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The potential impacts driven by climate variability and urbanization in the Boise River Watershed (BRW), located in southwestern Idaho, are evaluated. The outcomes from Global Circulation Models (GCMs) and land use and land cover (LULC) analysis have been incorporated into a hydrological and environmental modeling framework to characterize how climate variability and urbanization can affect the local hydrology and environment at the BRW. The combined impacts of future climate and LULC change are also evaluated relative to the historical baseline conditions. For modeling exercises, Hydrological Simulation Program‐Fortran (HSPF) is used in parallel computing and statistical techniques, including spatial downscaling and bias correlation, are employed to evaluate climate consequences derived from GCMs as well. The implications of climate variability and land use change driven by urbanization are then observed to evaluate how these overall global challenges can affect water quantity and quality conditions at the BRW. The results show the combined impacts of both climate change and urbanization can lead to more seasonal variability of streamflow (from ?27.5% to 12.5%) and water quality, including sediment (from ?36.5% to 49.3%), nitrogen (from ?24% to 124.2%), and phosphorus (from ?13.3% to 21.2%) during summer and early fall over the next several decades. 相似文献
173.
Anuradha M. Desai Hanadi S. Rifai 《Journal of the American Water Resources Association》2013,49(4):766-779
The variability of indicator bacteria over a fine resolution time scale on the order of minutes has yet to be fully understood. In this study, we collected more than 700 Escherichia coli samples at a 10‐ and 30‐min resolution in an urban watershed in Houston. A Bacteria Diurnal Sag (BDS) marked with daytime exponential decay followed by an exponential nighttime regeneration was observed. This pattern was observed during all sampled events but varied depending on other variables. The concentrations during a 24‐h period varied 1 to 5 orders of magnitude and the fecal load was at least 10 times lower than what would be obtained using a single morning E. coli measurement, the typical sampling scheme in most monitoring programs. Decay rates, ranging from 3.67 to 24.7/day, decreased E. coli concentrations to below the water‐quality standards from 14:00 to 18:00 h and were strongly influenced by water temperatures and solar radiation intensities. Rapid regeneration occurred on the order of 9.41 to 64.1/day allowing E. coli concentrations to return to their pre‐decay levels. The data indicated that four to six samples taken between 06:00 and 18:00 h may be sufficient to define the BDS depending on stream conditions, and that a threshold concentration of approximately 100 MPN/dl (most probable number in a deciliter) existed for the studied urban watershed. These findings have significant implications for water‐quality monitoring, regulation, and compliance. 相似文献
174.
工艺安全管理系统的适用范围——危险化学品目录及临界量的确定 总被引:1,自引:0,他引:1
从工艺安全管理(PSM)的角度,对美国、欧盟等的工艺安全管理系统适用范围的定义进行分析,结合目前国内《重大危险源辨识》中给出的部分危险化学品的临界量,以此为基础制定适合我国国情的危险化学品目录并确定各物质的临界量,提出在我国推行工艺安全管理系统的建议。 相似文献
175.
Peter R. Claggett Judy A. Okay Stephen V. Stehman 《Journal of the American Water Resources Association》2010,46(2):334-343
Claggett, Peter R., Judy A. Okay, and Stephen V. Stehman, 2010. Monitoring Regional Riparian Forest Cover Change Using Stratified Sampling and Multiresolution Imagery. Journal of the American Water Resources Association (JAWRA) 46(2):334-343. DOI: 10.1111/j.1752-1688.2010.00424.x Abstract: The Chesapeake Bay watershed encompasses 165,760 km2 of land area with 464,098 km of rivers and streams. As part of the Chesapeake Bay restoration effort, state and federal partners have committed to restoring 26,000 miles (41,843 km) of riparian forest buffers. Monitoring trends in riparian forest buffers over large areas is necessary to evaluate the efficacy of these restoration efforts. A sampling approach for estimating change in riparian forest cover from 1993/1994 to 2005 was developed and implemented in Anne Arundel County, Maryland, to exemplify a method that could be applied throughout the Bay watershed. All stream reaches in the county were stratified using forest cover change derived from Landsat imagery. A stratified random sample of 219 reaches was selected and forest cover change within the riparian buffer of each sampled reach was interpreted from high-resolution aerial photography. The estimated footprint of gross change in riparian forest cover (i.e., the sum of gross gain and gross loss) for the county was 1.83% (SE = 0.22%). Stratified sampling taking advantage of a priori knowledge of locations of change proved to be a practical and efficient protocol for estimating riparian forest buffer change at the county scale and the protocol would readily extend to much broader scale monitoring. 相似文献
176.
为实现区域水资源的优化配置及区域经济、社会和水资源的协调持续发展,查明区域水资源实物量,选取水资源生态极为脆弱的吕梁山连片贫困区的南部地区,基于2008—2017年的水资源数据,编制区域水资源实物量表,分析水资源实物量的时空分布特征。结果表明:(1)吕梁山南部贫困区水资源实物存量在研究期内呈明显增加趋势,增长值(含重复计算量)高达6101×104m3,其中地表水实物存量期间增长最快,地下水实物存量期间增长较慢;第一产业用水增加明显,这与区域高耗水的经果林大面积推广种植有关。(2)居民生活用水增长明显,人均生活用水量增加较快,居民生活用水是当地水资源实物存量变化的主要影响因素。(3)研究区各县水资源实物量空间分布差异大,县域间水资源平均存量最大相差3971.4 m3;单位面积平均水资源存量及单位面积平均水资源实际使用量均为隰县最多,吉县最少;隰县人均生活用水量最多,汾西县人均生活用水量最少。(4)实际用水量与水资源总量相关程度高,水资源的存量在一定程度上制约了水资源的实际使用量。研究结果对于区域水资源优化配置及吕梁山连片贫困区早日实现脱贫攻坚具有重要的科学指导意义。 相似文献
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179.
基于生活垃圾分类的厨余垃圾采样方法研究 总被引:1,自引:1,他引:1
与复杂的混合生活垃圾相比,厨余垃圾成分较单一,需要针对性的采样方法.本研究基于生活垃圾分类背景,在《生活垃圾采样和分析方法》(CJ/T 313—2009)的基础上,就采样位点和采样节点数对分类存放的厨余垃圾采样的影响展开研究.研究结果表明,仅采集垃圾桶中间位点的样品不具有代表性,不同情景应有不同的采样策略.当厨余垃圾流节点数少于2时需采集所有节点,当厨余垃圾流节点数为3~7时需采集2个节点,而当厨余垃圾节点数为8~18时需采集3个节点,均少于CJ/T 313—2009中要求的采样节点数.厨余垃圾的总量增大,则其最少采样节点数相应上升,但最少采样点受到厨余垃圾流节点数的制约. 相似文献
180.
为弄清大渡河流域电站建设对虎嘉鱼等5种保护鱼类的影响情况,探索适宜的保护措施,在流域枯水和丰水期分别选择了电站建设上下游6个有代表性的断面采集水样,采用电感耦合等离子发射光谱法等方法测定了重金属元素等16个指标,用单因子和综合指数评价法对电站上下游水质进行了对比评价;采用实地调查的方法调查了5种保护鱼类在近10年间种群数量的变化趋势。结果表明:电站建设对水质综合影响指数在1.64—1.82之间,影响严重;5种保护鱼类种群数量近10年间急剧下降,目前已为未见或罕见。 相似文献