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283.
INTRODUCTION: Using data from the NASS General Estimates System (GES), the method of induced exposure was used to assess the effects of electronic stability control (ESC) on loss-of-control type crashes for sport utility vehicles. METHOD: Sport utility vehicles were classified into crash types generally associated with loss of control and crash types most likely not associated with loss of control. Vehicles were then compared as to whether ESC technology was present or absent in the vehicles. A generalized additive model was fit to assess the effects of ESC, driver age, and driver gender on the odds of loss of control. In addition, the effects of ESC on roads that were not dry were compared to effects on roads that were dry. RESULTS: Overall, the estimated percentage reduction in the odds of a loss-of-control crash for sport utility vehicles equipped with ESC was 70.3%. Both genders and all age groups showed reduced odds of loss-of-control crashes, but there was no significant difference between males and females. With respect to driver age, the maximum percentage reduction of 73.6% occurred at age 27. The positive effects of ESC on roads that were not dry were significantly greater than on roads that were dry. 相似文献
284.
Bettinetti R Croce V Galassi S Volta P 《Environmental science and pollution research international》2006,13(1):59-66
- DOI: http://dx.doi.org/10.1065/espr2006.01.010
Background, Aims and Scope Although pp'DDT usage was strongly limited or banned in most parts of the world during the last three or four decades, the
parent compound, its homologues and their metabolites still occur at levels which might pose a risk for many ecosystem components.
A case of DDT pollution of industrial origin was discovered in 1996 in Lake Maggiore, the second largest (212 km2) and deepest
(370 m) lake in Italy, causing concern for wildlife and human health. The extensive monitoring of many biotic and abiotic
compartments which followed from 1998 in order to assess the pollution level and its trend in time, provided a great availability
of data referring to DDT contamination of the different fish species of the lake. In this study, the recent contamination
levels in selected fish species were compared to those measured in 1998 to evaluate the temporal pollution trend of the lake
and its natural recovery, given that no remediation measures were carried out on the contaminated soils and sediments in this
time span. Moreover, a modelling approach to test the equilibrium condition between water and pelagic fish species was used.
Analytical results of pp'DDT and pp'DDE concentrations in lake water were used as input data in the bioenergetic model by
Connolly & Pedersen (1988) to calculate concentrations in two fish species and to compare the predicted and the measured contamination.
Methods Sampling and analytical determination of DDT homologues in lake water: Five water sampling campaigns were carried out from
May 2002 to February 2004 in three sampling sites of Lake Maggiore. Suspended and dissolved pollutants were determined separately.
Quantitative DDT homologue analyses were performed by HRGC coupled with ECD detection by the external standard method. Single
water extracts were put together in correspondence with the stratification zones of the water column inferred on the basis
of the temperature profile to improve analytical sensitivity. Selection of fish data: Concentrations of DDT and DDE in fishes
were selected from recent literature (CIPAIS 2003, 2004). Bioaccumulation model: The bioenergetic model proposed by Connolly
& Pedersen (1988) was used to assess the bioaccumulation of pp'DDT and pp'DDE of Alosa fallax (landlocked shad) and Coregonus
spp. (whitefish), selected among the different species as representative of a secondary consumer level.
Results and Discussion The average concentrations of pp'DDT and pp'DDE in water to be used as input data in the bioenergetic model were obtained
considering all the concentrations measured at the three sampling stations in the epylimnion where the fish species considered
in this study spend most of their life. The resulting values were 0.05 and 0.16 ng/L for pp'DDT and pp'DDE, respectively.
Average measured pp'DDT and pp'DDE concentrations in landlocked shad were 0.81 +/- 0.39 and 1.69 +/- 0.71 mg/kg lipids, respectively,
and were 0.29 +/- 0.12 and 1.06 +/- 0.41 mg/kg lipids for the whitefish. Calculated and measured values turned out to be
in quite good agreement for pp'DDT, while measured pp'DDE concentrations were higher than expected on the basis of the bioenergetic
model in both species. Probably metabolic transformations of pp'DDT accumulated in fish tissues in the past are responsible
for the observed differences between calculated and expected pp'DDE concentrations in fish.
