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911.
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
912.
针对目前国内外尚无明确的气井完整性概念和生产气井完整性评价指标体系的现状,分析了现有的关于气井完整性解释的不足,初步提出了气井完整性的概念,强调了气井完整性是气井处于地层流体发生无控制流动的风险在可接受范围之内的状态。并根据此概念,从完整性管理、屏障设备、监测状态三个方面,建立了气井完整性评价指标体系,分析了各个评价指标与气井完整性的关系。屏障设备完整性是气井完整性的核心,完整性管理是提高气井完整性的关键,监测状态是气井完整性最直接的判断依据。 相似文献
913.
Acer catalpifolium Rehd., a critically endangered tree species with an extremely limited range of distribution, is one of the 120 plant species with extremely small populations, as approved by the state forestry administration of the People's Republic of China and requires urgent rescue action. In order to comprehensively understand the population status and the future developmental trend of A. catalpifolium, the plant communities were investigated from 5 sites, including Caishenmiao (CSM), Banruosi (BRS), Zhangshancun (ZSC), Fuhusi (FHS), and Baoguosi (BGS). The population structure of A. catalpifolium as well as the species composition and community characteristics of its habitat were investigated. The results showed that A. catalpifolium is mainly distributed in the evergreen broad-leaved and deciduous broad-leaved mixed forests, in different community layers, namely, the tree layer, shrub layer, and herb layer, and is accompanied by 52, 74, and 52 plant species, respectively. Analyses of the distribution of population abundance revealed that BRS had the largest distribution of A. catalpifolium, accounting for 26.04% of the total population, followed by FHS, ZSC, BGS, and CSM, in that order. Analyses of the community characteristics revealed that the species diversity indices in FHS, BRS, BGS, and CSM were greater than that in ZSC. Analyses of the population age structure of A. catalpifolium revealed the gap in the distribution of the levels of seedlings and young trees. There were serious obstacles to the regeneration of the natural population. We concluded that the obstacle to the regeneration of the population of A. catalpifolium might be caused by the high competitive pressure from the dominant species and the micro-environment in the forest. Understanding the community characteristics and the population structure of A. catalpifolium could provide a theoretical foundation for its reintroduction and recovery. © 2018 Science Press. All rights reserved. 相似文献
914.
Huang B.Gu Y.Chen G.Jin J.Liu L. 《应用与环境生物学报》2018,(4):860-865
To study the effect of flow velocity on drinking water distribution systems, bulk water quality was monitored over 28 days, biomass was measured, and 16S rDNA was sequenced on the 28th day using a water distribution simulation system. The relationship between bulk water quality and biofilm was statistically analyzed. Flow velocity of 0.5 m/s yielded the most total organic carbon (TOC) (5.26 ± 0.17 mg/L) in the bulk water, the most bulk water bacteria (lg (n+1/mL-1) = 4.79 ± 0.02), the worst bulk water quality, and the most biofilm bacteria (lg (n+1/cm-2) = 5.48 ± 0.06). A Pearson correlation analysis showed the total number of biofilm bacteria was positively correlated with conductivity (R = 0.73, P < 0.01), turbidity (R = 0.87, P < 0.001), TOC (R = 0.94, P < 0.001), and total bacteria (R = 0.92, P < 0.001), and was negatively correlated with residual chlorine (R = -0.68, P < 0.05). Biofilm diversity was high under the low (0.1 m/s) and high (2.5 m/s) flow rates, but the bacterial diversity of biofilm was the lowest at the 0.5 m/s flow rate, in which Proteobacteria dominated the biofilm community structure. These results suggest that flow velocity affects bulk water quality and biofilm population structure, and water quality and biofilm population structure are interrelated, which provides the theoretical basis for research on biofilms in drinking water distribution systems. © 2018 Science Press. All rights reserved. 相似文献
915.
