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81.
典型岩溶区地下河中溶解态脂类生物标志物来源解析及其变化特征 总被引:1,自引:1,他引:0
利用气相色谱-质谱联用仪(GC-MS)测定了青木关地下河中溶解态类脂物的含量.研究了其在地下河中的来源、组成及迁移特征.结果表明,7~11月,各溶解态类脂物的平均含量随着青木关地下河运移距离的增加呈降低趋势,其中以溶解态饱和直链脂肪酸的下降最为显著,即由最初的5 704 ng·L~(-1)下降到1 043 ng·L~(-1),减少了约81.71%.正构烷烃能够较为详尽地指征地下河中溶解性有机质来源,而饱和直链脂肪酸、脂肪醇则对藻类和细菌等微生物有较好的指示意义.随着地下河运移距离增加,有机质输入类型呈现多样化,可能与岩溶地表不均一性有关.正构烷烃三端元图解中,水生植物的输入为地下河中溶解性有机质的主要来源,其次分别为陆地高等植物和藻类、细菌等微生物,但随着地下河运移距离的增加水生植物的相对贡献量逐渐减少.青木关地下河中正构烷烃TAR值对降雨有一定的指示意义,而饱和直链脂肪酸CPI、L/H值则指示细菌降解活动. 相似文献
82.
1980~2010年浙江某典型河流硝态氮通量对净人类活动氮输入的动态响应 总被引:3,自引:0,他引:3
以浙江某典型流域为研究对象,基于1980~2010年的水质水量和氮源数据及LOADEST模型,估算了逐年河流NO-3-N通量和净人类活动氮输入(NANI),分析了河流NO-3-N通量和NANI的年际演化特征及其动态响应关系,探讨了每年NANI、滞留氮库、自然背景源对河流NO-3-N通量的贡献.结果表明,1980~2010年,河流NO-3-N通量和NANI总体上都呈现出先增后减的抛物线型变化趋势,均在1998年左右分别达到峰值5.74 kg·(hm2·a)-1和77.5 kg·(hm2·a)-1;过去31 a,河流NO-3-N通量和NANI分别净增加了~42%和~77%.化肥氮和大气氮沉降是NANI的主要来源,分别占了NANI的~48%和~40%.河流NO-3-N通量的年际变化不仅与NAIN(R2=0.27**)和化肥氮输入量(R2=0.32**)显著相关,而且与河流年均流量(R2=0.79**)或降雨量(R2=0.63**)具有更强的相关性,意味着河流NO-3-N的来源除了当年的NAIN,还受滞留氮库的影响.所建立的以NANI和流量为自变量的回归模型能很好地模拟河流NO-3-N通量变化(R2=0.94**).该模型预测结果显示,在NANI和流量分别降低30%的情况下,河流年均NO-3-N通量将分别减少~21%和~30%;每年的NANI、滞留氮库、自然背景源对河流当年NO-3-N通量的贡献率分别为~53%、~24%、~23%.河流NO-3-N通量长期的年际变化是NANI和水文要素共同作用的结果;但是,由于滞留氮库的影响,与源控制方式相比,增加"汇"景观应该能更加快速地削减河流NO-3-N通量. 相似文献
83.
Kelly Kibler Desiree Tullos Mathias Kondolf 《Journal of the American Water Resources Association》2011,47(2):408-423
Kibler, Kelly, Desiree Tullos, and Mathias Kondolf, 2011. Evolving Expectations of Dam Removal Outcomes: Downstream Geomorphic Effects Following Removal of a Small, Gravel‐Filled Dam. Journal of the American Water Resources Association (JAWRA) 1‐16. DOI: 10.1111/j.1752‐1688.2011.00523.x Abstract: Dam removal is a promising river restoration technique, particularly for the vast number of rivers impounded by small dams that no longer fulfill their intended function. As the decommissioning of small dams becomes increasingly commonplace in the future, it is essential that decisions regarding how and when to remove these structures are informed by appropriate conceptual ideas outlining potential outcomes. To refine predictions, it is necessary to utilize information from ongoing dam removal monitoring to evolve predictive tools, including conceptual models. Following removal of the Brownsville Dam from the Calapooia River, Oregon, aquatic habitats directly below the dam became more heterogeneous over the short term, whereas changes further downstream were virtually undetectable. One year after dam removal, substrates of bars and riffles within 400 m downstream of the dam coarsened and a dominance of gravel and cobble sediments replaced previously hardpan substrate. New bars formed and existing bars grew such that bar area and volume increased substantially, and a pool‐riffle structure formed where plane‐bed glide formations had previously dominated. As the Brownsville Dam stored coarse rather than fine sediments, outcomes following removal differ from results of many prior dam removal studies. Therefore, we propose a refined conceptual model describing downstream geomorphic processes following small dam removal when upstream fill is dominated by coarse sediments. 相似文献
84.
