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71.
Waters in the Great Lakes basin contain more than 400 contaminant chemicals that potentially affect fishery resources, commerce, and human inhabitants. We determined in the laboratory the effects of selected contaminants on the toxicity of the widely used lampricides TFM (3-trifluoromethyl-4-nitrophenol) and Bayer 73 (2′,5-dichloro-4′-nitrosalicylanilide) to three species of fish—rainbow trout (Salmo gairdneri), white sucker (Catostomus commersoni), and fathead minnow (Pimephales promelas). The fish were exposed to paired mixtures of lampricides and selected contaminants in standardized, acute static toxicity tests to determine the resulting type of response—less than additive, additive, or greater than additive (synergistic). As expected, the toxicities of combinations of lampricides with organic pesticides, metal, industrial or municipal pollutants, and tannic acid were mostly additive. However, the toxicity of a combination of TFM, Delnav, and malathion was synergistic, and extremely small quantities of each chemical became lethal when mixed. The concentration that produced 50% mortality was 1.64 mg/L for TFM alone but only 0.041 mg/L for TFM with the pesticides. Toxicities of the pesticides in the combination also increased commensurately. The triple combination of chemicals produced extraordinary synergism and effectively demonstrated the hazards that may result if certain chemical combinations occur in the aquatic environment. However, synergism is not the only kind of toxic action that produces hazards to aquatic organisms. All three types of toxic action are of concern because toxic units produced by contaminant chemicals add to the toxic units of applied management chemicals. Since the toxicity of the majority of chemical combinations is simply additive, this cumulative toxic action contributes more total units to aquatic environments than the extreme actions of less than additive and synergism. The toxicity of the lampricide TFM, as well as other management chemicals, is reinforced by the presence of any contaminant that contributes additional units of toxicity. Therefore, all types of cumulative toxic action should be of concern to people and agencies involved with protecting the environment.  相似文献   
72.
工程建设项目要实施健康、安全和环境管理,文章阐述了工程建设项目职业健康安全和环境管理机构设置的必要性,该机构是项目职业健康安全和环境管理体系及其管理网络的管理者,是完成项目职业健康安全和环境保护管理目标的第一责任部门。该机构的主要职责有:编制作业文件,组织培训教育,进行监测、检查和监督,审核不符合项的整改、纠正和预防工作,记录及其管理,项目职业健康安全和环境管理评审。组织精悍、职责明确的管理机构并通过严密有序的工作,是实现项目健康、安全、环境管理目标的重要保证。  相似文献   
73.
中、美流域水资源管理机制比较   总被引:1,自引:0,他引:1  
萨斯奎哈纳流域管理委员会的委员由美国联邦政府和其流域内纽约、宾夕法尼亚、马里兰三个州的代表组成。在《萨斯奎哈纳流域协议》(联邦法律)的授权下。该委员会有权处理流域内的任何水资源问题。相比之下.国内的流域机构没有流域内省(自治区、直辖市)的代表作为委员,流域水行政管理的职能还不能满足流域内社会经济发展的实际需要。因此,形成和完善以流域为单元的水资源管理法律框架是有效保护、开发和管理流域水资源的基础,建立包括流域内省(自治区、直辖市)为代表的流域管理委员会可以提供一个有代表性、长效的管理机构。流域管理委员会应着重加强流域水资源保护、开发和管理的综合规划,注重流域的公共利益和社会服务.重视水质、湿地、洄游鱼类、珍稀物种和文化遗产保护.切实担当起河流代言人和保护神的角色。  相似文献   
74.
5S法在建筑工程施工过程质量控制中的应用   总被引:1,自引:0,他引:1  
在阐述5S法效能的基础上,通过5S法在日本企业质量管理中所发挥的巨大作用与5S法在我国建筑工程施工中的应用现状的对比,提出了在我国建筑工程施工中推行5S法进行现场管理的建议,并且详细介绍了5S法在建筑工程施工中应用的一些典型做法.  相似文献   
75.
The technical characters of mobile agent (MA) originated in the distributional artificial intelligence domain is introduced. A network management construction based on agent (NMCA) is then proposed. The NMCA structure features are elaborated in detail. A prototype design of NMCA is given by using the jKQML programming. The establishment of NMCA platform will be helpful to reduce the correspondence load of network management and improves the efficiency and the expansion ability of network management systems.  相似文献   
76.
拉西瓦水电站前期工程施工中,面对目前水电施工企业普遍存在的问题,知难而进,始终把安全、质量工作摆在工程建设的首位,使电站前期工程质量不因市场变化的改革而受到冲击,不因竞争而松懈,并不因项目利润率降低而削弱,提高水电建设管理水平,取得良好的开端,工程质量得到了保证。从中总结经验,不断强化和探索水电工程管理的新模式。  相似文献   
77.
对中、美两国高校高水平运动队管理体制的探讨   总被引:15,自引:0,他引:15  
通过调查和查阅了大量的资料,对中、美两国的高校高水平运动队的管理体制进行了比较,旨在通过学习和借鉴将我国高校的高水平运动队管理体制不断的完善,提供一定的参考。  相似文献   
78.
从人员质量意识、产品设计质量、原材料/元器件的控制、人员操作质量、产品评审力度等方面,分析质量管理工作中存在的难点,并提出相应的解决措施.  相似文献   
79.
The needs that an energy supply system must meet are constantly changing, due to technological, social and political reasons. Effective energy planning is a dynamic process that is repeated periodically and adjusts to changing conditions. Energy decision makers and planners are no longer able to rely on inductive decision making since they have to investigate the effect of various decision parameters and possible future changes. To help in this process, models have been developed where estimates of future load growth, candidate power plants, fuels and other key factors can be introduced, from which the planners can evaluate decision parameters and the available alternatives. The paper presents the different methodologies and practices that are used by 11 energy models for energy demand forecasting, supply side management and generation expansion planning, demand side management and integrated resource planning. The paper concludes to the presentation of a strategic appraisal of the examined energy models appropriate for energy planning in Mozambique. Three models are proposed for conducting demand forecasting, generation expansion planning and demand side management. Copyright © 2002 John Wiley & Sons, Ltd.  相似文献   
80.
On irrigation schemes with rotational irrigation systems in semiarid tropics, the existing rules for water allocation are based on applying a fixed depth of water with every irrigation irrespective of the crops, their growth stages, and soils on which these crops are grown. However, when water resources are scarce, it is necessary to allocate water optimally to different crops grown in the irrigation scheme taking account of different soils in the command area. Allocating water optimally may lead to applying less water to crops than is needed to obtain the maximum yield. In this paper, a three stage approach is proposed for allocating water from a reservoir optimally based on a deficit irrigation approach, using a simulation-optimization model. The allocation results with a deficit irrigation approach are compared for a single crop (wheat) in an irrigation scheme in India, first with full irrigation (irrigation to fill the root zone to field capacity) and second with the existing rule. The full irrigation with a small irrigation interval was equivalent to adequate irrigation (no stress to the crop). It is found that practicing deficit irrigation enables the irrigated area and the total crop production in the irrigation scheme used for the case study to be increased by about 30–45% and 20–40%, respectively, over the existing rule and by 50 and 45%, respectively, over the adequate irrigation. Allocation of resources also varied with soil types.  相似文献   
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