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991.
全氟和多氟烷酸类化合物(perfluoroalkyl and polyfluoroalkyl substances, PFASs)是一类新型持久性有机污染物,目前其在民用和工业产品中得到广泛应用。在环境样品、野生动物以及人类体内都检测到了这类物质。PFASs对哺乳动物和水生生物具有广泛的毒性,其对生态环境和人体健康的影响受到公众关注。目前,PFASs对人类健康的研究还多停留在流行病学研究和体外细胞毒性研究方面,由于人类有复杂的免疫和代谢系统,因此PPASs对人类健康影响的具体机制和安全剂量仍然需要进一步研究。本文针对PFASs在人体的分布、流行病学研究、毒理学效应和作用机制等热点问题进行了总结,并对目前PFASs研究存在的问题及今后的研究方向进行讨论和展望。  相似文献   
992.
水体沉积物质量基准研究现状   总被引:5,自引:2,他引:3  
沉积物质量基准是对水质基准的补充,对水质管理具有重要意义。目前国际上沉积物质量基准计算方法有十几种。对各种方法的理论基础、数据需求、适用范围等方面进行了概述之后,综合分析了各种方法的理论基础。研究结果认为,应将建立沉积物质量基准的方法分为以生物效应数据为基础的生物效应数据库法和以相平衡分配原理为依据的相平衡分配法。而根据统计方法不同,生物效应数据库法又分为单值基准、双值基准和三轴图法。同时还对美国、加拿大、荷兰、英国、澳大利亚和新西兰的沉积物质量基准研究发展和应用概况进行了分析。结合我国实际情况认为,依赖于大量生物效应数据的生物效应数据库法,目前在我国的适用范围有限,只能用于推导少数几种污染物的基准值。相平衡分配法具有可靠的理论基础而且不需要大量的生物效应数据,具有很大的发展潜力。因此,对于目前沉积物质量基准研究处于初级阶段的我国,更适合使用相平衡分配法计算污染物沉积物质量基准。  相似文献   
993.
森林生态系统土壤呼吸时空异质性及影响因子研究进展   总被引:5,自引:0,他引:5  
土壤呼吸是全球碳循环的一个重要流通途径,是大气CO2的重要来源之一,是陆地碳循环的重要环节,对温室气体的排放产生直接影响,且关系到科学把握全球变化背景下CO2的排放动态,在全球碳收支中占据重要地位,越来越受到各国学者的广泛关注。在全球变化背景下研究土壤呼吸的时空异质性及其影响因子,可为探索陆地生态系统在碳循环方面的碳源/碳汇功能和揭示“碳失汇之迷”,以及减缓气候变暖等方面提供有力的依据。作为一个复杂的生物学与生态学过程,土壤呼吸受到气候、生物以及非生物等因子的影响而呈现时空异质性,并随着各种干扰因子影响的增强,人为因素的作用亦越来越大,该文阐述了森林生态系统土壤呼吸作用的时空动态变化规律、并探讨了影响土壤呼吸速率的各种影响因子,剖析了导致土壤呼吸时空异质性的影响因子,指出自然因子、生物因子和干扰因子共同驱动着土壤呼吸的时空动态变化。并对森林生态系统土壤呼吸作用的模型模拟方面的研究进展进行了综述。最后讨论了森林土壤呼吸时空异质性研究中存在的相关问题,同时提出了今后土壤呼吸研究中应关注的问题,同时对森林生态系统土壤呼吸时空异质性及影响因子的研究方向进行了展望。  相似文献   
994.
声电氧化处理亚甲基蓝废水的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
采用电沉积法制备了稀土和氟树脂等共掺杂的新型二氧化铅电极,并用于声电氧化体系中作为阳极处理典型模拟染料废水.考察了声电耦合氧化条件下的协同因子变化,发现PbO2/Ti电极和La-PbO2/Ti电极作阳极时,协同因子分别为1.29、1.36.考察并优化了该氧化镧掺杂电极用于声电氧化体系的作用因素,结果表明,在功率为49.58W/cm2、频率为50Hz、阳极电极为La-PbO2/Ti电极、电流密度为71.43mA/cm2、硫酸钠为14.2g/L的条件下,200mg/L的亚甲基蓝模拟废水经过2h后去除率达到89.51%.通过GC-MS、IC等分析手段检测了中间产物,提出了亚甲基蓝可能的降解途径.  相似文献   
995.
