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1 IntrudctionOxygensensorsareofgreatimportanceinenvironmentalmonitoring (e g.,theamountofoxy gendissolvedinwaterisanindicatorofthequalityofwaterbecauseadecreaseinthisamountusual lyindicatesthepresentoforganicwaste) ,inindustrialprocesscontrol (e g.carefu… 相似文献
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构建了双室微生物燃料电池(double microbial fuel cells,DMFC)型毒性传感器分别对Cr(Ⅵ)、Cd2+、Cu2+、Zn2+进行在线检测研究。通过对反应器进行优化,确定DMFC在外电阻为1 000 Ω时达到最大功率密度;外循环速率为0.933 4 mL·min-1时反应器运行较稳定。在最优条件下,通过监测铜离子来确定检测时间为60 min,清洗时间为10 min。在以上条件下进行重金属检测,结果表明4种重金属的检测范围分别为0.3~10、0.4~10、40~160、15~80 mg·L-1。抑制率可以用来验证反应器的可行性,检测范围内抑制率与重金属浓度呈现一定的线性关系,其相关系数分别为0.959 7、0.979 5、0.944 1、0.936 6。并可得到相应的线性方程,这些方程可用于验证DMFC-传感器的稳定性。选取检测范围内的浓度进行验证,结果表明4种重金属的相对误差均小于11%,传感器相对稳定并可长期运行。 相似文献
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吸湿性是气溶胶重要的理化性质之一,气溶胶吸湿增长不仅会通过大气辐射效应影响气候,还对大气能见度有重要影响。介绍了气溶胶粒径吸湿增长与散射吸湿增长的概念,总结了测量气溶胶吸湿增长的方法,分析了粒径、化学组分、污染条件和混合状态对吸湿性的影响。结果表明:气溶胶的吸湿增长会使颗粒物含水量增多,改变气溶胶消光能力,从而对大气能见度以及气溶胶辐射强迫造成影响。未来,建议着重关注高相对湿度(相对湿度大于95%)下的气溶胶吸湿增长,加强气溶胶吸湿增长的垂直观测研究,并广泛开展吸湿和脱水2种环境下的气溶胶散射吸湿增长的测量和研究。
相似文献106.
S.M. Eldridge C.R. Chen Z.H. Xu P.N. Nelson S.E. Boyd I. Meszaros K.Y. Chan 《Waste management (New York, N.Y.)》2013,33(11):2157-2169
Using solid state 13C NMR data and elemental composition in a molecular mixing model, we estimated the molecular components of the organic matter in 16 recycled organic (RO) wastes representative of the major materials generated in the Sydney basin area. Close correspondence was found between the measured NMR signal intensities and those predicted by the model for all RO wastes except for poultry manure char. Molecular nature of the organic matter differed widely between the RO wastes. As a proportion of organic C, carbohydrate C ranged from 0.07 to 0.63, protein C from <0.01 to 0.66, lignin C from <0.01 to 0.31, aliphatic C from 0.09 to 0.73, carbonyl C from 0.02 to 0.23, and char C from 0 to 0.45. This method is considered preferable to techniques involving imprecise extraction methods for RO wastes. Molecular composition data has great potential as a predictor of RO waste soil carbon and nutrient outcomes. 相似文献
107.
Narayan Yoganandan Hans Hauschild John Humm Yuvaraj Purushothaman Frank A. Pintar 《Traffic injury prevention》2019,20(4):S32-S37
AbstractObjective: The focus of this study is side impact. Though occupant injury assessment and protection in nearside impacts has received considerable attention and safety standards have been promulgated, field studies show that a majority of far-side occupant injuries are focused on the head and thorax. The 50th percentile male Test Device for Human Occupant Restraint (THOR) has been used in oblique and lateral far-side impact sled tests, and regional body accelerations and forces and moments recorded by load cells have been previously reported. The aim of this study is to evaluate the chestband-based deflection responses from these tests.Methods: The 3-point belt–restrained 50th percentile male THOR dummy was seated upright in a buck consisting of a rigid flat seat, simulated center console, dashboard, far-side side door structure, and armrest. It was designed to conduct pure lateral and oblique impacts. The center console, dashboard, simulated door structure, and armrest were covered with energy-absorbing materials. A center-mounted airbag was mounted to the right side of the seat. Two 59-gage chestbands were routed on the circumference of the thorax, with the upper and lower chestbands at the level of the third and sixth ribs, respectively, following the rib geometry. Oblique and pure lateral far-side impact tests with and without airbags were conducted at 8.3 m/s. Maximum chest deflections were computed by processing temporal contours using custom software and 3 methods: Procedures paralleling human cadaver studies, using the actual anchor point location and actual alignment of the InfraRed Telescoping Rods for the Assessment of Chest Compression (IR-TRACC) in the dummy on each aspect—that is, right or left,—and using the same anchor location of the internal sensor but determining the location of the peak chest deflection on the contour confined to the aspect of the sensor; these were termed the SD, ID, and TD metrics, respectively.Results: All deformation contours at the upper and lower thorax levels and associated peak deflections are given for all tests. Briefly, the ID metrics were the lowest in magnitude for both pure lateral and oblique modes, regardless of the presence or absence of an airbag. This was followed by the TD metric, and the SD metric produced the greatest deflections.Conclusion: The chestbands provide a unique opportunity to compute peak deflections that parallel current IR-TRACC-type deflections and allow computation of peak deflections independent of the initial point of attachment to the rib. The differing locations of the peak deflection vectors along the rib contours for different test conditions suggest that a priori attachment is less effective. Further, varying magnitudes of the differences between ID and TD metrics underscore the difficulty in extrapolating ID outputs under different conditions: Pure lateral versus oblique, airbag presence, and thoracic levels. Deflection measurements should, therefore, not be limited to an instrument that can only track from a fixed point. For improved predictions, these results suggest the need to investigate alternative techniques, such as optical methods to improve chest deflection measurements for far-side occupant injury assessment and mitigation. 相似文献
108.
