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281.
Abstract: Dissolved inorganic nitrogen (DIN) retention‐transport through a headwater catchment was synthesized from studies encompassing four distinct hydrologic zones of the Shingobee River Headwaters near the origin of the Mississippi River. The hydrologic zones included: (1) hillslope ground water (ridge to bankside riparian); (2) alluvial riparian ground water; (3) ground water discharged through subchannel sediments (hyporheic zone); and (4) channel surface water. During subsurface hillslope transport through Zone 1, DIN, primarily nitrate, decreased from ~3 mg‐N/l to <0.1 mg‐N/l. Ambient seasonal nitrate:chloride ratios in hillslope flow paths indicated both dilution and biotic processing caused nitrate loss. Biologically available organic carbon controlled biotic nitrate retention during hillslope transport. In the alluvial riparian zone (Zone 2) biologically available organic carbon controlled nitrate depletion although processing of both ambient and amended nitrate was faster during the summer than winter. In the hyporheic zone (Zone 3) and stream surface water (Zone 4) DIN retention was primarily controlled by temperature. Perfusion core studies using hyporheic sediment indicated sufficient organic carbon in bed sediments to retain ground water DIN via coupled nitrification‐denitrification. Numerical simulations of seasonal hyporheic sediment nitrification‐denitrification rates from perfusion cores adequately predicted surface water ammonium but not nitrate when compared to 5 years of monthly field data (1989‐93). Mass balance studies in stream surface water indicated proportionally higher summer than winter N retention. Watershed DIN retention was effective during summer under the current land use of intermittently grazed pasture. However, more intensive land use such as row crop agriculture would decrease nitrate retention efficiency and increase loads to surface water. Understanding DIN retention capacity throughout the system, including special channel features such as sloughs, wetlands and floodplains that provide surface water‐ground water connectivity, will be required to develop effective nitrate management strategies.  相似文献   
282.
ABSTRACT: Thames Water is one of ten regional Water Authorities established in 1974 to manage all water services in England and Wales. This paper looks back at water reorganization and reviews the achievements and highlights of the last three years. Constitutionally, Water authorities are a combination of a nationalized industry and local authority. This has advantages and disadvantages. Freedom of action, particularly in financial matters, is constrained by Government and official agencies. A severe pollution of the upper Thames and the drought of 1976 tested Thames Water's ability to deal with emergencies. Thames Water does not have an operational monopoly. Private Water Companies supply one third of the water demand and local authorities manage nearly all the sewers. But Thames Water's control over planning and investment ensures that the river basin is managed in a coordinated fashion. Tariff structure changes have led the Authority to bill all its consumers direct. The Thames is a small but intensively used river and vigilance is needed to maintain water quality. Thames Water is proud of the restoration of the tidal Thames from a typical grossly polluted metropolitan estuary to its present excellent condition. The British Government intends to establish a national water industry strategic planning organization but at the same time they affirm that there can be no departure from the principle of integrated river basin management.  相似文献   
283.
ABSTRACT: Simulation of a large stream-aquifer system in Nebraska has been accomplished for the period from 1975 to 2020 to determine effects of controls on ground water pumpage. Three scenarios tested consisted of average annual withdrawals of 15.2 ac-in/ac (FUTURE 1), 14.8 ac-in/ac (FUTURE 2), and 9.8 ac-in/ac (FUTURE 3). The highest quantity represents the historical tendency; while the 14.8 in. figure represents a slight reduction and also represents an equalization of irrigation application efficiencies throughout the area. The lowest figure represents a substantial increase in application efficiency. Comparisons between simulated ground water elevations indicate maximum savings of FUTURE 2 over FUTURE 1 of less than 8 ft. FUTURE 3 ft. FUTURE 3 levels are projected to be a maximum of approximately 13 ft. higher than FUTURE 1's. The relatively small savings from reductions in pumpage result primarily from recirculation effects. Differences between ground water contributions to stream flow are small for all scenarios. These contributions decrease with time and increasing pumpage amounts. Base flow rates at the end of the simulation are approximately 25 percent of those at the beginning.  相似文献   
284.
Irreversible environmental changes are occurring along the Colorado River in the Grand Canyon as a result of regulation of the river flow by the Glen Canyon Dam. The questions of primary importance in managing this great natural resource are 1) in what manner and how rapidly are the physical and ecological adjustments taking place, and 2) is the increased use of the river for recreational boating contributing to the degradation? Human use along the Colorado River is limited, for the most part, to the relic, pre-dam fluvial deposits colloquially called “beaches.” With the new river regime these deposits are positioned well above the present high-water stage, 27,000 cubic feet/second (cfs), or 765 cubic meters/second (cms), so they are not replenished periodically as they were prior to construction of the dam in 1963. The dominant natural processes now are aeolian sand transport and mass wasting. The float-trip passengers use the river beaches for hiking, camping, and. lunch stops. At the most desirable sites thirty to forty people camp on the beaches each night over a four to five month season. Human impact includes incorporation of campsite litter, burial of chemically treated waste, and the direct stress associated with people walking on the vegetation and unstable sedimentary deposits. Results of our investigations indicate that the rate of degradation at the most heavily used sites exceeds the capacity of aeolian processes to reestablish natural landscapes. Therefore, careful management of float trjps is needed if these environments are to be maintained in a natural state rather than a “sand-box” state.  相似文献   
285.
