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1.
介绍了激光雷达通过垂直扫描、水平扫描和车载走航等方法在湖北大气环境监测中的应用实例。利用地基激光雷达并结合星载激光雷达监测一次沙尘传输过程,沙尘传输高度为500~4 000 m之间,且出现3次尘降,地面PM10出现3次峰值。利用激光雷达探测大气边界层高度,颗粒物浓度受边界层高度影响,当边界层高度降到500 m以下时,PM2.5浓度达到120 μg/m3,边界层高度上升到1 500 m以上时,PM2.5浓度降到30 μg/m3以下。利用激光雷达水平扫描技术,对襄阳市高新区污染物的影响进行溯源,监测得出颗粒物浓度上升的主要原因为地面扬尘。利用激光雷达车载走航监测技术,监测黄冈市颗粒物空间分布特征,在不同区域监测到2处污染扩散带,分别位于工业区与生活区。  相似文献   

2.
2020年3月2日—2021年2月28日在安庆市政务服务中心楼顶设置监测点,手工采集PM2.5样品,运用多波段碳分析仪(DRI Model 2015)分析样品中碳质组分有机碳(OC)和元素碳(EC)质量浓度;利用OC/EC法、相关分析法和主成分因子分析法对PM2.5中碳质组分的污染特征和可能来源进行解析。结果显示:安庆市手工采样期间PM2.5平均质量浓度为(45.9±28.1)μg/m3,OC和EC的平均浓度分别为(8.0±3.4)、(1.4±0.6)μg/m3,在PM2.5中占比为17.4%、3.1%。四季OC平均浓度分布为冬季(9.7±4.2)μg/m3 >春季(9.0±2.5)μg/m3 >秋季(8.3±2.9)μg/m3 >夏季(5.1±1.6)μg/m3,EC平均浓度分布为冬季(1.7±0.5)μg/m3 >春季(1.7±0.6)μg/m3 >秋季(1.3±0.4)μg/m3 >夏季(0.8±0.3)μg/m3。OC/EC范围为3.11~12.14,平均值为5.83,表明安庆市存在二次有机碳(SOC),SOC均值为(2.89±1.94)μg/m3,分别占OC和PM2.5浓度的36.1%、6.3%;四季OC、EC相关性不显著,r均小于0.85,说明安庆市的碳质组分较复杂;在不同空气质量等级条件下,OC质量浓度随着污染等级的升高而逐渐升高,EC质量浓度随着污染等级升高而先升高后降低。利用主成分分析法进行来源解析发现,道路扬尘、燃煤、柴油车尾气是碳质组分的主要来源。  相似文献   

3.
于2020年12月1日—2021年11月30日利用7波段黑碳仪(AE-31)观测苏州地区黑碳(BC)浓度变化特征,并使用黑碳仪模型和后向轨迹模型分析BC排放来源和潜在源区。结果发现,苏州地区BC年平均质量浓度为(1.29±0.64)μg/m3,冬季BC质量浓度最高,为(1.61±0.89)μg/m3,秋季为(1.34±0.61)μg/m3,春季为(1.23±0.48)μg/m3,夏季最低,为(1.03±0.43)μg/m3。各季节工作日、非工作日BC质量浓度日变化均呈早晚双峰分布规律。BC质量浓度与风速、气温、降水量呈负相关,与相对湿度相关性并不显著。黑碳来源解析结果表明,相比于固体燃料(如煤和生物质燃烧),液体燃料(如交通排放)对苏州BC质量浓度的贡献在各季节均占主要地位(74.2%~76.3%),且夏季最高,冬季最低。同时,后向轨迹模拟和浓度轨迹权重分析的潜在源区结果显示,与本地污染相比,影响苏州地区BC的更多为输送型气团;各季节BC的潜在源区也稍有差异,主要以西南方向的影响为主。  相似文献   