利用探空资料、NECP再分析资料、AERONET气溶胶反演资料等分析了北京地区一次典型灰霾天气过程的成因及气溶胶光学特性参数变化情况.结果表明:此次灰霾期间,稳定的环流形势、湿润的环境及逆温结构的存在是灰霾得以持续和发展的重要原因.灰霾期间AOD、PM2.5浓度逐渐增大,能见度逐渐降低,这可能与局地气溶胶的累积和相对湿度的增大有关,使气溶胶粒子的消光性增强.气溶胶的体积谱表现为双峰型结构,细粒子体积浓度峰值远大于粗粒子浓度峰值,且细粒子浓度峰值逐日增大,Angstrom波长指数在1.2~1.4之间,两参数均可表明此次灰霾过程的污染粒子以气溶胶细粒子为主;灰霾期间SSA逐日增大,表明气溶胶粒子的散射性逐渐增强,SSA随波长的变化主要呈现两种变化趋势,这与当日主控粒子的尺度有关.因气溶胶的作用,使到达地面的辐射通量减小.这些光学特性参量的变化为了解北京地区灰霾期间气溶胶特性及其气候效应提供了参考. 相似文献
109.
沙尘不同的垂直分布对大气的加热作用不同,通过卫星观测结合数值模拟,可以更清楚地了解沙尘辐射加热作用,有利于理解沙尘对该地区大气热结构的影响机制.因此,本研究利用CALIPSO气溶胶产品和SBDART模式,分析了2007—2020年塔克拉玛干沙漠和青藏高原沙尘气溶胶及其短波加热率的时空分布特征.结果表明,塔克拉玛干沙漠和青藏高原的年平均沙尘气溶胶光学厚度(DAOD,532 nm)分别为0.300~0.350和0.086~0.108,平均值分别为0.328和0.097.塔克拉玛干沙漠季节平均DAOD的最大、最小值分别出现在春季和冬季,而青藏高原的最大、最小值分别出现在夏季和秋季.塔克拉玛干沙漠和青藏高原的沙尘消光系数(σD)最大值分别出现在春季和夏季.2007—2020年,两地的σD在春季均呈增加趋势,而在秋季则呈减小趋势.春季和夏季的短波沙尘加热率(SW DHR)均大于其它两个季节,其中春季最大,塔克拉玛干沙漠上空冬季最弱,青藏高原上空秋季最弱.春夏季,青藏高原北坡存在较强沙尘加热层,其顶部高于5 km,其强度及高值区从春季到冬季逐渐减小.从年变化来看,春季短波加热率呈加强趋势,秋季呈减... 相似文献
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利用2013年地基CE-318太阳光度计观测数据,结合中分辨率成像光谱仪(MODIS)遥感产品和HYSPLIT后向轨迹分析,研究了一次东南亚生物质燃烧污染长距离输送至中国西南昆明站点过程(2013年4月58日)中,气溶胶光学特性和辐射特性的变化及其可能来源.结果表明,此次污染过程期间,我国西南地区生物质燃烧活动较少,而中南半岛地区生物质燃烧活动显著.4月57日,昆明站点气溶胶光学厚度(AOD)升高,消光波长指数(EAE)和吸收波长指数(AAE)均增大.此外,依据EAE和AAE分类方法,56日昆明站点以城市工业气溶胶为主,78日以生物质燃烧气溶胶为主,其细模态峰值半径(0.11μm)小于56日(0.15μm),7日细模态粒子体积浓度峰值(约为0.16μm 3/μm 2)是5日的2倍.气溶胶直接辐射强迫(ARF)日变化结果表明4月7日气溶胶对地表的降温效应达到最大,对大气的加热作用最强.气溶胶直接辐射强迫效率值(ARFE)的变化表明生物质燃烧气溶胶对大气顶的降温作用减弱.MODIS... 相似文献