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61.
The Aging of America's Reservoirs: In‐Reservoir and Downstream Physical Changes and Habitat Implications 下载免费PDF全文
Kyle E. Juracek 《Journal of the American Water Resources Association》2015,51(1):168-184
Reservoirs are important for various purposes including flood control, water supply, power generation, and recreation. The aging of America's reservoirs and progressive loss of water storage capacity resulting from ongoing sedimentation, coupled with increasing societal needs, will cause the social, economic, environmental, and political importance of reservoirs to continually increase. The short‐ and medium‐term (<50 years) environmental consequences of reservoir construction and operation are well known and include an altered flow regime, lost connectivity (longitudinal, floodplain), an altered sediment regime, substrate compositional change, and downstream channel degradation. In general, reservoir‐related changes have had adverse consequences for the natural ecosystem. Longer term (>50 years) environmental changes as reservoirs enter “old” age are less understood. Additional research is needed to help guide the future management of aging reservoir systems and support the difficult decisions that will have to be made. Important research directions include assessment of climate change effects on aging and determination of ecosystem response to ongoing aging and various management actions that may be taken with the intent of minimizing or reversing the physical effects of aging. 相似文献
62.
Resolution and Analysis of Spatial Variations and Patterns in an Urban Lake with Rapid Profiling Instrumentation 下载免费PDF全文
Anthony R. Prestigiacomo Steven W. Effler David A. Matthews 《Journal of the American Water Resources Association》2015,51(1):200-213
Rapid response vertical profiling instrumentation was used to document spatial variability and patterns in a small urban lake, Onondaga Lake, associated with multiple drivers. Paired profiles of temperature, specific conductance (SC), turbidity (Tn), fluorometric chlorophyll a (Chlf), and nitrate nitrogen (NO3?) were collected at >30 fixed locations (a “gridding”) weekly, over the spring to fall interval of several years. These gridding data are analyzed (1) to characterize phytoplankton (Chlf) patchiness in the lake's upper waters, (2) to establish the representativeness of a single long‐term site for monitoring lake‐wide conditions, and (3) to resolve spatial patterns of multiple tracers imparted by buoyancy effects of inflows. Multiple buoyancy signatures were resolved, including overflows from less dense inflows, and interflows to metalimnetic depths and underflows to the bottom from the plunging of more dense inputs. Three different metrics had utility as tracers in depicting the buoyancy signatures as follows: (1) SC, for salinity‐enriched tributaries and the more dilute river that receives the lake's outflow, (2) Tn, for the tributaries during runoff events, and (3) NO3?, for the effluent of a domestic waste treatment facility and from the addition of NO3? solution to control methyl mercury. The plunging inflow phenomenon, which frequently prevailed, has important management implications. 相似文献
63.
Sources and Transport of Phosphorus to Rivers in California and Adjacent States,U.S., as Determined by SPARROW Modeling 下载免费PDF全文
Joseph Domagalski Dina Saleh 《Journal of the American Water Resources Association》2015,51(6):1463-1486
The SPARROW (SPAtially Referenced Regression on Watershed attributes) model was used to simulate annual phosphorus loads and concentrations in unmonitored stream reaches in California, U.S., and portions of Nevada and Oregon. The model was calibrated using de‐trended streamflow and phosphorus concentration data at 80 locations. The model explained 91% of the variability in loads and 51% of the variability in yields for a base year of 2002. Point sources, geological background, and cultivated land were significant sources. Variables used to explain delivery of phosphorus from land to water were precipitation and soil clay content. Aquatic loss of phosphorus was significant in streams of all sizes, with the greatest decay predicted in small‐ and intermediate‐sized streams. Geological sources, including volcanic rocks and shales, were the principal control on concentrations and loads in many regions. Some localized formations such as the Monterey shale of southern California are important sources of phosphorus and may contribute to elevated stream concentrations. Many of the larger point source facilities were located in downstream areas, near the ocean, and do not affect inland streams except for a few locations. Large areas of cultivated land result in phosphorus load increases, but do not necessarily increase the loads above those of geological background in some cases because of local hydrology, which limits the potential of phosphorus transport from land to streams. 相似文献
64.
纳米Ag粒子在我国主要类型土壤中的迁移转化过程与环境效应 总被引:2,自引:0,他引:2
随着纳米技术的快速发展,纳米材料进入环境并不断累积,因此开展纳米材料的环境安全性研究具有重要意义.纳米银(Ag NP)是目前应用最广泛的人工纳米材料之一.本课题组拟以Ag NP为研究对象,系统研究其在我国主要类型土壤中的迁移、转化过程及其生态环境效应;基于同步辐射技术、同位素技术和量子化学计算等方法,揭示Ag NP与土壤中主要矿物或有机质之间的相互作用规律;探明Ag NP对土壤中微生物、动物和植物的致毒过程及其作用机制;发展Ag NP在土壤中迁移的数学模型,预测其在土壤中的迁移、滞留通量进而评价其淋溶风险,为Ag NP的安全利用提供重要理论基础和技术支撑. 相似文献
65.
66.
