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221.
222.
Model simulations of dissolved oxygen characteristics of Minnesota lakes: Past and future 总被引:1,自引:0,他引:1
A deterministic, one-dimensional, unsteady numerical model has been developed, tested, and applied to simulate mean daily
dissolved oxygen (DO) characteristics in 27 lake classes in the state of Minnesota. Reaeration and photosynthesis are the
oxygen sources, while respiration, sedimentary, and biochemical water column oxygen demand are the sinks of oxygen in the
model. The lake classes are differentiated by surface area (A
s), maximum depth (H
max), and trophic status expressed as Secchi depth (Z
s). Because lake stratification is most important to lake oxygen dynamics, simulated DO characteristics are plotted in terms
of a stratification parameterA
s/H
max
0.25
and Secchi depthZ
s. Simulations provide DO profiles on a daily time scale. Specific DO characteristics of ecological and environmental interest
are epilimnetic DO, hypolimnetic DO, DO gradient from surface to bottom, and DO minima and maxima. Specific results are as
follows: Simulated mean daily and weekly DO values in the epilimnion of all lakes for both past and future climate scenarios
are near saturation over the summer season. Hypolimnetic DO values depend strongly on lake morphometry, trophic status, and
time throughout the summer season. Future climate conditions are specified as the historical records from 1955 to 1979, adjusted
(monthly) by the 2 × CO2 GISS model output to account for doubling of atmospheric CO2. With this climate change, weekly averaged epilimnetic DO is projected to drop by less than 2 mg/liter, and will remain above
7 mg/liter throughout the open water season. The hypolimnetic DO reductions after climate change are on the order of 2–8 mg/liter.
Periods of anoxia are longer by as much as 80 days. Those changes would alter water quality dynamics in lakes and have a profound
effect on lake ecosystems including indigenous fishes. The results presented are useful for evaluating environmental management
options. 相似文献
223.
Yu Sun Susanna T. Y. Tong Mao Fang Y. Jeffrey Yang 《Environment, Development and Sustainability》2013,15(6):1495-1515
The Las Vegas Valley metropolitan area is one of the fastest growing areas in the southwestern United States. The rapid urbanization has presented many environmental challenges. For instance, as population growth and urbanization continue, the supply of sufficient clean water will become a concern. In addition, the area is also experiencing the longest drought in history, and the volume of water storage in Lake Mead, the main fresh water supply for the entire region, has been reduced greatly. The water quality in the main stem of the Las Vegas Wash (LVW) and Lake Mead may also be significantly affected. In order to develop effective sustainable management plans, the very first step is to predict the plausible future urbanization and land use patterns. This paper presents an approach to predict the future land use pattern at the LVW watershed using a Markov cellular automata model. The multi-criteria evaluation was used to couple population density as a variable depicting the driving force of urbanization in the model. Moreover, landscape metrics were used to analyze land use changes in order to better understand the dynamics of urban development in the LVW watershed. The predicted future land use maps for the years 2030 and 2050 show substantial urban development in the area, much of which are located in areas sensitive to source water protections. The results of the analysis provide valuable information for local planners and policy makers, assisting their efforts in constructing alternative sustainable urban development schemes and environmental management strategies. 相似文献
224.
以坡耕地柑桔园为研究对象,地表覆盖方式采用对照、秸秆覆盖和地膜覆盖3个处理,实验采用完全方案。结果表明,在本实验条件下,坡地地膜覆盖处理一定程度增加了径流量,而秸秆覆盖处理与对照每次降雨径流量基本相当;各处理土壤氮磷养分均有一定程度的流失,以氮素流失量较高,磷素流失量相对较低;在地膜覆盖条件下,柑桔园地表径流中N、P流失量较高,其总氮和总磷流失系数分别达0054%和0064%,而秸秆覆盖总氮和总磷流失系数最低;对不同地表覆盖方式柑桔园地表径流水体氮素形态特征分析表明,可溶性氮素占总氮的比例较高,可溶性氮素中又以NO-3 N为主,而NH+4 N所占的比重较低。以上结果说明,在丹江口库区,氮素污染风险要高于磷,防控的主要矛盾是氮,而秸秆覆盖是减少坡耕地养分流失较好的管理措施 相似文献
225.