基于浮游生物群落对环境压力变化的响应,参照美国国家环境保护局(US EPA)颁布的生物学基准计算方法,结合理化因子,采用综合指数法计算了我国太湖流域和辽河流域的生态学基准值.计算框架为:①确定流域水环境生态学基准参照点和生态学基准指标;②作出参照点各基准指标box分布图并进行评分;③将各生态学基准指标得分等权重相加,并把90分位数值作为该流域的基准值.结果表明:我国太湖流域夏、冬季的生态学基准值分别为94.7和86.7,辽河流域夏、冬季的生态学基准值分别为100.0和96.4.通过该基准值可较好地区分2009年辽河流域和太湖流域夏、冬季采样点位的生境优劣,这说明基于浮游生物群落变化来计算生态学基准值的方法是可行的.   相似文献   
996.
Polychlorinated biphenyls (PCBs) are typical organic contaminants in the environment. It is indicated that plants and soil microorganisms have a positive synergistic effect on the remediation of PCB-contaminated soil. To investigate the effect of intercropping on arbuscular mycorrhizal (AM) fungal colonization and PCB remediation, a pot-cultivation experiment with two intercropping treatments, corn (Zea mays L.) / ryegrass (Lolium perenne L.) and corn/alfalfa (Medicago sativa L.), and a corn monoculture was conducted in a greenhouse. All treatments were inoculated with Funneliformis mosseae M47V. Plant biomass, root mycorrhizal colonization rate, concentration of PCBs and their homologs in soil, 16S rDNA gene abundance, and community composition measured by Terminal Restriction Fragment Length Polymorphism (T-RFLP) were determined after harvesting the plants. Intercropping significantly increased the root mycorrhizal colonization rate and plant biomass of corn (P < 0.05), as well as the available N content of the soil. A significant difference of the bacterial community composition was found among different treatments (P < 0.05). Compared with corn monoculture, corn/alfalfa intercropping significantly increased soil bacteria abundance (P < 0.05). The dissipation rates of total PCBs, as well as that of penta-chloro biphenyls were significantly increased in the intercropping treatments, when compared to the corn monoculture treatment. Moreover, corn/ryegrass intercropping has a significantly positive effect on the dissipation of tri-chloro biphenyls. Non-metric multidimensional scaling (NMDS) analysis indicated that the PCBs homologues composition were significantly correlated with the relative abundance of 128 bp and 148 bp T-RFs. Corn intercropping with ryegrass or alfalfa has a positive effect on root mycorrhizal colonization rate and plant biomass of corn. Inoculation of AM fungi in intercropping treatments significantly improved the efficiency of PCB remediation by promoting bacterial abundance and shifting the bacterial community composition. In conclusion, intercropping combined with AM fungi have positive synergistic effects on the remediation of PCB-contaminated soils. © 2018 Science Press. All rights reserved.  相似文献   
997.
Tamarix is widely distributed in semiarid saline regions of the upper Yellow River. The community of Tamarix affects the spatial distribution of soil water and salinity. It is important to explore the dynamic response relationship of Tamarix community and spatial distribution of soil water and salinity in order to evaluate the effects of vegetation community construction and ecological restoration in this region. The natural Tamarix community in the secondary saline-alkali land of the Ningxia Yellow River Irrigation Area was investigated in July 2016. Classical statistics and geostatistics were used to analyze the spatial distribution characteristics of soil water and salinity. The results showed that the soil water content was relatively low (1.98%-7.55%), whereas the soil salinity was high (average conductivity 10.28-25.38 mS/cm) in the study area. The variability coefficient range of soil water and salinity was 36.1%-83.7%, both with moderate variations. Furthermore, the variation degree of soil salinity decreased with the increase in soil depth. The soil water and salinity had obvious spatial structure characteristics, which was mainly affected by structural factors or structural factors associated with stochastic factors. The coefficients of nugget were 0.04%-49.88%, indicating the strong spatial correlation. The spatial distribution of soil water and salinity in Tamarix community showed a patchy pattern; the soil water and salinity distribution in the areas with high Tamarix growing density were considerably high. The correlation analysis showed that there was a positive correlation between soil water and salinity in the study area. In conclusion, soil water and salinity restrict the distribution and growth of Tamarix. Furthermore, the distribution and growth of Tamarix enhanced the spatial variability of soil water and salinity. Keywords. © 2018 Science Press. All rights reserved.  相似文献   
998.
