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61.
水质的定量评估有利于地方政府制定和实施水污染防治政策.为研究近期淮河流域行政区划尺度上水质的时空变化特征及其受土地利用类型的影响,以淮河流域(河南段)为研究区,根据2009-2017年31个水质站点的水质周测浓度,结合土地利用遥感监测数据,利用季节性Mann-Kendall趋势检验法及Spearman相关分析法,对ρ(CODCr)、ρ(NH4+-N)和ρ(TP)的时空变化特征及其与土地利用类型的相关性进行分析.结果表明:①在时间上,ρ(CODCr)、ρ(NH4+-N)和ρ(TP)在大部分地区呈下降趋势,但各水质指标依然较高,ρ(CODCr)和ρ(TP)在丰水期略高于枯水期,ρ(NH4+-N)在枯水期高于丰水期.②在空间上,水污染比较严重的有沱河、浍河、惠济河、涡河、贾鲁河、清潩河、颍河中游、黑茨河、汾泉河和洪汝河,大部分站点为GB 3838-2002《地表水环境质量标准》Ⅳ类或Ⅴ类水质,部分站点甚至属于GB 3838-2002劣Ⅴ类水质;而颍河上游、北汝河、沙河、淮河干流及史灌河的水质较好,基本属于GB 3838-2002Ⅰ类或Ⅱ类水质.③土地利用类型与水质之间的相关性表现为ρ(CODCr)、ρ(NH4+-N)、ρ(TP)与旱地和城镇面积占比均呈正相关,与林地、草地和荒地面积占比均呈负相关,与水域面积占比也呈负相关但不显著.研究显示,淮河流域(河南段)水质有所改善,但部分地区水污染问题仍然比较严重,旱地与城镇用地是造成研究区水污染的主要原因,林地、草地、荒地和水域能够缓解水污染.   相似文献   
62.
基于2013—2015年南昌市9个空气环境监测点的连续数据,分析了空气PM_(2.5)、PM_(10)质量浓度(以下简称浓度)的时空变异规律,并以景观格局指数为定量指标,研究了监测点的两种颗粒物浓度与其周边500 m半径、1000 m半径缓冲区的土地利用状况的关系.结果表明:(1)南昌市3年来PM_(2.5)和PM_(10)浓度逐年显著降低.(2)通过聚类分析,9个监测站依据颗粒物污染可分为4大类,表现出一致的城乡梯度差异.(3)在斑块类型水平上,PM_(2.5)和PM_(10)浓度与500、1000 m半径缓冲区的C-PLAND(建筑用地覆盖率)、C-SHDI(建筑用地多样性指数)显著正相关,与1000m缓冲区的F-ED(林地边界密度)显著正相关;与F-PLAND(林地覆盖率)、C-Fi(建筑用地分离度指数)、F-MPS(林地平均斑块面积)显著负相关.在景观水平上,PM_(2.5)和PM_(10)浓度在500 m缓冲区与LPI(最大斑块所占景观比例)显著负相关;与1000 m缓冲区的MPS(平均斑块面积)显著负相关.景观格局指数直接反映土地利用状况,它与PM_(2.5)和PM_(10)浓度的相关性,表现出生态学中典型的"源汇景观"关系.  相似文献   
63.
开展气候变化背景下中国降水时空变化特征及对地表干湿状况影响研究,对揭示陆地表层系统对气候变化的动态响应与变化规律以及防灾减灾具有重要意义。基于1961-2010年地面气象观测资料,分析我国降水与地表干湿状况时空格局;在此基础上,采用敏感性与贡献度分析,定量评估降水变化对干湿状况的影响。结果表明:过去50年间我国年降水量呈轻微增加趋势,其中,青藏高原(高原亚寒带、高原温带)、西北(中温带西部、暖温带西部)和南方地区(亚热带、热带)呈增加趋势,东北(寒温带、中温带东部)和华北地区(中温带中东部、暖温带东部)呈减少趋势。就地表干湿状况而言,华北和东北地区以干旱化趋势为主,西北、青藏高原及南方地区主要呈湿润化趋势。地表干湿状况对降水变化响应较为敏感(全国多年平均敏感系数:-1.13),干湿指数和降水呈负相关。内陆干旱地区降水对干湿状况变化的贡献高于湿润地区,局部地区降水贡献度超过60%。  相似文献   
64.
