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151.
PDCA循环模式是HSE管理体系运行的最基本方式,也是实现体系绩效螺旋式上升的重要手段.在体系运行的过程中,经过PDCA等各个环节以及各环节涉及到的诸多要素的不断发展与完善,体系的目标与方针得以实现.从管理体系实际运行的角度来看,整个体系运行过程中的PDCA循环又可以分为以下层次:单要素间某几个管理方面的相互影响与作用;几个要素之间形成的PDCA循环;大部分要素(关键要素)之间的作用;整个体系的PDCA循环.这几层次的循环模式也是相互交叉相互作用的.现以表1所涉及的工作为例,探讨这几个层次PDCA循环的相关性. 相似文献
152.
2004年台安县洪家农牧场引进加拿大优质苜蓿草进行种植实验.通过清种、林地间作和不种苜蓿草对比实验,对土壤速效氮、速效磷、速效钾、有机质、PH值、含水量进行分析,得出种植苜蓿草所产生的生态环境效益和经济效益.此项实验结论说明,紫色苜蓿是牧草之王,可促进养殖业的发展,对改善生态环境,防止土壤沙化和水土流失,改善农业结构,实现生态良性循环起到积极的促进作用,对改善生态环境起到了良好的示范作用. 相似文献
153.
基于生命周期的循环农业系统评价 总被引:11,自引:1,他引:10
针对"循环经济系统是低碳经济的实现途径之一"的观点,在国内外研究的基础上,改进LCA模型,以湖南某典型的循环鸭业产业进行实证研究.整个鸭产业生命周期中耗用的不可再生资源、土地、水资源分别为48.629MJ、2.36m2和1321.41kg,潜在的温室气体、环境酸化、富营养化、人体毒性、水体毒性、土壤毒性分别为11543.26g(CO2eq)、52.36g(SO2eq)、25.83g(PO4eq)、1.26、60.74、24.65g(1,4-DCBeq),加权评估后,富营养化、水体毒性、土壤毒性潜在威胁均高于温室气体.结果表明,建立在传统生产模式上的循环农业适宜"适度循环";循环农业不能盲目追求低碳发展,在降低碳排放的同时还须考虑土壤和生物固碳,才能全面评价碳排放问题;循环经济和循环农业在评估碳排放的同时,还需对环境酸化、富营养化、生态毒性等其他生态指标进行评估,建立系统评价体系;LCA能够较好地对循环农业进行整体评价,值得进一步研究. 相似文献
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155.
F. Olcay Topac Sagban 《环境科学学报(英文版)》2011,23(4):616-623
The possible impacts on nitrogen-cycle in a p-nitrophenol (PNP) polluted soil and the e ectiveness of wastewater sludge amendments
in restoring nitrification potential and urease activity were evaluated by an incubation study. The results indicated that PNP at 250 mg/kg
soil inhibited urease activity, nitrification potential, arginine ammonification rate and heterotrophic bacteria counts to some extents.
After exposure to PNP, the nitrification potential of the tested soil was dramatically reduced to zero over a period of 30 days. Based
on the findings, nitrification potential was postulated as a simple biochemical indicator for PNP pollution in soils. Nitrogen-cycling
processes in soils responded positively to the applications of wastewater sludges. A sludge application rate of 200 tons/ha was su cient
for successful biostimulation of these nitrogen processes. The microbial activities in sludge-amended, heavy PNP-polluted soils seemed
to recover after 30–45 days, indicating the e ectiveness of sludge as a useful soil amendment. 相似文献
156.
The nitrogen (N) biological cycle of the Suaeda salsa marsh ecosystem in the Yellow River estuary was studied during 2008 to 2009.
Results showed that soil N had significant seasonal fluctuations and vertical distribution. The N/P ratio (15.73±1.77) of S. salsa was
less than 16, indicating that plant growth was limited by both N and P. The N absorption coefficient of S. salsa was very low (0.007),
while the N utilization and cycle coefficients were high (0.824 and 0.331, respectively). The N turnover among compartments of S.
salsa marsh showed that N uptake from aboveground parts and roots were 2.539 and 0.622 g/m2, respectively. The N translocation
from aboveground parts to roots and from roots to soil were 2.042 and 0.076 g/m2, respectively. The N translocation from aboveground
living bodies to litter was 0.497 g/m2, the annual N return from litter to soil was far less than 0.368 g/m2, and the net N mineralization
in topsoil during the growing season was 0.033 g/m2. N was an important limiting factor in S. salsa marsh, and the ecosystem was
classified as unstable and vulnerable. S. salsa was seemingly well adapted to the low-nutrient status and vulnerable habitat, and the
nutrient enrichment due to N import from the Yellow River estuary would be a potential threat to the S. salsa marsh. Excessive nutrient
loading might favor invasive species and induce severe long-term degradation of the ecosystem if human intervention measures were
not taken. The N quantitative relationships determined in our study might provide a scientific basis for the establishment of effective
measures. 相似文献
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