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51.
This unique study evaluates the cumulative 16‐year lifetime performance of a wetland retention basin designed to treat stormwater runoff. Sediment cores were extracted prior to basin excavation and restoration to evaluate accretion rates and the origin of materials, retention characteristics of fine particulate matter, and overall pollutant removal efficiency. The sediment and organic layers together accreted 3.2 cm of depth per year, and 7.0 kg/m2/yr of inorganic material. Average annual accretion rates in g/m2/yr were as follows: C, 280; N, 17.7; P, 3.74; S, 3.80; Fe, 194; Mn, 2.68; Ca, 30.8; Mg, 30.7; K, 12.2; Na, 2.54; Zn, 0.858; Cu, 0.203; and B, 0.03. The accretion of C, N, P and sediment was comparable to nonwastewater treatment wetlands, overall, and relatively efficient for stormwater treatment wetlands. Comparison of particle size distribution between sediment cores and suspended solids in stormwater runoff indicated the wetland was effective at removing fine particles, with sediment cores containing 25% clay and 56% silt. A majority of the accretion of most metals and P could be attributed to efficient trapping of allochthonous material, while over half the accretion of C and N could be attributed to accumulation of autochthonous organic matter. Stormwater treatment was shown to be effective when physical properties of a retention basin are combined with the biological processes of a wetland, although sediment accretion can be relatively rapid.  相似文献   
52.
By discharging excess stormwater at rates that more frequently exceed the critical flow for stream erosion, conventional detention basins often contribute to increased channel instability in urban and suburban systems that can be detrimental to aquatic habitat and water quality, as well as adjacent property and infrastructure. However, these ubiquitous assets, valued at approximately $600,000 per km2 in a representative suburban watershed, are ideal candidates to aid in reversing such cycles of channel degradation because improving their functionality would not necessarily require property acquisition or heavy construction. The objective of this research was to develop a simple, cost‐effective device that could be installed in detention basin outlets to reduce the erosive power of the relatively frequent storm events (~ < two‐year recurrence) and provide a passive bypass to maintain flood control performance during infrequent storms (such as the 100‐year recurrence). Results from a pilot installation show that the Detain H2O device reduced the cumulative sediment transport capacity of the preretrofit condition by greater than 40%, and contributed to reduced flashiness and prolonged baseflows in receiving streams. When scaling the strategy across a watershed, these results suggest that potential gains in water quality and stream channel stability could be achieved at costs that are orders of magnitude less than comparable benefits from newly constructed stormwater control measures.  相似文献   
53.
Soil microbial populations can fluctuate in response to environmental changes and, therefore, are often used as biological indicators of soil quality. Soil chemical and physical parameters can also be used as indicators because they can vary in response to different management strategies. A long-term field trial was conducted to study the effects of different tillage systems (NT: no tillage, DH: disc harrow, and MP: moldboard plough), P fertilization (diammonium phosphate), and cattle grazing (in terms of crop residue consumption) in maize (Zea mays L.), sunflower (Heliantus annuus L.), and soybean (Glycine max L.) on soil biological, chemical, and physical parameters. The field trial was conducted for four crop years (2000/2001, 2001/2002, 2002/2003, and 2003/2004). Soil populations of Actinomycetes, Trichoderma spp., and Gliocladium spp. were 49% higher under conservation tillage systems, in soil amended with diammonium phosphate (DAP) and not previously grazed. Management practices also influenced soil chemical parameters, especially organic matter content and total N, which were 10% and 55% higher under NT than under MP. Aggregate stability was 61% higher in NT than in MP, 15% higher in P-fertilized soil, and also 9% higher in not grazed strips, bulk density being 12% lower in NT systems compared with MP. DAP application and the absence of grazing also reduced bulk density (3%). Using conservation tillage systems, fertilizing crops with DAP, and avoiding grazing contribute to soil health preservation and enhanced crop production.  相似文献   
54.
