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81.
广西不同石漠化等级下SPAC水势梯度及其环境效应   总被引:1,自引:0,他引:1  
邓艳  胡阳  马祖陆  朱鑫  梁晓 《地球与环境》2014,42(2):213-220
以野外观测为基础,对广西不同石漠化等级(无石漠化、轻度石漠化、中度石漠化和重度石漠化)下土壤-植被-大气连续体(Soil-Plant-Atmosphere Continuum,简称SPAC)系统中的水势日变化、气象因子日变化过程进行了研究。结果表明:随着石漠化程度的增加,大气水势降低,大气水势对不同石漠化程度的反应敏感。岩溶区石漠化等级下植物和土壤水势较低,不同石漠化条件下的植物叶水势在-7.79±0.43~-2.68±0.11 Mpa之间,土壤水势在-4.00±0~-0.08±0.04 Mpa之间,重度石漠化等级下植物处于萎蔫状态。植物在正午受到的水分亏缺程度为:重度石漠化中度石漠化无石漠化轻度石漠化。无石漠化下植物叶片水势与大气温度呈正相关关系,与大气相对湿度呈负相关关系,轻度石漠化、中度石漠化和重度石漠化下植物叶片水势与大气温度呈负相关关系,与大气相对湿度呈正相关关系。水分在SPAC系统中运移,其能量消耗主要集中在叶片-大气的过程。叶-气水势差差值大小为:中度石漠化重度石漠化轻度石漠化无石漠化。随着石漠化程度的增加,SPAC水势梯度提高,各介质层水势差的增大,提高了水分循环和能量交换的强度。  相似文献   
82.
抚仙湖沉积物重金属垂向分布及潜在生态风险评价   总被引:3,自引:0,他引:3  
基于环境放射性核素210Pbex和137 Cs计年法确定抚仙湖北、中和南部三个沉积物柱芯的沉积年代,分析了各个柱芯近150年的重金属(Cr、Cu、Zn、As和Pb)的垂向分布特征,并用潜在生态风险指数法进行了潜在生态风险分析。结果表明,抚仙湖不同湖区沉积物重金属的垂向分布存在明显差异,其中Zn、As和Pb呈现整体向上增加的趋势,Cr和Cu分别呈现微波动变化和下降趋势。重金属元素之间相关性表明Zn、As和Pb具有较好的同源性,而Cr和Cu来源不同。重金属元素与营养盐TP之间呈较好的相关性,与TN和TOC则相关性较差或无相关性存在。潜在生态风险指数评价显示近150年来抚仙湖不同湖区沉积物重金属污染水平差异明显,其中北部和南部As是主要的生态风险贡献因子,而中部Cu是主要的生态风险贡献因子。抚仙湖中部和南部沉积物重金属总体处于中等生态风险,而北部沉积物重金属由中等上升为较高生态风险出现在20世纪90年代末期。  相似文献   
83.
苏北潮滩温室气体排放的时空变化及影响因素   总被引:5,自引:4,他引:1  
滨海湿地温室气体CO_2、CH_4和N_2O的排放在全球碳氮循环中发挥着重要的作用,进一步影响着全球气候变化.为研究滨海湿地CO_2、CH_4和N_2O排放的时空变化及影响因素,以苏北潮滩为例,采用静态暗箱-气相色谱法,于2013年4月至2014年3月,测定了不同时空尺度下CO_2、CH_4和N_2O通量的变化规律,并分析了影响温室气体通量变化的环境因素.结果表明,CO_2、CH_4和N_2O通量的季节变化的最大值出现在夏季,CO_2和N_2O通量的最小值出现在冬季,而CH_4在春季表现为弱吸收;互花米草滩年均排放CO_2量最大,为(766.3±496.9)mg·(m2·h)~(-1),芦苇滩年均排放CH_4和N_2O最大,分别是(0.420±0.900)mg·(m2·h)~(-1)和(17.4±5.0)μg·(m2·h)~(-1).光滩表现为对CH_4的吸收,为(-0.004±0.032)mg·(m2·h)~(-1),对CO_2和N_2O的排放,且排放通量最小,分别是(57.1±16.2)mg·(m2·h)~(-1)和(6.1±2.1)μg·(m2·h)~(-1).全球变暖潜能的最大值出现在互花米草滩,为68 841.280 kg·(hm2·a)~(-1),分别是芦苇滩和碱蓬滩的1.41倍和3.02倍,光滩的GWP最小,为5 002.100 kg·(hm2·a)~(-1).通过Pearson相关分析发现,除光滩外,CO_2通量与气温、土温呈显著的相关性(P0.05),而CH_4和N_2O通量与温度则不存在显著的相关性.尽管如此,CO_2、CH_4和N_2O通量的时间变化更多地是受温度以及植被生长状况的影响,而空间变化则主要由植被的状况所决定;外来种互花米草主要是通过增加CO_2排放来影响滨海湿地的全球变暖潜能.  相似文献   
84.