由于较低的自然老化速率,微塑料在实际水体长期户外暴露过程中老化行为的数据仍较缺乏.通过聚碳酸酯(Polycarbonate,PC)微塑料在长江表层水样的18个月户外暴露试验以揭示自然老化过程对微塑料表面特征及对金属离子(Cr6+和Co2+)吸附行为的重要影响.结果显示,户外暴露改变了PC微塑料的理化性质,包括表面开裂、粒径降低、亲水性和熔点增加以及表面氧化(产生羰基和羟基).同时,户外老化过程明显影响微塑料对金属离子的吸附行为.原始和低老化程度PC对金属离子的吸附主要通过物理作用控制,而高老化程度微塑料由于产生含氧功能团对金属离子的吸附主要由化学过程如络合和共价键等作用控制.并且,不同老化程度PC微塑料对Cr6+和Co2+的吸附性能不同.对于Cr6+,PC的吸附性能随其老化程度增加呈先升高后降低的趋势,然而对于Co2+,平衡吸附性能随老化程度增加呈增加的趋势.户外老化过程产生含氧官能团、破碎和开裂以及生物膜可能是影响吸附性能的主要因素.本研究证实了长期户外...  相似文献   
286.
高锰酸钾强化PAC混凝处理温瑞塘河黑臭水体试验研究   总被引:1,自引:0,他引:1  
以浙江省温州市温瑞塘河某河段黑臭地表水为研究对象,考察高锰酸钾强化PAC混凝工艺的除污效能,获得处理温瑞塘河黑臭水体的最佳工艺条件,为恢复河流水体生态自净功能提供基础。试验结果表明,高锰酸钾的最优投加方式为在混凝剂PAC前投加,最佳预氧化时间5 min,最佳投加量1.5 mg/L。将本实验得出的最优混凝处理条件应用于温瑞塘河实际黑臭水体的处理时发现,处理后水质明显改善,此表明高锰酸钾强化混凝应急处理温瑞塘河黑臭水体是切实可行的,可为实际的应急处理工艺提供了理论依据和技术指导。  相似文献   
287.
汕头港湾附近水域的潮流特征,由于拦沙堤的建成及港池附近河道变窄而发生了一些变化。本文在取得现场实测资料的基础上,采用沿深度平均的二维浅水潮波方程,对该水体的潮流场进行了数值模拟计算,重现出潮流场在一个潮周期中的变化过程,分析潮流对污染扩散的作用。  相似文献   
288.
基于水量变化的塔里木河统一管理成效评价   总被引:2,自引:0,他引:2  
为科学明确评价塔里木河统一管理成效,论文基于源流及干流的来水与耗水量数据,利用非参数检验、周期叠加模型等构建人类活动对源流区水量影响分离模型,进而结合距平百分比和变异系数等参数,对比分析统一管理措施对塔里木河利用管理水平的影响,结果表明:1)人类活动对源流区水资源的影响程度在1994—2001、2002—2010、2011—2013年呈减弱趋势,流域过度引水的现象得到一定的好转,源流区水资源利用水平和管理效能提高;2)实施统一管理后,干流来水保证度提高,干流来水距平百分比的变异系数由-4.67减小至0.33,源流与干流来水距平百分比差异的平均值由-19.6%变为-4.9%,且源流干流来水差异值累积距平曲线由上升转为下降,源流和干流来水的波动性减弱,尤其是干流来水波动性要弱于源流,同时源流及干流来水更具协调性,管理部门对塔里木河径流的调度和管控能力明显提升,统一管理成效显著。  相似文献   
289.
基于三维水质模型对珠江口夏季有机碳的分布特征及其收支进行了研究,量化了各动力学过程对有机碳分布的影响,这对于深入了解珠江口碳循环过程有重要意义.同时,采用2006年7—8月观测数据对模型进行了验证,结果显示模型模拟效果良好.研究表明,珠江口夏季有机碳呈明显的空间变化,其浓度总体上从口门向外海逐步降低,底层递减幅度大于表层;表层平均浓度为2.42 mg·L~(-1),底层平均浓度为1.91 mg·L~(-1).此外,有机碳在垂向上的分布与水体层化紧密相关,层化水域中的有机碳浓度随水深迅速下降,非层化水域上、下层的浓度差异不大.有机碳收支结果则表明,珠江口不同水域有机碳的物理、生化过程差异明显.在内伶仃洋,有机碳分布由物理过程主控,其主要来源与消耗分别为径流输送和沉降,两者分别约占该区域有机碳输入总量的83.80%、83.18%;在中伶仃洋,有机碳分布受物理和生化因素共同调控,其来源以生化产碳为主,动力输送为辅,主要耗碳项为沉降;在外伶仃洋,其西侧水域的有机碳主要来源与消耗分别为径流输送和沉降,有机碳分布受物理和生化过程共同调控,其中,物理过程占优势,而在其东侧水域,有机碳主要来源与消耗分别为生化产碳和生化耗碳,有机碳分布由生化过程主控.另外,捕食产碳和氧化耗碳分别是珠江口各生化过程中最重要的产、耗碳过程.  相似文献   
290.
黄河流域是我国重要的生态功能区,在全国经济社会发展格局中具有重要作用。生态补偿作为保护流域生态环境、促进人与自然和谐的重要手段,在推动黄河流域高质量发展过程中具有重要作用。本文从流域区段、评价方法、影响效应、优化思路、保障机制等方面对黄河流域生态补偿的理论和实践成果进行了综述,同时提出加强多学科协同攻关、构建具有区域特征的生态补偿模式、加快建立以海定陆的生态补偿机制、注重生态损害形成机制和程度评估、加强构建多元化生态补偿保障体系等未来研究中需要深化和完善的几点建议,以期为中国经济高质量发展阶段黄河流域生态补偿的理论与实践研究提供启示和借鉴。  相似文献   
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