Abstract: Multilevel or hierarchical models have been applied for a number of years in the social sciences but only relatively recently in the environmental sciences. These models can be developed in either a frequentist or Bayesian context and have similarities to other methods such as empirical Bayes analysis and random coefficients regression. In essence, multilevel models take advantage of the hierarchical structure that exists in many multivariate datasets; for example, water quality measurements may be taken from individual lakes, lakes are located in various climatic zones, lakes may be natural or man‐made, and so on. The groups, or levels, may effectively yield different responses or behaviors (e.g., nutrient load response in lakes) that often make retaining group membership more effective when developing a predictive model than when working with either all of the data together or working separately with the individuals. Here, we develop a multilevel model of the impact of farm level best management practices (BMPs) on phosphorus runoff. The result of this research is a model with parameters which vary with key practice categories and thus may be used to evaluate the effectiveness of these practices on phosphorus runoff. For example, it was found that the effect of fertilizer application rate on farm‐scale phosphorus loss is a function of the application method, the hydrologic soil group, and the land use (crop type). Further, results indicate that the most effective method for controlling fertilizer loss is through soil injection. In summary, the resultant multilevel model can be used to estimate phosphorus loss from farms and hence serve as a useful tool for BMP selection.  相似文献   
55.
企业安全管理中的潜流文化现象与应对方略   总被引:2,自引:1,他引:1  
简介潜流安全文化的内涵,阐述潜流安全文化的隐蔽性、离散性、传承性和不稳定性的特点,剖析潜流安全文化形成的根源,提出应对潜流安全文化的扬长避短、因势利导、强化沟通、扩大参与、落实承诺和深化激励的方略。通过对企业安全管理中的潜流文化现象与应对方略的分析,得出以下结论:企业潜流安全文化是客观存在的,同时企业管理者是可以对企业潜流安全文化进行有效管理的;认识和管理企业安全管理中的潜流文化现象,可以有力推动企业安全文化建设工作的顺利开展。  相似文献   
56.
基于现行基层安全生产监管体制有许多不适应安全生产工作的问题,提出扩大基层安监体制新方案,目的在于解决基层安监体制中存在的种种问题。该方案的核心是建立县区安监局直属的安全工程监测站,取代现有的乡镇街道安监站。定性为事业机构和技术服务机构,建立一支安全技术专业人员队伍,以加强其力量,开展所有的安全工程监测等技术服务工作。为配合该项工作推进,应推行注册安全工程师资格考试,以加强基层安监体制内人才队伍建设。  相似文献   
57.
安全生产支撑模式及架构探讨   总被引:1,自引:0,他引:1  
用系统论方法分析安全生产工作的整体性概念,指出安全生产支撑体系构建应以系统论的科学理论为基础,并提出在社会主义市场经济条件下,制度支撑、组织支撑和技术支撑共同构成稳定完整的安全生产支撑模式。在架构上,安全生产支撑体系可细分为若干各具特点的服务与支持系统,包括法律法规、安全标准、政策措施、企业安全管理、政府安全监管、事故应急管理、科技创新、中介服务、宣传教育等体系,该体系相对独立、相互联系,共同构成完整的安全生产支撑体系框架。  相似文献   
58.
基于协整和因果分析的我国安全生产宏观政策干预研究   总被引:1,自引:1,他引:0  
为进一步分析我国安全生产政策的实施效果及存在问题,根据政策时效干预度量化模型,采用协检验、格兰杰因果检验和脉冲响应分析等计量方法对1978-2006年我国特别重大事故发生趋势与政策时效干预力度关系进行量化分析,得出特别重人事故的发生与政策时效干预力度问存在长期均衡关系,且在10%的显著水平下,特别重大事故的发生是政策时效干预力度加强的格兰杰原因.同时分析表明,目前我国安全生产政策干预表现出两大缺点:被动性和滞后性.因此,应逐步开展生产安全事故宏观预警与政策模拟等研究,为提高安全生产宏观政策干预的主动性和前瞻性提供技术支持.  相似文献   
59.
本文主要探讨肘部支撑在视频显示终端作业过程中对背部和右手表面肌电的影响。采用Meta分析方法对以往研究资料进行筛检及汇总分析。结果发现:左右侧斜方肌的最大自主收缩百分比(MVC%)分别下降了0.83%(95%CI-1.00%--0.66%)和0.61%(95%CI-0.78%~-0.43%),对于右手食指伸指肌而言,其影响并不具有显著性。可以认为肘部支撑是一种比较简单而且有效的预防措施。  相似文献   
60.
为认清我国安全生产形势现状与发展趋势,作者应用比较研究和预测分析方法,回顾总结了我国生产安全事故历史演变特点,对事故死亡人数、十万死亡率和重大事故发生频率等安全生产指标作了近中期预测模拟分析;结合我国经济社会发展现状,提出了中国安全生产大趋势已进入拐点的判断,并建议在新的历史机遇面前,对安全生产监管模式做重大调整,推进安全生产形势根本性好转,实现安全发展。  相似文献   
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