4.
利用2020年3月28日—5月3日南京某典型化工园区挥发性有机物(VOCs)离线监测数据,分析了园区内VOCs污染特征及臭氧生成潜势(OFP)。结果表明,春季园区φ(VOCs)范围为22.3×10-9 ~892.6×10-9,82.1%频率的φ(VOCs)<100×10-9;VOCs组分占比表现为:烷烃>含氧挥发性有机物(OVOCs)>烯烃>卤代烃>芳香烃>炔烃>有机硫。高体积分数VOCs中烷烃和烯烃占比高于低体积分数VOCs,受园区内部储罐存储、运输、转运等过程产生的油气挥发及石油化工原料、合成材料的生产影响显著。不同时刻φ(VOCs)表现为夜间最高、早晨其次、下午最低的变化特征,这与园区内部VOCs排放累积、大气边界层抬升和大气光化学反应等因素有关。OFP值范围为166.2~6 920.9 ,μg/m3,56.0%频率的OFP<500。  相似文献   

5.
为了解海州湾潮间带大型底栖动物群落结构,分析人类养殖活动对其影响,于2012-2017年对该区域大型底栖动物进行调查。结果表明:6年间共发现120种大型底栖动物,依据种类组成进行聚类分析可分为4组;调查中总平均丰度为3 495.9 ind./m2,范围为506.7~17 864.0 ind./m2;总平均生物量为197.26 g/m2,范围为1.58~489.17 g/m2。光滑河蓝蛤(Potamocorbula laevis)为第一优势种,其繁殖盛期在每年9-10月。调查期间生物多样性整体呈下降趋势,人类的养殖活动主导着海州湾潮间带大型底栖动物群落结构的变化。  相似文献   

6.
以江苏省河流湖泊为研究对象,选取不同水体代表性点位,运用多生境采样法和形态学鉴定获取淡水大型底栖无脊椎动物的物种数及对应的采样面积,拟合实际结果的物种数与面积关系对数函数曲线。所研究采样量包括采样面积值、样方及样带数。研究发现,不同水体点位最适采样量面积为1.45~12.75 m2,样方及样带总数为6~16个,其要求十分耗时耗力。为解决这一问题,以物种数与面积关系对数函数的一阶导数曲线y≈1值为临界点,提出"高效采样量"概念,并提出3条采样原则供讨论。同时得到江苏地区高效采样量:涉水可过河流采样面积为1.36 m2,涉水不可过河流采样面积为1.5 m2,不可涉水河流和浅水湖泊采样面积为1.75 m2,均需采集4个样方,1个样带。  相似文献   

7.
西沙永兴岛黑碳浓度特征初探   总被引:1,自引:1,他引:0  
2012年5月6—9日利用黑碳仪获得了西沙永兴岛小时黑碳浓度数据。结果显示,西沙永兴岛黑碳小时浓度值变化范围为0.1~2.9 μg/m3,平均浓度为0.6 μg/m3,80.5%的小时浓度数据集中在0.2~0.7 μg/m3;黑碳浓度与风速、降水密切相关,风速大于2.5 m/s有利于黑碳扩散,降水对黑碳冲刷作用明显;黑碳浓度与背景区域的瓦里关黑碳浓度相近,高于背景区域的南极中山站,明显低于国内的多个城市及郊区的黑碳浓度。  相似文献   

8.
2019年7-8月在四川省遂宁市实验学校、遂宁中学、金鱼小学、石溪浩4个点位同步开展为期20d的挥发性有机物(VOCs)离线观测,分析了遂宁市VOCs浓度时空分布特征、臭氧生成潜势(OFP)和VOCs主要来源。遂宁市TVOC体积浓度为39.4×10-9,占比较高的组分为OVOCs和烷烃,体积浓度分别为15.6×10-9和13.3×10-9,占比分别为39.5%和33.6%。遂宁中学、金鱼小学、石溪浩24 h平均体积浓度分别为29.8 ×10-9、58.4 ×10-9、30.0×10-9;加密点实验学校的小时平均浓度为22.9×10-9。遂宁市总OFP为166.7 μg/m3,占比最大的为烯烃(33.1%)。实验学校、遂宁中学、金鱼小学、石溪浩OFP浓度分别为101.2、134.4、243.6、122.1 μg/m3。金鱼小学采样点位于工业园区下风向,受工业园区企业排放源影响,VOCs浓度和OFP值均明显高于其他点位。PMF模型源解析结果表明:遂宁市VOCs来源占比最大的为工业排放源,达32%;其次为机动车尾气源、燃烧源,占比均达17%;油气挥发源、天然源、溶剂使用源分别占13%、11%、10%。工业源、机动车尾气来源占比最高的均是金鱼小学,分别为39%、30%;天然源占比较高的是实验学校(13%)和石溪浩(10%)。  相似文献   