Conclusions Pelagic fishes of Lake Maggiore seem to maintain the DDT accumulated during their life time and the most efficient mechanism
responsible for the fish population recoveries is probably their generation changes; for this reason, equilibrium models cannot
be used until negligible pp'DDT concentrations are reached in fish tissues.
Recommendations and Outlook The limit proposed for pp'DDT in water by the EU Directive 2000/60, which will come in force in 2008, is 0.2 ng/L, four times
higher than the average concentration measured in Lake Maggiore waters. Nevertheless, concentrations measured in Lake Maggiore
fish were very close and sometimes exceeded the Maximum residue limits (MRLs) settled by the Italian legislation for foods
(0.1 mg/kg w.w. for fish containing 5–20% lipid). It seems, therefore, that the 'environmental quality standard' of 0.2 ng/L
cannot guarantee the suitability of fish for human consumption. 相似文献
285.
Zhang C Wang L Wu F Deng N 《Environmental science and pollution research international》2006,13(3):156-160
Background For their high photoreactivity, Fe(III)-carboxylate complexes are important sources of H2O2 for some atmospheric and surface
waters. Citrate is one kind of carboxylate, which can form complexes with Fe(III). In our previous study, we have applied
Fe(III)-citrate complexes to degrade and decolorize dyes in aqueous solutions both under UV light and sunlight. Results have
shown that carboxylic acids can promote the photodegradation efficiency. It is indicated that the photolysis of Fe(III)-citrate
complexes may cause the formation of some reactive species (e. g. H2O2 and ·OH). This work is attempted to quantify hydroxyl
radicals generated in the aqueous solution containing Fe(III)-citrate complexes and to interpret the photoreactivity of Fe(III)-citrate
complexes for degrading organic compounds.
Methods By using benzene as the scavenger to produce phenol, the photogeneration of ·OH in the aqueous solution containing Fe (III)-citrate
complexes was determined by HPLC.
Results and Discussion In the aqueous solution containing 60.0/30.0 mM Fe(III)/citrate and 7.0 mM benzene at pH 3.0, 96.66 mM ·OH was produced after
irradiation by a 250W metal halide light (l ≥ 313 nm) for 160 minutes. Effects of initial pH value and concentrations of Fe(III)
and citrate on ·OH radical generation were all examined. The results show that the greatest photoproduction of ·OH in the
aqueous solution (pH ranged from 3.0 to 7.0) was at pH 3.0. The photoproduction of ·OH increased with increasing Fe(III) or
citrate concentrations.
Conclusion In the aqueous solutions containing Fe(III)-citrate complexes, ·OH radicals were produced after irradiation by a 250W metal
halide light. It can be concluded that Fe(III)-citrate complexes are important sources of ·OH radicals for some atmospheric
and surface waters.
Recommendations and Outlook It is believed that the photolysis of Fe(III)-citrate complexes in the presence of oxygen play an important role in producing
·OH both in atmospheric waters and surface water where high concentrations of ferric ions and citrate ions exist. The photoproduction
of ·OH has a high oxidizing potential for the degradation of a wide variety of natural and anthropogenic organic and inorganic
substances. We can use this method for toxic organic pollutants such as organic dyes and pesticides. 相似文献
286.
以甘肃文县2020年"8.17"泥石流灾害为例,开展泥石流-堰塞湖灾害灾后应急救援决策研究,探索性将该类灾害前期阶段应急救援决策总结为:灾情盲估预判-先期应急备灾-成因剖析-灾情宏观初判-应急救援决策等。研究结果表明:预判影响人口约10.8万人,预估需求帐篷约2.3万顶、饮用水约240 t/d,文县消防救援大队距离最近,附近有文县第一人民医院等8家医疗防疫力量,石鸡坝初级中学等10所学校可作为临时安置避难场所备选;受影响矿山企业5家,重要水库1座;泥石流淤积物堆积区约7.91×10~4 m~2,堰塞湖面积约1.06 km~2,淹没区约37.4×10~4 m~2,因灾受损民居51处、桥梁3处、电站1处、加油站1处及耕地10处,优选3条灾后救援生命线。 相似文献
287.