Aquatic plants along the North Canal in Beijing were studied to identify the community structure of aquatic plants and vegetation index of biotic integrity (VIBI), and to provide scientific basis for the management and protection of urban rivers. Aquatic plants from 49 sampling sites along the North Canal were investigated during June 2015. Based on the field data, distributing range analysis, discriminatory power analysis, and correlation analysis were used stepwise to select core metrics from candidate metrics to establish the VIBI assessment system. The VIBI value of each sampling site was calculated as the average of the scaled values of all core metrics. Thirty-six aquatic plant species, including 14 hygrophytes, 13 emergent species, 6 submergent species, 2 floating-leaved species, and 1 floating species were collected. Species diversity was low in the North Canal, and no aquatic plants were recorded in 28 sampling sites, of which 9 sampling sites were dried up. Five sites were in excellent condition (VIBI > 0.60), 5 were good (0.60 > VIBI > 0.38), 7 were fair (0.38 > VIBI > 0.23), and 4 were poor (VIBI < 0.23). Based on the distribution of VIBI, Shahe River and Wenyu River upstream, and Fenghe River located in suburbs had a higher VIBI. Downstream tributaries, such as Qinghe River, Bahe River, and Liangshui River, had a lower VIBI. Correlation analysis showed that habitat quality, habitat complexity, and vegetation diversity along riparian zones were the important factors affecting VIBI along the North Canal, Beijing. Aquatic plants along the North Canal showed low species diversity owing to human disturbance. VIBI along tributaries with limited disturbance from human activities was higher; however, VIBI along tributaries disturbed by frequent human activities was lower. © 2018 Science Press. All rights reserved. 相似文献
916.
The ‘Davos dilemma’ posits a sustainability crisis, provoked by rising human population and intense competitive behaviours, in terms of control and access to depleting natural resources. More broadly understood as an ecological problem, rather than just socio-economic behavioural deficiencies, the call is for better integrated social, natural and business-indexed reporting within planetary boundaries. This poses challenges for nationally governed societies to equitably account for self-sustainability performance, in enabling their successive government agendas to re-orientate policies and industry investments as innovation towards achieving this in the longer term. We propose and test a global self-sustainability index for countries across four metrics: economic, environmental, social and innovation. Our tentative findings from a cross-country analysis of 27 countries during 2007–2010 illustrate the approach for wider systematic analysis and as a basis for future large-scale assessments on self-sustainability within and between countries. 相似文献
917.
Liu P.Wang Y.Su K. 《应用与环境生物学报》2018,(3):557-562
In order to solve the problem of poor treatment of phosphorus in membrane bioreactor (MBR) with long sludge retention time (SRT), a ferric salt was added to enhance phosphorus removal; FeCl36H2O (Fe/P = 2.0) was added to the reactor. The removal efficiency of nitrogen, organic matters, and phosphorus in the MBR was investigated systematically. Moreover, this study focused on the membrane performance, the change of active sludge flora, and the effect of adding a ferric salt on membrane fouling before and after the addition. It was seen that adding the ferric salt could not affect the removal of COD and NH4 +-N and the removal rate of COD and NH4 +-N reached over 90%. However, the average removal rate of phosphorus was 52%, while the removal rate increased by nearly 40% after adding the ferric salt. The effects of adding ferric salts on the dominant bacteria and biological phosphorus removal of activated sludge were further studied. The results showed that the addition of ferric salt (Fe/P = 2.0) decreased the diversity of active sludge flora and relative abundance of some phosphorusaccumulating organisms and had a negative effect on biological phosphorus removal. The analysis of transmembrane pressure difference (TMP) recording revealed that the concentration of iron salts did not exacerbate membrane fouling. The results showed that the concentration of iron salts entering the membrane bioreactor would reduce the relative abundance and phosphorus removal efficiency of the activated sludge in the system to a certain extent, but it had no obvious effect on membrane fouling. It allowed the effluent to attain acceptable standards, especially with respect to phosphorus removal efficiency. © 2018 Science Press. All rights reserved. 相似文献
918.