高架道路周边建筑物灰尘重金属污染风险:以常州市为例   总被引:3,自引:0,他引:3  
在常州环城高架道路两侧6个住宅小区不同楼层采集126个灰尘样品,测定Cu、Zn、Pb、Cd、Ni和Cr含量,分析其化学形态和垂直分布特征,采用富集系数和风险评价指数评价其污染程度和生物有效性,并进行潜在生态风险评价和健康风险评价.结果表明,灰尘中Cu、Zn、Pb、Cd、Ni和Cr含量均值分别为181.95、709.99、211.24、2.76、101.59和257.55mg·kg-1,均远大于背景值.灰尘中Cd的富集系数为33.05,富集程度为强烈,Cu、Pb和Zn的富集程度为显著富集,它们可能受到自然源、交通源和区域废气传输的综合影响,Ni和Cr富集系数较低,可能主要受自然源影响.随楼层高度的上升,Cd含量呈增加趋势,Pb和Zn含量呈先增加后降低趋势,Cu含量无显著变化.Zn、Cd、Cu和Pb主要以活性态存在,生物有效性较高,Ni和Cr以残渣态为主,生物有效性较低.改进的潜在生态风险评价结果表明,Cd的潜在生态风险极高,对多元素的潜在生态风险起主导作用,且对高层楼的潜在生态风险较大,其它重金属潜在生态风险为中低级.健康风险评价结果表明,Cr对儿童的致癌风险超过安全阈值,其它重金属对成人与儿童致癌风险及非致癌风险均在安全域之内.  相似文献   
85.
2013-2015年上海市霾污染事件潜在源区贡献分析   总被引:6,自引:0,他引:6  
周沙  刘宁  刘朝顺 《环境科学学报》2017,37(5):1835-1842
统计分析2013-2015年上海市每个月不同空气质量等级天数比重,根据HYSPLIT(Hybrid Single Particle Lagrangian Integrated Trajectory)后向轨迹模型对3年内的12月份影响上海地区的污染气团进行了综合聚类分析和逐年聚类分析.在综合12次严重霾事件的后向轨迹基础上,结合上海实时公布的PM2.5小时浓度资料,对潜在源贡献因子PSCF(Potential Source Contribution Function)和浓度权重轨迹CWT(Concentration-weighted Trajectory)进行分析与比较,研究重霾期间影响上海PM2.5质量浓度的潜在源区及不同源区对PM2.5质量浓度的贡献差异.结果显示,上海市3年期间12月份霾颗粒物外来源主要输送渠道为西北路径和北方路径,源自于西北方向的气团比重占总气团的50.4%,北方向的气团几乎都经过海洋后进入上海地区.影响上海地区PM2.5质量浓度的潜在源区主要分布在安徽、江苏和山东地区,此外江西北部、浙江北部、河北南部及山西少部分地区也对重霾事件中的污染物颗粒有一定程度的贡献.  相似文献   
86.
千岛湖水源水微生物安全性评价   总被引:1,自引:0,他引:1  
千岛湖作为国家战略水源地,其微生物安全直接关系到千万居民的用水安全.为了研究千岛湖湖水的生物安全性,于2018-2019年采集了金竹牌取水口不同深度的水样,并检测了水样的可生物降解溶解性有机碳(BDOC)、细菌再生长的潜力(BGP)、可培养细菌数、潜在的条件致病菌和细菌群落结构.结果显示,千岛湖水质属地表水Ⅱ~Ⅲ类水,...  相似文献   
87.
A historical input of trace metals into tidal marshes fringing the river Scheldt may be a cause for concern. Nevertheless, the specific physicochemical form, rather than the total concentration, determines the ecotoxicological risk of metals in the soil. In this study the effect of tidal regime on the distribution of trace metals in different compartments of the soil was investigated. As, Cd, Cu and Zn concentrations in sediment, pore water and in roots were determined along a depth profile. Total sediment metal concentrations were similar at different sites, reflecting pollution history. Pore water metal concentrations were generally higher under less flooded conditions (mean is (2.32 ± 0.08) × 10−3 mg Cd L−1 and (1.53 ± 0.03) × 10−3 mg Cd L−1). Metal concentrations associated with roots (mean is 202.47 ± 2.83 mg Cd kg−1 and 69.39 ± 0.99 mg Cd kg−1) were up to 10 times higher than sediment (mean is 20.48 ± 0.19 mg Cd kg−1 and 20.42 ± 0.21 mg Cd kg−1) metal concentrations and higher under dryer conditions. Despite high metal concentrations associated with roots, the major part of the metals in the marsh soil is still associated with the sediment as the overall biomass of roots is small compared to the sediment.  相似文献   
88.
