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741.
以道路车辆功能安全规范标准ISO 26262为准则,对汽车的车道偏离预警系统(LDWS)进行了概念设计。首先分析了ISO 26262功能安全规范概念阶段的活动内容,并在此基础上,完成车道偏离预警系统的项目定义、危险分析和评估,设计了功能安全概念的相关工作,确定了功能安全等级和安全目标。最后搭建了UML仿真模型对LDWS概念设计阶段进行仿真测试,测试结果表明此设计能够满足ISO 26262规范标准,实现了车道偏离预警系统的功能安全概念设计,对车道偏离预警系统的安全开发具有指导意义。 相似文献
742.
2,3,7,8-四氯二苯并对二恶英(2,3,7,8-Tetrachlorodibenzo-p-Dioxin,TCDD)是一种持久性环境有机污染物质,它在有机体内的蓄积性引起研究人员的重视。以青鳉胚胎作为实验动物模型,使用原位杂交和定量聚合酶链锁反应(Polymerase Chain Reaction,PCR)技术从分子水平探讨了TCDD对胚胎耳泡的发育及其毒性作用机制。结果表明,TCDD造成青鳉幼鱼耳泡生成障碍。通过原位杂交和q PCR分析表明,TCDD引起软骨发育的变化与SOX9b表达降低有密切的关联。研究认为青鳉胚胎是一种非常敏感的TCDD模式动物,其耳泡软骨发育以及SOX9b基因表达可能是一种二恶英发育毒性的效应标记物。 相似文献
743.
在剖析下垫面条件变化对流域极端水文事件演变影响的基础上,构建了流域极端水文事件综合应对技术框架,并阐述其中的关键研究命题。结果表明,自然植被条件能够提高流域干旱之前土壤含水量并降低干旱过程中土壤蒸发速率,在一定程度上起到减缓干旱的强度和持续时间的作用;水利工程通过调节流域水资源的时空分布,增加可利用水资源量,能够缓解甚至规避流域干旱事件,但同时可能加剧坝址下游地区的干旱程度。自然植被条件将延长降水坡面产-汇流历时、降低洪峰流量,对极端降水洪涝事件具有一定的消减作用;此外,流域水土保持和修建水利工程等下垫面条件改变有利于河道行洪过程,能够起到缓解洪涝事件的作用。基于下垫面条件变化的流域极端水文事件综合应对技术框架包括旱涝事件监测、机理识别、影响评价和综合应对四个方面的内容,其中的关键研究命题主要为下垫面条件变化对流域极端水文事件影响的定量评估、面向流域极端水文事件合理的水土资源配置及其集成管理等。 相似文献
744.
745.
Ying?Hu Shihua?QiEmail author Linxi?Yuan Hongxia?Liu Xinli?Xing 《Environmental geochemistry and health》2018,40(1):175-187
Twenty-one organochlorine pesticides (OCPs) were measured in the muscle of six predominant waterbird species from Jianghan Plain, Hubei Province, Central China. Among OCPs, DDTs were the most prevalent compounds, with average concentration ranging from 31.1 to 1445 ng/g lipid weight. Little egrets (Egretta garzetta) and Chinese pond herons (Ardeola bacchus) showed significantly higher concentrations of OCPs (p < 0.05) due to their dietary habits and migratory patterns. There were no statistically significant differences (p > 0.05) for most OCPs between sex and age groups. The accumulation profiles of HCHs and DDTs suggested that these OCPs in Jianghan Plain were largely derived from historical usage. Risk assessment indicated that heptachlor could be likely to pose adverse health effects on people consuming ducks in Jianghan Plain. 相似文献
746.
The greenhouse effect has become increasingly serious globally. Nitrous oxide (N2O) is both the major ozone depleting substance and a potent greenhouse gas having a global warming potential 298 times that of CO2, and the N2O concentration is still increasing at an annual rate of about 0.8 × 10-9. Nitrous oxide reductase (N2OR) can reduce N2O to N2, and until recently, the nosZ gene was the only gene known to be able to encode N2OR. Besides the well-known nosZI, a new lineage of the N2O-reductase (nosZ clade II), which is abundant and widespread in soils, has been identified. In this paper, the main characters of nosZII-containing microbial communities and the related working mechanisms are summarized. In addition to the main differences between nosZI and nosZII, the important environmental factors that regulate the composition, abundance, and expression of nosZII-containing communities are also discussed in this paper. Studies have shown that nosZII communities are distributed among a diverse range of bacterial and archaeal phyla, such as Epsilon-proteobacteria, Bacteroidetes, and Aquificae. Interestingly, most of the nosZII microbes lack a nitrite reductase encoding gene (nirS or nirK) and are therefore unable to denitrify, indicating the importance of these communities as N2O sinks. Soil properties such as texture, pH, C/ N ratio, temperature, and lake physical gradient could regulate nosZII microbe abundance and diversity, and the pH and C/ N ratio may be the most important influencing factors. Studies on the ecological function of nosZII microbes have advanced considerably with the development of molecular biology technology. However, further studies on the community structure of nosZII microbes, the influencing factors of nosZII microbe abundance and diversity, and characteristics of nosZII strains with strong N2O reducing ability are needed. We hope to provide a theoretical basis that can be used to facilitate N2O reduction and relieve the greenhouse gas problem. © 2018 Science Press. All rights reserved. 相似文献
747.
748.
Compliance with recommended protective actions during an H7N9 emergency: a risk perception perspective
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This study investigates the factors determining an individual's response to official recommended protective measures, based on the Health Belief Model and the Protective Action Decision Model, to understand the adoption of protective behaviour during an H7N9 (Avian Influenza A) emergency. A public survey involving 1,375 respondents was conducted in Anhui Province, China, during the 2013 H7N9 outbreak to test the research model and hypotheses. The results indicate that protective, stakeholder, and risk perceptions influence positively an individual's willingness to take recommended actions. Protective and stakeholder perceptions also have a positive bearing on lay people's risk perceptions. A stakeholder perception is a vital determinant of a protective perception. More importantly, the effects of protective and stakeholder perceptions on behavioural responses to recommendations are mediated in part by risk perception. These findings can help public health officials to develop messages to encourage members of the population to protect themselves effectively during an influenza crisis. 相似文献
749.
碘代X射线造影剂(ICMs)是使用最广泛的血管内药物,近年来在水生环境中频繁检出.由于其高稳定性、高极性和持久性,ICMs会在水生环境中持续存在并且难以被降解.在水生环境中会与消毒剂、天然有机物结合生成具有毒性的消毒副产物(DBPs),由于其本身毒性以及转化产物DBPs的毒性增强了环境健康风险,进而引发了人们的密切关注.本文介绍了ICMs的环境浓度、分析方法以及毒性风险.重点描述了ICMs的前处理技术、检测方法及ICMs毒性评价现状,并展望了以后ICMs毒性的研究方向. 相似文献
750.
为探索淮北临涣矿区地表水体中氮的分布和来源,采集研究区河流和沉陷积水区样品,测试分析其水化学指标和氮、氧同位素特征值,并采用IsoSource模型计算不同端源氮的污染贡献率。结果表明:研究区地表水处于中度富营养化状态,矿区地表水中氮的输入源受含氮肥料、土壤有机氮和粪肥污水共同影响,所发生的硝化及反硝化作用微弱;矿区河水中氮的主要输入源为粪肥污水,贡献率达66.6%,沉陷积水区氮主要受含氮肥料输入的影响,贡献率达52.0%。 相似文献