Based on observation data of daily sunshine duration from 1961 to 2020 at 175 meteorological observation stations over Qinghai-Tibet Plateau and its surrounding areas, spatial transformation analysis, climate trend analysis and M-K mutation test were used to analyze the temporal and spatial variation characteristics of the seasonal and annual sunshine duration in the region in the last 60 years. The results show that (1) annual average sunshine duration was 2 323 h, the maximum was 3 487 h in Gaer, Tibet, and the minimum was 771 h in Ya'an, Sichuan. The high-value areas were mostly located in western Tibet, northern Qinghai, western Gansu, and Xinjiang, and the low-value areas were mostly located in Nyingchi in Tibet, the mountainous area on the western edge of the Sichuan Basin, and northwestern Yunnan. The highest sunshine duration was recorded in winter (631 h), and the lowest was recorded in autumn (555 h) among the four seasons. (2) The average decrease in annual sunshine duration was 10.27 h/10 a. The largest rates of decrease were mainly in Gannan of Gansu and Ganzi of Sichuan, with the largest rate of decrease of 130 h/10 a. The areas with large rates of increase were mainly in Hotan area of Xinjiang, Liangshan of Sichuan and Lhasa of Tibet, with the largest increase of 61 h/10 a. Among the four seasons, spring exhibited an upward trend, and the remainder exhibited a downward trend. (3) Before 2017, the annual sunshine duration increased but declined after 2017. Spring sunshine duration had the largest number of mutation years, and the earliest mutation time was 1963. Winter had the fewest number of mutation years and the latest mutation time occurred in 2015. In summary, the annual and seasonal sunshine duration of Qinghai-Tibet Plateau vary greatly in space, but with the general characteristics of more sunshine in the northwest and less in the southeast, and sunshine hours were mainly decreasing, with 2017 as a mutation point of annual sunshine duration. Most areas of Qinghai-Tibet Plateau have great potential for photosynthetic production and are suitable for the development of light-loving plants and high-density planting. Shade-loving or shade-tolerant plants, including tea, are suitable for development in remote mountainous areas with low sunshine values in the western part of the basin, including Ya’an, Sichuan, and other areas, such as Medog, Tibet. © 2022 Science Press. All rights reserved.  相似文献   
65.
流域氮污染的稳定同位素表征和溯源对于保障流域污染防控和用水安全具有重要意义,本文通过对感潮河段夏、秋季涨落潮主要断面硝态氮(NO3-)及稳定同位素(δ15N-NO3-、δ18O-NO3-、δD-H2O和δ18O-H2O)组成特征测定及沿线小流域的氮污染入河量测算,探讨了陆域氮排放和水体交换对感潮河段稳定同位素的影响.研究表明:(1)落潮、涨潮期NO3-均为“秋季>夏季”,δ15N-NO3-夏、秋两季组成特征基本相近.落潮期δ18O-NO3-为“夏季>秋季”,涨潮期则相反.同季节的NO3-及其同位素总体呈“涨潮期>落...  相似文献   
66.
水稻土磷素流失引起的水体富营养化等生态风险已受到普遍关注,而明确其动态变化和富集效应是制定合理防控措施的基础.以福建省1.8×106 hm2水稻土为研究对象,以1982年全国第二次土壤普查1 471个、 2008年农业农村部测土配方施肥项目215 534个和2018年农业农村部耕地质量监测项目2 895个表层水稻土样点建立的1∶5万三期大比例尺土壤数据库为基础,分析全省水稻土有效磷含量近40年来的富集效应及潜在生态风险.结果表明,1982~2018年间福建省水稻土有效磷含量增加了47 mg·kg-1,富集面积达到1.65×106 hm2,占全省水稻土总面积的91%;其中,1982~2008年福建省水稻土有效磷含量增加了28 mg·kg-1,富集面积为1.47×106 hm2,占全省水稻土总面积的82%; 2008~2018年福建省水稻土有效磷含量增加了19 mg·kg-1,富集面积为1.22...  相似文献   
67.