基于着生硅藻指数的梧桐河水生态健康评价 总被引:1,自引:0,他引:1
在黑龙江省梧桐河,调查了13个点位的着生硅藻群落结构和水环境特征,应用8种硅藻指数对该河流水生生态系统进行健康评价,并在此基础上应用主成分分析、相关分析、冗余分析、箱型图分析等统计分析方法研究了影响梧桐河着生藻类群落的主要环境因子和8种硅藻指数在梧桐河的适用情况。结果显示:梧桐河存在一定程度的环境污染,优势种以小型异极藻(Gomphonema parvulum)等耐污种为主。8个硅藻指数中,硅藻属指数(Generic Index of Diatom,GI)、澳大利亚河流硅藻生物评价指数(Diatom Index for Australian Rivers,DIAR;Diatom Species Index for Bioassessment of Australian Rivers,DSIAR)评价结果偏差较大,在梧桐河不适用;相似度指数(Jaccard Index,JI)与富营养化硅藻指数(Trophic Diatom Index,TDI)评价结果较为严格,评分明显偏低;硅藻污染耐受指数(Pollution Tolerance Index,PTI)、硅藻生物评价指数(Diatom Bioassessment Index,DBI)和生物硅藻指数(Biological Diatom Index,BDI)在梧桐河流域适用性最好。根据冗余分析(RDA),将梧桐河流域点位分为3组,第一组点位为中-重度污染,主要影响因子为流速和总磷;第二组点位为轻-中度污染,主要影响因子为磷酸盐、氨氮和溶解氧;第三组点位为轻污染-清洁,主要影响因子为p H和电导率。 相似文献
919.
对西双版纳州生态环境局勐腊分局2017年8月-2020年8月逐日空气质量数据的分析表明,2-4月是勐腊县空气质量指数(Air Quality Index,AQI)频繁达到二级及以上的时段,空气质量分指数(Individual Air Quality Index,IAQI)能够达到二级及以上标准的污染物为PM2.5、PM10、O3、SO2中的一种或几种,PM2.5、PM10污染较为严重,PM2.5对空气质量的影响最大,可使空气质量达到重度污染,混合污染出现比例远大于单一污染.2019、2020年3-4月勐腊县轻度及以上连续污染日数超过5 d的5次过程中,4次污染过程的主要潜在源区在勐腊上风方向老挝西北部及泰国与其相邻的区域,权重潜在源贡献因子(Weight Potential Source Contribution Function,WPSCF)大于0.6的区域与同年3、4月泰国西北部、老挝西北部的火点密集区有较好的对应关系,4次污染过程与老挝西北部及泰国与其相邻区域的生物质燃烧关系密切;1次污染过程的主要潜在源区主要在当地,当地建筑施工、交通运输、生物质燃烧和餐饮行业细颗粒物的排放会导致勐腊县空气质量出现明显下降.为验证勐腊县连续污染过程受到了周边国家烧荒的影响,利用逐日气溶胶光学厚度(Aerosol Optical Thickness,AOT)对2020年3月23-4月9日的污染过程进行了个例分析,发现AOT大值区位于勐腊上风方向,高浓度污染物持续稳定地向勐腊传输导致勐腊出现持续重污染. 相似文献
920.
随着人们环境保护意识的增强,河湖生态保护与修复成为社会关注的热点问题,科学的生态健康诊断则是有效进行河湖治理的前提.香溪河作为三峡水库典型支流,探究其水生态系统健康对于长江生态保护具有十分重要的意义.通过收集整理香溪河干支流的生物与生境数据,构建了涵盖水环境、水生生物、物理栖息地三方面共16项指标的水生态系统健康评价指标体系,综合运用专家判断法和熵权法确定评价因子权重,采用河流健康指数(RHI)表征香溪河流域水生态系统健康状况.结果表明:①2017年三峡水库蓄水期香溪河流域水生态系统整体健康水平为良好,优和良等级占比分别为12.5%和79.2%.②健康状况呈现出支流优于干流、非回水区优于回水区的空间分布特点,具体表现为支流南阳河>支流古夫河>支流高岚河>香溪河干流.干流水环境问题相对突出,而支流的河流连通性相对较差.③库湾健康状况的年内变化特征为冬季最好,春秋季次之,夏季最差.研究显示,该评价体系能准确地评估香溪河流域水生态健康状况,同时需重视三峡水库支流库湾的水环境治理. 相似文献