Erich T. Hester Martin W. Doyle 《Journal of the American Water Resources Association》2011,47(3):571-587
Hester, Erich T. and Martin W. Doyle, 2011. Human Impacts to River Temperature and Their Effects on Biological Processes: A Quantitative Synthesis. Journal of the American Water Resources Association (JAWRA) 47(3):571‐587. DOI: 10.1111/j.1752‐1688.2011.00525.x Abstract: Land‐use change and water resources management increasingly impact stream and river temperatures and therefore aquatic organisms. Efforts at thermal mitigation are expected to grow in future decades. Yet the biological consequences of both human thermal impacts and proposed mitigation options are poorly quantified. This study provides such context for river thermal management in two ways. First, we summarize the full spectrum of human thermal impacts to help thermal managers consider the relative magnitudes of all impacts and mitigation options. Second, we synthesize biological sensitivity to river temperature shifts using thermal performance curves, which relate organism‐level biological processes to temperature. This approach supplements the popular use of thermal thresholds by directly estimating the impact of temperature shifts on the rates of key biological processes (e.g., growth). Our results quantify a diverse array of human thermal impacts, revealing that human actions tend to increase more than decrease river temperatures. Our results also provide a practical framework in which to quantify the sensitivity of river organisms to such impacts and related mitigation options. Finally, among the data and studies we synthesized, river organisms appear to be more sensitive to temperature above than below their thermal maxima, and fish are more sensitive to temperature change than invertebrates. 相似文献
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李佳 《中国环境管理干部学院学报》2011,21(4):43-45
通过分析秦皇岛市当前森林生态系统的现状、效益,发现秦皇岛市森林生态系统存在着分布不均、林龄结构不合理等问题;提出了退耕还林、封山育林、加大宣传力度等措施,以期秦皇岛森林生态系统走上可持续发展的道路,更好地造福于人民。 相似文献
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Molly A. Maupin Tamara Ivahnenko 《Journal of the American Water Resources Association》2011,47(5):950-964
Maupin, Molly A. and Tamara Ivahnenko, 2011. Nutrient Loadings to Streams of the Continental United States From Municipal and Industrial Effluent. Journal of the American Water Resources Association (JAWRA) 47(5):950‐964. DOI: 10.1111/j.1752‐1688.2011.00576.x Abstract: Data from the United States Environmental Protection Agency Permit Compliance System national database were used to calculate annual total nitrogen (TN) and total phosphorus (TP) loads to surface waters from municipal and industrial facilities in six major regions of the United States for 1992, 1997, and 2002. Concentration and effluent flow data were examined for approximately 118,250 facilities in 45 states and the District of Columbia. Inconsistent and incomplete discharge locations, effluent flows, and effluent nutrient concentrations limited the use of these data for calculating nutrient loads. More concentrations were reported for major facilities, those discharging more than 1 million gallons per day, than for minor facilities, and more concentrations were reported for TP than for TN. Analytical methods to check and improve the quality of the Permit Compliance System data were used. Annual loads were calculated using “typical pollutant concentrations” to supplement missing concentrations based on the type and size of facilities. Annual nutrient loads for over 26,600 facilities were calculated for at least one of the three years. Sewage systems represented 74% of all TN loads and 58% of all TP loads. This work represents an initial set of data to develop a comprehensive and consistent national database of point‐source nutrient loads. These loads can be used to inform a wide range of water‐quality management, watershed modeling, and research efforts at multiple scales. 相似文献