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Water allocation systems are challenged by hydrologic droughts, which reduce available water supplies and can adversely affect human and environmental systems. To address this problem, drought management mechanisms have been instituted in jurisdictions around the world. Historically, these mechanisms have involved a crisis management or reactive approach. An important trend during the past decade in places such as the United States has been a shift to a more proactive approach, emphasizing drought preparedness and local involvement. Unfortunately, local capacity for drought planning is highly variable, with some local governments and organizations proving to be more capable than others of taking on new responsibilities. This paper reports on a study of drought planning and water allocation in the State of Minnesota. Factors facilitating and constraining local capacity for drought planning were identified using in-depth key informant interviews with state officials and members of two small Minnesota cities, combined with an analysis of pertinent documentation. A key factor contributing to the effectiveness of Minnesota's system is a water allocation system with explicit priorities during shortages, and provisions for restrictions. At the same time, the requirement that water suppliers create Public Water Supply Emergency Conservation Plans (PWSECP) clarifies the roles and responsibilities of key local actors. Unfortunately, the research revealed that mandated PWSECP are not always implemented, and that awareness of drought and drought planning measures in general may be poor at the local level. From the perspective of the two cities evaluated, factors that contributed to local capacity included sound financial and human resources, and (in some cases) effective vertical and horizontal linkages. This analysis of experiences in Minnesota highlights problems that can occur when senior governments establish policy frameworks that increase responsibilities at the local level without also addressing local capacity.  相似文献   
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Results are presented of an extensive survey of the heavy metal content of intertidal mussels, Mytilus edulis (L.), from around the Scottish coasts. An important first conclusion is that areas can be identified in which mussels acquire relatively elevated concentrations of certain heavy metals. In general, areas of known pollution display elevated concentrations of several metals, but some areas not greatly influenced by man's activities also show elevated concentrations of a single metal. Comparisons are made of the strategies employed in this and other similar surveys and suggestions made for the design of future exercises.  相似文献   
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Oysters, Ostrea edulis, were exposed to cadmium (0.1 mg l-1) for up to 110 d (in 1982) under laboratory conditions in order to determine the effect of Cd exposure on blood amoebocytes. The results demonstrate that Cd-accumulation does not alter the total Cu and Zn concentrations in gill tissue. There was a decrease in the numbers of metal-containing amoebocytes, and electron microprobe analysis showed that this was largely due to a reduction in numbers of the mixed Cu/Zn-containing cells rather than in Cu-or Zn-containing cells. It is postulated that this response, which may involve the release of metals from amoebocytes into gill tissue, is a generalised stress response of this oyster. No evidence was found for the presence of a specific Cd-containing blood cell or Cd-binding protein in blood cells.  相似文献   
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