9.
利用多元线性回归方法(REG)将多模式空气质量预报系统中3个模式(CMAQ、CAMx和NAQPMS)对北京市2016年PM2.5的预报结果和观测数据进行集合,并对集合结果进行评估。结果表明:①不同模式的预报结果不尽相同,均能够反映2016年北京地区PM2.5随时间的变化趋势,CMAQ、CAMx和NAQPMS相关系数为0.6~0.9,标准化平均偏差为-0.6~0.6。3个模式对重污染峰值预报都存在偏差,NAQPMS预报偏差低于其他模式;②基于多元线性回归集成预报模型能显著提高日均PM2.5预报的准确率,能较好地改进不同季节模式整体高估或者低估的系统性偏差现象,春季国控平均偏差由-23 μg/m3改善至-2.3 μg/m3,冬季平均偏差降低近20 μg/m3;③利用多元线性回归方法对2016年红色预警期间小时PM2.5订正结果显示,相关系数提高了0.13,均方根误差降低了20~30 μg/m3,并且对峰值浓度有较好的调整,预报峰值更为接近实况峰值,特别是对北部地区的改进效果较为明显,反映了实际观测数据对空气质量数值模式预报修正的研究意义和可行性。  相似文献   

10.
以硫酸铵-氨水溶液为淋洗液,二苯碳酰二肼为柱后显色剂,采用离子色谱-柱后衍生可见光检测环境空气中六价铬和废气中铬酸雾的含量。通过对分析条件的优化,建立了简便、灵敏、选择性好、准确性高和重现性好的分析气体中六价铬的方法。该方法在Cr6+浓度1.00~600 μg/L之间线性良好,当采集50 L有组织废气和20 L无组织废气时,铬酸雾分析的检出限分别为2.2×10-5和1.1×10-5 mg/m3,采集64 m3环境空气时,Cr6+分析的检出限为7.8×10-9 mg/m3,以浸提后的样品水溶液连续进样得到其相对标准偏差为1.42%(n=8)。利用该法进行环境空气中六价铬和废气中铬酸雾的测定,回收率在80%~105%之间。监测结果显示:环境空气中六价铬含量处于极低状态;五金厂厂界废气中铬酸雾含量极低,约为5 μg/m3;五金厂废气排气筒监测的气体中则含有较高浓度的铬酸雾,其含量已经超过GB 21900—2008中规定的排放限值。  相似文献   

11.
我国现行环境空气中甲醛的标准测定方法普遍难以满足当前大气监测中对痕量浓度水平甲醛的监测需要.在乙酰丙酮分光光度法的基础上改进得到的乙酰丙酮荧光法具有更低的检出限和更高的灵敏度,适用于大气中痕量浓度水平甲醛的监测.基于乙酰丙酮荧光法设计了甲醛在线监测系统,并对其主要性能指标进行了评估测试.测试结果显示,该系统的吸收效率为...  相似文献   

12.
This study aims to investigate the change in spatial-temporal configuration of secondary forest succession and generate measurements for monitoring the changes in structural plant diversity in Yaln?zçam Scots pine forest in NE Turkey from 1972 to 2005. The successional stages were mapped using the combination of Geographic Information System (GIS), Global Positioning System (GPS), aerial photos and high resolution satellite images (IKONOS). Forest structure and its relationship with structural plant diversity along with its changes over time were characterized using FRAGSTATS. In terms of spatial configuration of seral stages, the total number of fragments increased from 572 to 735, and mean size of patch (MPS) decreased from 154.97 ha to 120.60 ha over 33 years. The situation resulted in forestation serving appropriate conditions for plant diversity in the area. As an overall change in study area, there was a net increase of 1823.3 ha forest during the period with an average annual forestation rate of 55.25 ha year?1(0.4% per year). In conclusion, the study revealed that stand type maps of forest management plans in Turkey provide a great chance to monitor the changes in structural plant diversity over time. The study further contributes to the development of a framework for effective integration of biodiversity conservation into Multiple Use Forest Management (MUFM) plans using the successional stages as a critical mechanism.  相似文献   