Yao Meng Junwei Song Lewei Zeng Yingyi Zhang Yan Zhao Xufei Liu Hai Guo Liuju Zhong Yubo Ou Yan Zhou Tao Zhang Dingli Yue Senchao Lai 《环境科学学报(英文版)》2022,34(1):104-117
We present the continuously measurements of volatile organic compounds(VOCs) at a receptor site(Wan Qing Sha, WQS) in the Pearl River Delta(PRD) region from September to November of 2017. The average mixing ratios of total VOCs(TVOCs) was 36.3 ± 27.9 ppbv with the dominant contribution from alkanes(55.5%), followed by aromatics(33.3%). The diurnal variation of TVOCs showed a strong photochemical consumption during daytime,resulting in the formation of ozone(O3). Five VOC sources were ... 相似文献
67.
近年来,海洋微塑料污染已成为全球关注的重要环境问题。海洋中广泛存在的微塑料可被藻类吸附、微生物定植,亦可被海洋动物摄食并蓄积。生物与微塑料之间的相互作用必然会改变微塑料的物理、化学性质,及其在海洋中的迁移转化。因此,本文系统地阐述了海洋生物对微塑料的吸附、摄入、蓄积与排泄等关键过程;重点总结了微塑料在海洋生物过程(如排泄、与海洋雪团聚、形成生物膜以及生物扰动)影响下的沉降-埋藏等迁移过程;深入讨论了海洋动物对微塑料的摄食、消化过程以及微生物的分解作用导致的微塑料破碎、降解以及塑料添加剂和吸附污染物的释放过程及其机理。本文阐明了海洋生物对微塑料迁移转化的调控作用,为理解海洋微塑料的环境归趋提供理论依据。 相似文献
68.
土壤中磺胺二甲嘧啶赋存对水稻生长的影响 总被引:1,自引:1,他引:0
为探究土壤中残留抗生素对植物生长的影响,选取土壤中检出率较高的磺胺类抗生素磺胺二甲嘧啶作为外源污染物,分析水稻苗期和成熟期生长指标、根系和叶片生理生化指标、水稻各器官中抗生素残留量和富集转运因子的变化特性,并评价水稻籽粒中残留磺胺二甲嘧啶的健康风险.结果表明,磺胺二甲嘧啶对水稻株高和生物量的抑制作用存在于整个生长周期中,且苗期的影响大于生长成熟期,根部受到的影响大于苗部.苗期秧苗根系活力、硝酸还原酶活性和叶片叶绿素含量受到随抗生素含量增加而增大的抑制作用,而抗氧化酶活性的变化趋势表现出不同特征,具体为超氧化物歧化酶活性增强、过氧化氢酶和过氧化物酶先被激活后被抑制.磺胺二甲嘧啶在水稻各器官中的积累量表现为:根>叶>茎>籽粒,且水稻籽粒的抗生素风险评估结果显示EDI/ADI<0.1,不构成健康风险.生长成熟期土壤中磺胺二甲嘧啶对水稻富集因子和转运系数的影响大于苗期.综合磺胺二甲嘧啶对水稻的不利影响,在水稻种植中施加畜禽粪便作为有机肥和使用养殖水进行农田灌溉时,需要关注磺胺二甲嘧啶的生态效应,保障水稻等作物的安全生产. 相似文献
69.
基于云高仪激光雷达、飞机AMDAR数据和常规站点等多源观测数据,并与数值模拟(CAMx-PSAT模型)相结合,以京津冀典型城市——北京城区与郊区(密云)和石家庄城区与郊区(平山)为案例研究区域,对城区和郊区边界层高度差异(ΔPBLH)、地面PM2.5浓度差异(ΔSurf_PM2.5)、高空PM2.5浓度差异(ΔVert_PM2.5)和传输通量强度及高度分布特征差异进行分析.结果表明,由于人为热源、短波辐射和热力湍流等因素,导致城区年均边界层高度(PBLH)较郊区高8%~29%,且不同季节下城区PBLH月均较郊区高2%(石家庄4月)~47%(北京7月).由于人为排放、逆温和大气湍流等共同作用,在0~1260 m之间等高度城区年均ρ(PM2.5)较郊区高0.1(石家庄)~29.7(北京)μg ·m-3,随高度增加而减小.城区年均总净通量强度远大于郊区,城区表现为流出,郊区表现为流入,是由于城区低压和郊区高压,形成城郊热力环流.北京城区和郊区与周边的年均总净通量强度之和(44.77 t ·d-1)大于石家庄(34.44 t ·d-1).受风速和PM2.5浓度的影响,在0~1260 m之间,城区和郊区与周边的净通量随离地高度的增加通量强度呈现明显增大趋势,其中1月城区和4月郊区与周边的传输交换对环境影响最为明显.不同季节下城区和郊区最大净通量的强度差异明显,两者相差2.23~4.48倍;但最大净通量强度的高度特征差异较小,主要位于611~1260 m. 相似文献
70.
河口-近海环境新污染物的环境过程、效应与风险 总被引:1,自引:1,他引:0
在全球变化和人类活动双重影响下,大量陆源污染物特别是备受各国政府和民众关注的微塑料、新型持久性有机污染物以及药物和个人护理品等新污染物进入水体环境并迁移扩散,对近海生态环境安全和人体健康产生了巨大影响.综述国内外微塑料、全/多氟化合物、抗生素和内分泌干扰物等新污染物在河口-近海环境中的污染来源、时空分布和迁移传输等环境过程及其影响因素,分析探讨近海水生生态系统中新污染物产生的不良生态效应和风险,提出未来研究重点应关注河口-近海环境中多种新污染物的相互作用和新污染物产生的联合生态毒理效应及造成的生态和健康风险等,为陆海统筹下的海洋污染防治和海洋经济的健康发展提供科学依据. 相似文献