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11.
Soil erosion associated with non-point source pollution is viewed as a process of land degradation in many terrestrial environments. Careful monitoring and assessment of land use variations with different temporal and spatial scales would reveal a fluctuating interface, punctuated by changes in rainfall and runoff, movement of people, perturbation from environmental disasters, and shifts in agricultural activities and cropping patterns. The use of multi-temporal remote sensing images in support of environmental modeling analysis in a geographic information system (GIS) environment leading to identification of a variety of long-term interactions between land, resources, and the built environment has been a highly promising approach in recent years. This paper started with a series of supervised land use classifications, using SPOT satellite imagery as a means, in the Kao-Ping River Basin, South Taiwan. Then, it was designed to differentiate the variations of eight land use patterns in the past decade, including orchard, farmland, sugarcane field, forest, grassland, barren, community, and water body. Final accuracy was confirmed based on interpretation of available aerial photographs and global positioning system (GPS) measurements. Finally, a numerical simulation model (General Watershed Loading Function, GWLF) was used to relate soil erosion to non-point source pollution impacts in the coupled land and river water systems. Research findings indicate that while the decadal increase in orchards poses a significant threat to water quality, the continual decrease in forested land exhibits a potential impact on water quality management. Non-point source pollution, contributing to part of the downstream water quality deterioration of the Kao-Ping River system in the last decade, has resulted in an irreversible impact on land integrity from a long-term perspective.  相似文献   
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This article reviews the application of environmental impact assessment (EIA) procedures and practices to three watershed modification projects situaled in western Canada. These ventures were justified for accelerating regional economic development, and cover the period during which public concerns for protecting the environment rapidly made their way into the national political agenda. An historical account and analysis of the situation, therefore, seems desirable in order to understand the development of EIA processes, practices, and methodologies since the start of construction of the first project in 1961. This study concludes that there has been good progress in predicting and evaluating environmental and related social impacts of watershed modification proposals. However, a number of obstacles need to be overcome before EIA can firmly establish itself as an effective planning tool. These difficulties include jurisdictional confusions and conflicts, division of authority and responsibility in designing and implementing appropriate mitigative and monitoring measures, lack of tested EIA methodologies, and limited availability of qualified human resources. A number of conclusions and suggestions are offered so that future watershed modification proposals may be planned and implemented in a more environmentally sustainable fashion. These include: (1) EIA processes must be completed before irrevocable decisions are made. (2) Any major intrusion into a watershed is likely to impact on some major components of the ecosystem(s). (3) Mitigation costs must form part of the benefit-cost analysis of any project proposal. (4) Interjurisdictional cooperation is imperative where watersheds cross political boundaries. (5) The EIA process is a public process, hence public concerns must be dealt with fairly. (6) The role of science in the EIA process must be at arms length from project proponents and regulators, and allowed to function in the interest of the protection of the environment and public health and safety. The views expressed here are the authors’ own and do not necessarily reflect those of FEARO and/or other government agencies and officials involved in the review of these projects.  相似文献   
14.
利用长江口枯季潮区界大通站近 4 0年来的水文化学观测资料 ,求得长江径流来源的硝酸盐通量 ,并以此作为长江河口硝酸盐的输入通量。结合历年长江流域的社会经济统计资料和降水量资料等分析 ,发现长江河口硝酸盐的输入通量与流域的人口密度、农业氮肥施用量、灌溉面积以及降水量等显著正相关。随着人口的增长 ,流域内的人类活动不断加剧 ,直接或间接地对长江河口硝酸盐的输入通量产生影响。而降水及灌溉等活动促进了土壤中氮素向河流流失的过程 ,并经长江径流向河口、海洋输送。 90年代后期 ,由人类因素造成的硝酸盐通量的增加占长江河口硝酸盐输入通量的95 %以上。降水引起的水土流失和大气氮氧化物的沉降是硝酸盐通量增加的直接原因 ,而农业活动、燃料燃烧和污水排放等人类活动是该通量变化的主要控制因素  相似文献   
15.
A new methodological approach to the development of biological and technological safety standards for the impact of underground mining on the natural biota is proposed.  相似文献   
16.
竹子坝料场是官地水电站混凝土浇筑骨料的重要来源之一。结合竹子坝料场的地形地质情况,以及料场开挖后形成的东、南、西三段人工边坡,运用刚体极限平衡的方法进行稳定性分析及其影响因数的研究。  相似文献   
17.
Contamination of groundwater by agrochemicals is now widely recognized as an extremely important environmental problem. Modern agricultural practices involve the combined use of irrigation with the application of large amounts of agrochemicals to maximize crop yield. Due to flood irrigation and natural runoff, agricultural activities might generate soil, surface water and groundwater contamination problems and leaching of pesticides. Modeling of the transport and fate of pesticides, such as simazine, may help understand the long-term potential risk to the subsurface environment. This paper illustrates a comparative study via the use of three different pesticide transport simulation models and the applicability of those models in determining the groundwater vulnerability to pesticides contamination in a citrus orchard located at the Lower Rio Grande Valley (LRGV). The three models used in the study are the pesticide root zone model-3 (PRZM-3), the pesticide analytical model (PESTAN) and integrated pesticide transport modeling (IPTM). The concentration values obtained from all three models are in agreement, and they show a decreasing trend from the surface through the vadose zone. The problem is how to use this information and, specifically, how to combine the testimony of a number of experts into a single useful judgment. With the aid of the fuzzy multiattribute decision making method, PRZM-3 is deemed as the most promising one for such precision farming applications.  相似文献   
18.