13.
An accurate prediction of the transport-reaction behaviour of atmospheric chemical species is required to fully understand the impact on the environment of pollution emissions. Elevated levels of secondary pollutants such as ozone in the lower atmosphere can be harmful to the health of both plants and animals, and can cause damage to property present in the urban environment. Detailed models of pollution mechanisms must therefore be developed through comparisons with field measurements to aid the selection of effective abatement policies. Such models must satisfy accuracy requirements both in terms of the number of species represented, and the spatial resolution of species profiles. Computational expense often compels current models to sacrifice detail in one of these areas. This paper attempts to address the latter point by presenting an atmospheric transport-reaction modelling strategy based upon a finite volume discretisation of the atmospheric dispersion equation. The source terms within this equation are provided by an appropriate reduced chemical scheme modelling the major species in the boundary layer. Reaction and transport discretisations are solved efficiently via a splitting technique applied at the level of the non-linear equations. The solution grid is generated using time dependant adaptive techniques, which provide a finer grid around regions of high spatial error in order to adequately resolve species concentration profiles. The techniques discussed are applied in two dimensions employing emissions from both point and area sources. Preliminary results show that the application of adaptive gridding techniques to atmospheric dynamics modelling can provide more accurately resolved species concentration profiles, accompanied by a reduced CPU time invested in solution. Such a model will provide the basis for high resolution studies of the multiple scale interactions between spatially inhomogeneous source patterns in urban and regional environments.  相似文献   

14.
Stem diameter is one of the most common measurements made to assess the growth of woody vegetation, and the commercial and environmental benefits that it provides (e.g. wood or biomass products, carbon sequestration, landscape remediation). Yet inconsistency in its measurement is a continuing source of error in estimates of stand-scale measures such as basal area, biomass, and volume. Here we assessed errors in stem diameter measurement through repeated measurements of individual trees and shrubs of varying size and form (i.e. single- and multi-stemmed) across a range of contrasting stands, from complex mixed-species plantings to commercial single-species plantations. We compared a standard diameter tape with a Stepped Diameter Gauge (SDG) for time efficiency and measurement error. Measurement errors in diameter were slightly (but significantly) influenced by size and form of the tree or shrub, and stem height at which the measurement was made. Compared to standard tape measurement, the mean systematic error with SDG measurement was only ?0.17 cm, but varied between ?0.10 and ?0.52 cm. Similarly, random error was relatively large, with standard deviations (and percentage coefficients of variation) averaging only 0.36 cm (and 3.8%), but varying between 0.14 and 0.61 cm (and 1.9 and 7.1%). However, at the stand scale, sampling errors (i.e. how well individual trees or shrubs selected for measurement of diameter represented the true stand population in terms of the average and distribution of diameter) generally had at least a tenfold greater influence on random errors in basal area estimates than errors in diameter measurements. This supports the use of diameter measurement tools that have high efficiency, such as the SDG. Use of the SDG almost halved the time required for measurements compared to the diameter tape. Based on these findings, recommendations include the following: (i) use of a tape to maximise accuracy when developing allometric models, or when monitoring relatively small changes in permanent sample plots (e.g. National Forest Inventories), noting that care is required in irregular-shaped, large-single-stemmed individuals, and (ii) use of a SDG to maximise efficiency when using inventory methods to assess basal area, and hence biomass or wood volume, at the stand scale (i.e. in studies of impacts of management or site quality) where there are budgetary constraints, noting the importance of sufficient sample sizes to ensure that the population sampled represents the true population.  相似文献   

15.
建立了水杨酸-次氯酸钠法分析氨的标准曲线,通过对西安市某垃圾填埋场的实地监测,探索了恶臭气体中氨气的分析方法。分析了臭气、氨气、硫化氢之间的浓度相关性,利用本次监测数据,找出了针对该垃圾处理场的高浓度氨气样品初步分析方案。恶臭产生的主要点位为垃圾场渗滤液污水处理站及下游区域,垃圾场臭气呈现出由点源污染(作业面)到面源污染扩散的态势。  相似文献   