20世纪重大自然灾害评析   总被引:24,自引:8,他引:16  
人类在科学技术上取得了辉煌成绩的同时,在认识自然和改造自然方面也得到了才识和新的认识,这一教训主要是来自自然灾害。根据收集到的全球自然灾害有关数据,对20世纪全球主要自然灾害特征分布特点进行了分析,并对其成因提出了看法。  相似文献   
89.
Mycorrhiza is the main spatial and temporal linkage between different constituents in a forest ecosystem. The functional compatibility and stress tolerance of ectomycorrhizal types is species specific, and therefore the information on the ectomycorrhizal community structure can add to the understanding of processes in forest ecosystems and can also be applied as tools for bioindication of pollution stress in forest soils. We have studied the effects of pollution (N and S) on trees and forest soils by: (1) quantification of ECM types diversity as in situ indicators in forest stands, (2) determination and quantification of pollution-sensitive or -insensitive ECM types as passive monitors, (3) root growth and development of ECM on nonmycorrhizal spruce seedlings, planted at the studied sites (active monitors), and (4) ECM infection (a bioassay based on mycorrhizal inoculum potential) of seedlings in an experimental set-up as ex situ testers. ECM species richness for Norway spruce trees (Picea abies) showed higher values in unpolluted sites than in polluted ones, while the differences were not significant for European beech trees (Fagus sylvatica). As pollution-sensitive or -insensitive ECM species in spruce forests, we suggest Hydnum rufescens (sensitive) and Paxillus involutus (unsensitive). Mycorrhizal potential in Norway spruce seedlings as a bioassay for soil N and S pollution was effective, and is suggested as an additional, standardized and widely comparable system in bioindication of soil pollution.  相似文献   
90.
Goals, Scope and Background It has been observed that hydrocarbon treated wastewaters still contain high COD and a number of intermediates. This suggests that the required catabolic gene pool for further degradation might be absent in the system or, that its titer value is not significant enough. By providing the desired catabolic potential, the overall efficiency of the treatment system can be improved. This study aims to demonstrate this concept by bioaugmentation of a lab-scale reactor treating refinery wastewater with a consortium having the capacity to complement the alkB genotype to the available microbial population. Methods Two reactors were set up using activated biomass collected from a refinery treatment plant and operated at a continuous mode for a period of 8 weeks. The feed to both reactors was kept constant. Crude oil was spiked regularly. One reactor was bioaugmented with a consortium previously described for crude oil spill remediation. The efficiency of the bioaugmented reactor was demonstrated by reduced COD. The changes in the microbial population over a period of time were analyzed by RAPD. Catabolic activity of the biomass in both reactors was monitored by PCR. The presence of the catabolic loci was confirmed by Southern Hybridization. Results and Discussion 52.2% removal of COD was observed in the bioaugmented reactor while only 15.1% reduction of COD was observed in the reactor without bioaugmentation. The change in microbial population can be seen from the 4th week, which also corresponds to improved catabolic activity. The presence of the bedA locus was seen in all samples, which indicates the presence of aromatic degraders, but the appearance of the alkB locus, from the 6th week onwards, which was observed only in the samples from the bioaugmented reactor. The results suggest that the gene pool of the bioaugmented reactor has catabolic loci that can degrade accumulated intermediates, thus improving the efficiency of the system. Conclusions In this study, improvement of efficiency of bioremediation was demonstrated by addition of catabolic loci that are responsible for degradation. Bioaugmentation was carried out in biomass that was collected from an ETP (effluent treatment plant) treating hydrocarbon containing wastewater to study the strategies for improvement of the treatment system. Biostimulation, only marginally improved the efficiency, when compared to bioaugmentation. The improved efficiency was demonstrated by COD removal. The presence of the alkB locus suggests the importance of a catabolic gene pool that acts on accumulated intermediates. It is well documented that straight chain aliphatics and intermediates of aromatic compounds after ring cleavage, accumulate in refinery wastewater systems, thereby hindering further degradation of the wastewater. Supplementation of a catabolic gene pool that treats the lower pathway compounds and alkanes will improve the overall efficiency. In this study, results suggest that the alkB locus can also be used to monitor the degradative mode of the activated biomass. Recommendations and Perspective . Pollution from petroleum and petroleum products around the globe are known to have grave consequences on the environment. Bioremediation, using activated sludge, is one option for the treatment of such wastes. Effluent treatment plants are usually unable to completely degrade the wastewater being treated in the biological unit (the aerator chambers). The efficiency of degradation can be improved by biostimulation and bioaugmentation. This study demonstrates the improved efficiency of a treatment system for wastewater containing hydrocarbons by bioaugmentation of a consortium that supports degradation. Further experiments on a pilot scale are recommended to assess the use of bioaugmentation on a large scale. The use of molecular tools, like DNA probes for alkB, to monitor the system also needs to be explored.  相似文献   
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