This paper presents the results of research conducted between 2009 and 2014 in the village of Khanda Sharol in the state of Rajasthan, India. Our research objective was to determine how the livelihoods of village residents have been affected by the intensification of forest use, and the resulting loss of domestic access to traditionally used forest resources. Results indicate that changes in forest cover have resulted in a loss of livelihood options for village residents. Yet rather than being victimized by environmental change processes, this paper shows how villagers have responded by partnering with public and private actors to develop a community protected forest area that is now helping villagers to meet their livelihood needs. These findings suggest that sustainable livelihoods in rural regions of India require committed and scaled approaches involving local, public, and private actors.  相似文献   
999.
While multi-stakeholder collaboration is critical for effective community post-disaster reconstruction (CPDR), it is often very difficult in practice. The Longmen Shan Fault active seismic zone in China has experienced several recent earthquakes with the 2008 Wenchuan earthquake and 2013 Lushan earthquake, both of which caused extensive and widespread damage to many communities, presenting unprecedented challenges for post-disaster reconstruction. This paper develops a multi-cycle field research method that involves three interconnected cycles: internet research, field visits, and extensive surveys: to examine multi-stakeholder collaboration for the CPDR following the Wenchuan earthquake. It was found that there were 12 types of active stakeholders engaged across four main areas: infrastructure rebuilding, psychological recovery, socio-economic rehabilitation, and ecological restoration. Specifically, local community participation and effective collaboration between the community and the external stakeholders were found to be the most crucial elements for successful reconstruction. Multi-stage field research after the Lushan earthquake verified that CPDR was effective and that multi-stakeholder collaboration had improved from the lessons learnt from the Wenchuan earthquake reconstruction experience. Some advantages and limitations of this research are also given.  相似文献   
1000.
The aerosol direct effects result in a 3%–9% increase in PM2.5 concentrations over Southern Hebei. These impacts are substantially different under different PM2.5 loadings. Industrial and domestic contributions will be underestimated if ignoring the feedbacks. Beijing-Tianjin-Hebei area is the most air polluted region in China and the three neighborhood southern Hebei cities, Shijiazhuang, Xingtai, and Handan, are listed in the top ten polluted cities with severe PM2.5 pollution. The objective of this paper is to evaluate the impacts of aerosol direct effects on air quality over the southern Hebei cities, as well as the impacts when considering those effects on source apportionment using three dimensional air quality models. The WRF/Chem model was applied over the East Asia and northern China at 36 and 12 km horizontal grid resolutions, respectively, for the period of January 2013, with two sets of simulations with or without aerosol-meteorology feedbacks. The source contributions of power plants, industrial, domestic, transportation, and agriculture are evaluated using the Brute-Force Method (BFM) under the two simulation configurations. Our results indicate that, although the increases in PM2.5 concentrations due to those effects over the three southern Hebei cities are only 3%–9% on montly average, they are much more significant under high PM2.5 loadings (~50 μg·m−3 when PM2.5 concentrations are higher than 400 μg m−3). When considering the aerosol feedbacks, the contributions of industrial and domestic sources assessed using the BFM will obviously increase (e.g., from 30%–34% to 32%–37% for industrial), especially under high PM2.5 loadings (e.g., from 36%–44% to 43%–47% for domestic when PM2.5>400 μg·m−3). Our results imply that the aerosol direct effects should not be ignored during severe pollution episodes, especially in short-term source apportionment using the BFM.  相似文献   
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