为了评价互花米草入侵对长江河口湿地土壤碳动态的影响,利用配对的试验设计在长江口崇明东滩湿地的高潮滩和低潮滩各设置1条入侵种互花米草与土著种的配对样线.结果表明,与土著植物相比,互花米草入侵显著增加了长江口湿地的植物碳库、土壤微生物碳、土壤总碳库和有机碳库,而对占土壤总碳库60%以上的无机碳库无显著影响,意味着互花米草入侵导致的土壤总碳库改变主要是通过增加土壤有机碳库来实现的.高潮滩互花米草和芦苇群落的年均土壤呼吸强度分别为(210.02±4.90),(157.79±6.39)mg/(m2·h);低潮滩互花米草和海三棱藨草群落年均土壤CO2排放速率分别为(157.41±5.27),(110.90±5.16)mg/(m2·h),表明互花米草入侵显著增加长江口湿地的土壤呼吸.上述结果意味着互花米草入侵同时增加土壤碳输入和碳输出,但入侵也显著增加了土壤碳库表明入侵增加的土壤碳输入显著高于增加的土壤碳输出.本研究表明互花米草入侵可能会增强了长江河口湿地的土壤碳汇强度和固碳能力.但仍然需要长期系统的监测研究,以便全面定量评估互花米草入侵我国滨海湿地的综合生态影响. 相似文献
226.
利用连续监测的大气甲烷浓度数据和拉格朗日逆向轨迹反演模式估算出北京甲烷源排放强度,并与根据最新调查数据建立的北京地区甲烷源排放清单进行了比较。排放清单结果表明,北京地区甲烷排放总量为296.4Gg/a,其中,最主要的甲烷排放源为城市垃圾和化石燃料,反映了北京作为一特大城市甲烷排放以人为源为主的特点。利用2000年6月至12月连续观测的有湿合层代表性的北京大气甲烷浓度,通过奇异值分解法(Singular Value Decomposition,SVD)反演出模拟区域的甲烷排放源强度和分布。模式计算与排放清单在甲烷源定性分布上对应较好,定量结果也是合理的。但由于可输入的气象数据有限,轨迹在整个模拟区域内覆盖不均匀,反演出的源块位置有偏差,其中偏差最大的为煤矿的甲烷排放。 相似文献
227.
228.
Zhuang Yahui Zhang Hongxun Wang Xiaoke & Fang JinyunResearch Center for Eco-Environmental Sciences 《中国人口.资源与环境(英文版)》2004,2(2)
This report summarizes the surveys on carbon inventories and initiatives on sustainable carbon cycling taken by RCEES. The first part of this report deals with the concept of sustainable carbon cycling, the historical evolution of carbon cycling processes in China, carbon pool enhancement, value addition, carbon sequestration and carbon balance. The second part covers the modeling of carbon dynamics, emission inventories of various carbon containing greenhouse gases and their potential abatement measures. 相似文献
229.
230.
我国目前面临的生态环境风险形势复杂严峻,严密防控生态环境风险已成为“十四五”和中长期生态环境保护、美丽中国建设的重要任务之一。本文探讨了生态环境风险的概念、分类,系统梳理了生态环境风险评估与管理、生态环境损害评估与损害赔偿等领域的国内外管理经验与研究进展。在此基础上,重点剖析了我国生态环境风险管理面临的痛点与难点问题,从树立生态环境风险法治管理理念、构建生态环境风险管理战略布局、建立生态环境风险常态化管控体系、加强生态环境风险防控技术支撑、强化经济和社会治理手段助力风险管控、建设生态环境损害赔偿业务化工作体系等六个方面,系统提出了加强我国生态环境风险管理的对策建议,以期为更有效地防范化解重大生态环境风险提供决策参考。 相似文献