2000~2020年长江流域植被NDVI动态变化及影响因素探测   总被引:3,自引:1,他引:2  
研究植被动态变化并探测驱动其变化的影响因素,对区域生态环境质量监测和林业恢复工程效应评估具有重要现实意义.利用MODIS NDVI数据、基于站点的气象数据、DEM数据、人口密度数据和夜间灯光数据等,结合Theil-Sen Median斜率估计、Mann-Kendall显著性检验、稳定性分析和地理探测器,在多时空尺度下分析2000~2020年长江流域植被NDVI时空演变特征及稳定性,并探测驱动植被NDVI空间分异的主要影响因素.结果表明,2000~2020年长江流域植被NDVI整体呈波动上升趋势.除太湖水系外,其余流域单元植被NDVI均呈上升趋势.长江流域植被NDVI呈上升趋势的面积占84.09%,其中,呈极显著上升和显著上升的区域占53.67%,主要分布在乌江、宜宾至宜昌、嘉陵江、汉江和洞庭湖水系.除金沙江石鼓以上和太湖水系植被NDVI稳定性较差以外,其他流域单元植被NDVI整体较为稳定.海拔是影响各流域单元植被生长的重要因素,而气候因子对金沙江石鼓以上植被NDVI的影响程度最高,人文因子对乌江、湖口以下干流和太湖水系植被NDVI影响最大.长江流域影响因素双因子交互作用均表现为双因子增...  相似文献   
68.
Quality of precipitation products from the Integrated Multi‐satellitE Retrievals for Global Precipitation Measurement mission (IMERG) was evaluated over the Lower Colorado River Basin of Texas. Observations of several rainfall events of a wide range of magnitudes during May 2015 by a very dense network of 241 rain gauges over the basin were used as a reference. The impact of temporal and spatial downscaling of different satellite products (near/post‐real‐time) on their accuracy was studied. Generally, all IMERG products perform better when the temporal and spatial resolutions are downscaled. The Final product shows relatively better performance compared to the near‐real‐time products in terms of basic performance measures; however, regarding rainfall detection, all products show nearly similar performance. When considering rainfall detection, IMERG adequately captures the precipitation events; however, in terms of spatial patterns and accuracy, more improvements are needed. IMERG products analysis results may help developers gain insight into the regional performance of the product, improve the product algorithms, and provide information to end users on the products’ suitability for potential hydrometeorological applications. Overall, the IMERG products, even the uncalibrated product at its finest resolution, showed reasonable performance indicating their great potential for applications such as water resources management, prevention of natural disasters, and flood forecasting.  相似文献   
69.
A spatiotemporal model was developed to investigate emissions of polycyclic aromatic hydrocarbons (PAHs) in Daqing, a Chinese city with large petroleum industry plants. The model was based on land-use types determined on a 10′?×?10′ grid. A geographic information system and regression analyses were used to characterise spatial and temporal variations in PAH emissions into multiple environmental media. The simulated results were validated using previously published experimental data, and the model was found to function well. PAH emissions to the atmosphere, soil, and surface water between 1998 and 2013 were estimated. The results indicated that PAH emissions to the atmosphere increased but PAH emissions to the soil and surface water decreased over the study period. PAH emissions to the atmosphere were markedly higher in winter than in summer. PAH emissions were concentrated in urban areas and areas near petroleum production plants, indicating that PAH emissions were closely related to industrial activities. The results will support research into the migration and transformation of PAHs and human health and ecological risk assessments. The results may also be useful for developing policies for controlling PAH pollution and managing risks associated with PAHs.  相似文献   
70.
西北太平洋是全球热带气旋(TC)发生次数最多、强度最大的区域之一,其TC研究受到该区域学者的广泛关注。基于日本气象厅(JMA)东京台风中心西北太平洋TC最佳路径数据资料,分析了该区域1951-2006年的TC频数和强度时空分布特征。首先,统计和分析了56年间(1951-2006年)TC的年际和年内变化,并通过建立1°×1°网格计算了落在每个网格内的TC次数,分析了多年TC的空间分布格局;其次,根据国际气象组织按照风速划分TC等级的标准,统计和分析了56年间不同强度TC的年际和年内特征,通过风速强度指数计算,获取了1°×1°网格单元区域内遭受TC影响的强度等级。结果显示,区域频数和强度时空分布规律较好地反映了该区域的TC影响特征,进而为区域台风灾害预报以及台风灾害风险评估提供了支持。  相似文献   
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