针对深水钻井作业过程中的井喷溢油问题,基于计算流体力学(CFD)方法,通过UDF函数给定海流流剖面、波浪入口边界条件和海水静压分布情况,结合标准k-ε方程,采用VOF模型实现对油、气、水三相自由面的追踪,建立了溢油扩散事故数值仿真模型,评估深水条件下溢油扩散危害区域,研究海流流速、溢油量对原油扩散的影响。结果表明,海流流速和溢油量是原油扩散行为和危害区域分布范围的重要影响因素。 相似文献
288.
在升船机施工过程中,由于建筑物多为高坝垂直型,致使上下施工、内外施工和不同性质的施工同时进行,增加了作业条件的危险性,这给升船机施工中的安全管理带来很大困难.以升船机施工为出发点,分析升船机施工中的作业单元流程.按照事故分类的标准,将升船机施工的危险源按照高处坠落、物体打击、垮塌三类事故进行风险辨识.运用LEC-M法确定升船机施工各类危险源的安全风险等级评价,依据危险源评价所涉及到的具体条款,提出降低危险源风险的有效措施.该方法在三峡升船机筒体工程上得到具体应用,并取得良好效果. 相似文献
289.
We analyze the effect of CEO education on environmental decision-making. Using a unique sample of Danish firms from 1996 to 2012, we find that CEO education significantly improves firms' energy efficiency. We seek to derive causality using health shocks: the hospitalization of highly educated CEOs induces a drop in energy efficiency, whereas the hospitalization of less educated CEOs does not have any significant effect. Exploring the mechanisms at play, we show that our results are largely driven by advanced education in business degrees. Moreover, we show that CEO education is associated with greater environmental awareness: highly educated CEOs exhibit greater concerns for climate change, as measured by a survey of social preferences, and drive more environmentally efficient cars. Taken together, our findings suggest that education shapes managerial styles giving rise to greater sustainability in corporate actions. 相似文献
290.
Dynamics in the global protected-area estate since 2004 总被引:1,自引:0,他引:1
Edward Lewis Brian MacSharry Diego Juffe-Bignoli Nyeema Harris Georgina Burrows Naomi Kingston Neil D. Burgess 《Conservation biology》2019,33(3):570-579
Nations of the world have committed to a number of goals and targets to address global environmental challenges. Protected areas have for centuries been a key strategy in conservation and play a major role in addressing current challenges. The most important tool used to track progress on protected-area commitments is the World Database on Protected Areas (WDPA). Periodic assessments of the world's protected-area estate show steady growth over the last 2 decades. However, the current method, which uses the latest version of the WDPA, does not show the true dynamic nature of protected areas over time and does not provide information on sites removed from the WDPA. In reality, this method can only show growth or remain stable. We used GIS tools in an approach to assess protected-area change over time based on 12 temporally distinct versions of the WDPA that quantify area added and removed from the WDPA annually from 2004 to 2016. Both the narrative of continual growth of protected area and the counter-narrative of protected area removal were overly simplistic. The former because growth was almost entirely in the marine realm and the latter because some areas removed were reprotected in later years. On average 2.5 million km2 was added to the WDPA annually and 1.1 million km2 was removed. Reasons for the inclusion and removal of protected areas in the WDPA database were in part due to data-quality issues but also to on-the-ground changes. To meet the 17% protected-area component of Aichi Biodiversity Target 11 by 2020, which stood at 14.7% in 2016, either the rate of protected-area removal must decrease or the rate of protected-area designation and addition to the WDPA must increase. 相似文献