16.
Managers need measurements and resource managers need the length/width of a variety of items including that of animals, logs, streams, plant canopies, man-made objects, riparian habitat, vegetation patches and other things important in resource monitoring and land inspection. These types of measurements can now be easily and accurately obtained from very large scale aerial (VLSA) imagery having spatial resolutions as fine as 1 millimeter per pixel by using the three new software programs described here. VLSA images have small fields of view and are used for intermittent sampling across extensive landscapes. Pixel-coverage among images is influenced by small changes in airplane altitude above ground level (AGL) and orientation relative to the ground, as well as by changes in topography. These factors affect the object-to-camera distance used for image-resolution calculations. ‘ImageMeasurement’ offers a user-friendly interface for accounting for pixel-coverage variation among images by utilizing a database. ‘LaserLOG’ records and displays airplane altitude AGL measured from a high frequency laser rangefinder, and displays the vertical velocity. ‘Merge’ sorts through large amounts of data generated by LaserLOG and matches precise airplane altitudes with camera trigger times for input to the ImageMeasurement database. We discuss application of these tools, including error estimates. We found measurements from aerial images (collection resolution: 5–26 mm/pixel as projected on the ground) using ImageMeasurement, LaserLOG, and Merge, were accurate to centimeters with an error less than 10%. We recommend these software packages as a means for expanding the utility of aerial image data.  相似文献   

17.
中国的垃圾填埋场目前多采用高密度聚乙烯膜(HDPE)进行覆盖,已建成的填埋场均存在不同程度覆盖膜破损现象。采用填埋气泄漏可视化检测技术对中国东部某大型生活垃圾填埋场开展覆盖膜完整性检测,揭示了覆盖膜破损特征及破损成因,明确了破损点泄漏量,评估了其温室效应影响,梳理了国内外填埋场覆盖层监管相关管理规定和措施。结果表明:尖锐物体应力损伤导致的破损是填埋场覆盖膜破损的主要类型,粗放施工、监管机制不足、维护管理不到位是造成填埋场覆盖膜破损的主要原因。破损点的甲烷泄漏量约为817.2 m3/d,约合每年向大气环境释放温室气体超过4 900 t CO2-eq。完善填埋场污染控制标准和技术规范、加强填埋场覆盖膜完整性的监管,是控制填埋场温室气体排放和推进固废处置设施碳减排的重要举措。  相似文献   

18.
Contaminant plumes were derived for constant and variable loading functions at locations within a landfill. Annually, the alternative loading functions injected the same volume of contaminated water. Mass transport modeling was used to evaluate the detection efficiencies of 25 monitoring transects, spaced evenly between the landfill and a downgradient compliance boundary. Respectively, the most efficient transects (requiring the fewest monitoring wells) for constant and variable loading were located at 60–64 and 40 percent of the distance to the compliance boundary. The mean detection efficiency was 29 percent higher for variable loading, but the variation in detection efficiency was similar for constant and variable loading. At the most efficient transects, the minimum number of detection wells was 20 percent lower for variable loading. Given the influence of source loading on monitoring efficiency, alternative loading functions should be considered when designing detection monitoring networks in aquifers.  相似文献   

19.
为研究烟花爆竹燃放对哈尔滨市区空气质量的影响,及时捕捉污染过程的变化趋势并分析污染的成因,2016年2月7—9日对哈尔滨市区内4个监测点位(省监测站、松北商大、动力和平路和省农科院)颗粒物浓度变化趋势进行解析,同时结合单颗粒气溶胶飞行质谱仪、3D可视激光雷达等相关仪器分析结果进一步确定污染成因。结果表明,连续监测期间4个监测点位均出现重度污染时段,且与除夕夜烟花爆竹集中燃放时间高度吻合,说明烟花爆竹的集中燃放会在短时间内造成严重的大气污染;同时烟花爆竹的燃放会对颗粒物化学组分造成明显的影响,受影响最大的是Mg~(2+)和Cl~-,且在燃放期有机碳、元素碳、混合碳占比升高。  相似文献   

20.
无人机载核辐射监测及气溶胶采样系统试验分析   总被引:2,自引:0,他引:2  
利用旋翼式无人机平台挂载机载式γ谱仪、气溶胶采样器及相关监控设备,在稳定风场下开阔平坦场地,对特征金属颗粒物随炸药爆炸后形成的气溶胶进行空中烟云跟踪取样及巡测,测量环境核辐射水平。结果表明,通过8次爆炸物气溶胶跟踪采样,以及放射性点源探测试验,证实旋翼式无人机空中气溶胶取样及对辐射测量的可行性。  相似文献   

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