送影响,ZZL站点主要受周边及本地污染源排放影响. 相似文献
993.
再开发利用工业场地土壤重金属含量分布及生态风险 总被引:6,自引:5,他引:1
选取上海市普陀、宝山、闵行和嘉定这4个区内50块典型场地,测定1847个不同垂直剖面深度土壤样品中重金属Hg、Cd、Pb、Cr和As含量,并通过内梅罗综合指数法和潜在生态风险指数法进行评价.从总体上看,Hg、Cd、Pb、Cr和As在表层土壤样品中的平均含量分别为0.33、0.37、74.55、69.23和9.05 mg ·kg-1,其中Hg、Cd和Pb均超过上海市土壤背景值,分别是背景值的2.75、2.85和2.93倍;5种重金属含量随着土壤垂直剖面深度的增加逐渐降低,深层和饱和带土壤重金属含量接近或低于背景值水平,这表明人类活动扰动影响主要局限于表层.普陀区表层土壤中Hg、Cd和Pb的累积程度最为明显,平均含量是背景值的4.25、4.85和3.09倍;宝山区的Hg和Pb平均含量则为背景值的4.92和6.43倍.宝山区和普陀区的内梅罗综合指数分别为3.70和3.20,属重污染等级;普陀区潜在生态风险指数最高为398.59,具有很强风险,宝山潜在生态风险指数为303.08,具较强风险.闵行和嘉定土壤重金属含量和生态风险水平相对较低.综上,再开发利用工业场地土壤重金属污染受企业生产年限、行业类型及历史管理水平等因素的综合影响,工业发展较早的普陀和宝山土壤重金属累积程度明显高于闵行和嘉定.工业场地土壤中重金属Hg、Cd和Pb的污染值得关注. 相似文献
994.
微差爆破延时的识别是爆破方案调整和优化的重要依据。采用HHT和分形组合方法对实际隧道工程采集到的爆破振动信号进行了分析。利用HHT变换中的EMD(Empirical Mode Decomposition)分解对采集到的典型爆破振动信号分解为12个imf(Intrinsic Mode Function)分量。通过分形盒维数算法,计算得到原信号及其各imf分量的分形盒维数值和自相似性因子值,并确定imf 4分量为信号的主分量。对其进行HHT变换取模,准确识别了微差爆破雷管实际延期时间。分析结果表明,HHT和分形组合方法对于微差爆破延时的识别可靠,精度高。 相似文献
995.
Viviparity (giving birth to live young) in fossil reptiles has been known only in a few marine groups: ichthyosaurs, pachypleurosaurs,
and mosasaurs. Here, we report a pregnant specimen of the Early Cretaceous Hyphalosaurus baitaigouensis, a species of Choristodera, a diapsid group known from unequivocal fossil remains from the Middle Jurassic to the early Miocene
(about 165 to 20 million years ago). This specimen provides the first evidence of viviparity in choristoderan reptiles and
is also the sole record of viviparity in fossil reptiles which lived in freshwater ecosystems. This exquisitely preserved
specimen contains up to 18 embryos arranged in pairs. Size comparison with small free-living individuals and the straight
posture of the posterior-most pair suggest that those embryos were at term and had probably reached parturition. The posterior-most
embryo on the left side has the head positioned toward the rear, contrary to normal position, suggesting a complication that
may have contributed to the mother’s death. Viviparity would certainly have freed species of Hyphalosaurus from the need to return to land to deposit eggs; taking this advantage, they would have avoided intense competition with
contemporaneous terrestrial carnivores such as dinosaurs. 相似文献
996.
福州市经济增长与环境污染的计量分析 总被引:2,自引:0,他引:2
根据环境库兹涅茨曲线原理,选取福州市1990年-2008年的经济与环境数据,运用EXCEL软件,分析福州市经济因子与环境因子的相关关系,并建立模拟经济因子与环境因子之间动态回归模型.通过人均GDP污染排放量模型发现,福州市污染排放量并不符合环境库兹涅茨曲线的倒“U”模型。工业废水排放量呈现正“U”型。工业废气排放量与工业固废产生量呈现倒“U”型的左侧部分,转折点尚未出现。环境质量并非随着GDP的增长而增高,产业结构调整、环境政策实施以及工业化进程等因素是决定环境质量的主导因素。 相似文献
997.
998.
999.
Xiaoxin Cao Xia Huang Xiaoyuan Zhang Peng Liang Mingzhi Fan 《Frontiers of Environmental Science & Engineering in China》2009,3(3):307-312
Current methods for testing the electricity generation capacity of isolates are time- and labor-consuming. This paper presents
a rapid voltage testing system of exoelectrogenic bacteria called Quickscreen, which is based on a microliter microbial fuel
cell (MFC). Geobacter sulfurreducens and Shewanella baltica were used as the model exoelectrogenic bacteria; Escherichia coli that cannot generate electricity was used as a negative control. It was found that the electricity generation capacity of
the isolates could be determined within about five hours by using Quickscreen, and that its time was relatively rapid compared
with the time needed by using larger MFCs. A parallel, stable, and low background voltage was achieved using titanium as a
current collector in the blank run. The external resistance had little impact on the blank run during the initial period.
The cathode with a five-hole configuration, used to hydrate the carbon cathode, gave higher cathode potential than that with
a one-hole configuration. Steady discharge and current interrupt methods showed that the anode mostly contributed to the large
internal resistance of the Quickscreen system. However, the addition of graphite felt decreased the resistance from 18 to
5 kΩ. This device was proved to be useful to rapidly evaluate the electricity generation capacity of different bacteria. 相似文献
1000.
Shubo Deng Danmeng Shuai Qiang Yu Jun Huang Gang Yu 《Frontiers of Environmental Science & Engineering in China》2009,3(2):171-177
Perfluorooctane sulfonate (PFOS), as a potential persistent organic pollutant, has been widely detected in water environments,
and has become a great concern in recent years. PFOS is very stable and difficult to decompose using conventional techniques.
Sorption may be an attractive method to remove it from water. In this study, the molecularly imprinted polymer (MIP) adsorbents
were prepared through the polymerization of 4-vinylpyridine under different preparation conditions in order to remove perfluorooctane
sulfonate (PFOS) from water. The MIP adsorbents using perfluorooctanoic acid (PFOA) as the template had good imprinting effects
and could selectively remove PFOS from aqueous solution. The sorption behaviors including sorption kinetics, isotherms, and
effect of pH, salt, and competitive anions were investigated. Experimental results showed that the sorption of PFOS on the
MIP adsorbents was very fast, pH-dependent, and highly selective. The achieved fast sorption equilibrium within 1 h was attributed
to the surface sorption on the fine adsorbents. The sorption isotherms showed that the sorption selectivity of PFOS on the
MIP adsorbents decreased at high PFOS concentrations, which may be due to the double-layer sorption and the formation of PFOS
micelles on the sorbent surface. The sorption of PFOS on the MIP adsorbents was mainly dominated by the electrostatic interaction
between the protonated vinylpyridine on the adsorbent surface and the anionic PFOS. The prepared MIP adsorbents can potentially
be applied in water and wastewater treatment for selective removal of PFOS. 相似文献