This paper gives step-by-step instructions for assessing aquatic selenium hazards associated with mining. The procedure was developed to provide the U.S. Forest Service with a proactive capability for determining the risk of selenium pollution when it reviews mine permit applications in accordance with the National Environmental Policy Act (NEPA). The procedural framework is constructed in a decision-tree format in order to guide users through the various steps, provide a logical sequence for completing individual tasks, and identify key decision points. There are five major components designed to gather information on operational parameters of the proposed mine as well as key aspects of the physical, chemical, and biological environment surrounding it — geological assessment, mine operation assessment, hydrological assessment, biological assessment, and hazard assessment. Validation tests conducted at three mines where selenium pollution has occurred confirmed that the procedure will accurately predict ecological risks. In each case, it correctly identified and quantified selenium hazard, and indicated the steps needed to reduce this hazard to an acceptable level. By utilizing the procedure, NEPA workers can be confident in their ability to understand the risk of aquatic selenium pollution and take appropriate action. Although the procedure was developed for the Forest Service it should also be useful to other federal land management agencies that conduct NEPA assessments, as well as regulatory agencies responsible for issuing coal mining permits under the authority of the Surface Mining Control and Reclamation Act (SMCRA) and associated Section 401 water quality certification under the Clean Water Act. Mining companies will also benefit from the application of this procedure because priority selenium sources can be identified in relation to specific mine operating parameters. The procedure will reveal the point(s) at which there is a need to modify operating conditions to meet environmental quality goals. By recognizing concerns early in the NEPA process, it may be possible for a mining company to match operational parameters with environmental requirements, thereby increasing the likelihood that the permit application will be approved.  相似文献   
19.
大气污染是全球性的公共环境健康问题.本研究基于临沂市区2015年6种大气污染物(PM2.5、PM10、SO2、NO2、CO、O3)的逐日监测数据,分析了污染物的污染特征及其与气象因子的相关性,通过构建广义相加模型,模拟分析了单个污染物与居民呼吸、循环系统疾病门诊人次的暴露-反应关系.结果表明,PM2.5和PM10是临沂市区首要大气污染物,NO2和SO2次之,O3和CO浓度较低;除O3外,其它5种污染物之间呈显著正相关,与风速、温度、相对湿度3个气象因子呈负相关,浓度水平冬季高、夏季低;O3与温度呈显著正相关.对于呼吸系统疾病,单个污染物每增加10 μg·m-3(CO每增加0.1 mg·m-3)的最大效应情况是:PM10、SO2、NO2、CO均在当天(lag0)使得门诊人次分别增加0.36%、1.77%、1.29%、0.69%,PM2.5和O3分别在累积滞后6 d(lag05)和单日滞后3 d(lag3)使得门诊人次分别增加0.6%和1.07%;对于循环系统疾病,单个污染物每增加10 μg·m-3(CO每增加0.1 mg·m-3)的最大效应是:PM2.5、PM10均在累积滞后5 d(lag04)使得门诊人次分别增加0.72%、0.80%,SO2、NO2均在累积滞后6 d使得门诊人次分别增加3.55%、3.54%,CO和O3则分别在当天和单日滞后3 d使得门诊人次分别增加0.77%、1.39%.对于呼吸、循环系统疾病,PM2.5、PM10、CO、O3对男性的影响均大于女性,SO2则反之;NO2对男性呼吸系统和女性循环系统影响较大.大气污染物对少年(7~17岁)呼吸系统和对中年(41~65岁)循环系统影响较大.临沂市区6种大气污染物存在不同程度的污染,对居民呼吸、循环系统疾病均有不同程度的影响,且存在性别和年龄的差异.  相似文献   
20.
目的分析两相流引起的冲击力与管道固有频率的流固耦合特性。方法针对海洋油田水下集输-立管系统内严重段塞流这一不稳定流动,通过构建气液两相流固耦合预测模型,分析管内段塞频率、管外涡街频率等流动特性与管道固有频率的关系,获取严重段塞流不同阶段对管道的冲击力特性。结果在水平方向上,管道所受冲击力最大部位为水平管与下倾管连接处,约为703.3 N;在垂直方向上,管道所受冲击力最大部位为下倾管底部与立管连接处,约为-993.5 N。管道所受冲击力与管内两相流引发的压力波动存在明显的一致性,在液塞喷发阶段,会引起整个管道冲击力的剧增。结论严重段塞流同一周期内,不同流动阶段所引发的管道振动特性不同,且不可忽视,在实际海管设计及使用过程中,需要结合管道运行工况对海管振动特性进行综合评估。  相似文献   
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