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1.
Heavy metal accumulation by plant communities has been studied in different zones of impact of gas field development. The contents of heavy metals in different blocks of plant communities has proved to depend not only on the location of phytocenosis but also on its species composition. Communities dominated by species of the family Poaceae contain smaller amounts of heavy metals than those dominated by species of the family Asteraceae, especially of the genus Artemisia. The order of precedence in the accumulation of heavy metals in different blocks of plant communities has been revealed.  相似文献   
2.
以华南稻田土壤为研究对象通过构建微宇宙体系,研究了淹水稻田自养硝酸盐还原耦合As(III)氧化过程及其微生物群落结构组成.结果表明,NO3-的添加促进了稻田土壤中As(III)的氧化,在未添加NO3-的处理(Soil+As(III))以及灭菌处理(Sterilized soil+As(III)+NO3-)中As(III)未发生明显的氧化;在Soil+As(III)+NO3-处理中,NO3-有少量被还原,而在Soil+NO3-处理中,NO3-没有被还原.通过16S rRNA高通量分析在NO3-还原耦合As(III)氧化体系中微生物群落结构特征,在Soil+As(III)+NO3-处理中shannon指数相对较低为8.19,土壤微生物群落多样性降低,其中在门水平上主要优势菌群为变形菌门Proteobacteria(33%)、绿弯菌门Chloroflexi(11%)、浮霉菌门Planctomycetes(12%);在属水平上主要的优势菌属为Gemmatimonas(7.4%)以及少量的Singulisphaera、Thermomonas、Bacillus.NO3-的添加能够促进稻田土壤中自养As(III)氧化,并且影响着稻田土壤中微生物群落组成.  相似文献   
3.
The Chesapeake Bay benthic index of biotic integrity (B-IBI) was developed to assess benthic community health and environmental quality in Chesapeake Bay. The B-IBI provides Chesapeake Bay monitoring programs with a uniform tool with which to characterize bay-wide benthic community condition and assess the health of the Bay. A probability-based design permits unbiased annual estimates of areal degradation within the Chesapeake Bay and its tributaries with quantifiable precision. However, of greatest interest to managers is the identification of problem areas most in need of restoration. Here we apply the B-IBI to benthic data collected in the Bay since 1994 to assess benthic community degradation by Chesapeake Bay Program segment and water depth. We used a new B-IBI classification system that improves the reliability of the estimates of degradation. Estimates were produced for 67 Chesapeake Bay Program segments. Greatest degradation was found in areas that are known to experience hypoxia or show toxic contamination, such as the mesohaline portion of the Potomac River, the Patapsco River, and the Maryland mainstem. Logistic regression models revealed increased probability of degraded benthos with depth for the lower Potomac River, Patapsco River, Nanticoke River, lower York River, and the Maryland mainstem. Our assessment of degradation by segment and water depth provided greater resolution of relative condition than previously available, and helped define the extent of degradation in Chesapeake Bay.  相似文献   
4.
宋歌 《环境保护科学》2003,29(6):40-41,49
从沈阳市水资源状况入手 ,提出了开展中水回用应采取的措施 ,并对目前开展中水回用工程所遇到问题进行了论述。  相似文献   
5.
近年来,城市化发展带动了社区建设的蒸蒸日上,同时也带来了环境资源的快速消耗及一系列的环境污染问题,生态社区的建设受到人们的广泛关注,可持续发展的理念已经渗透到人类社区建设发展的各个方面.通过对城市型生态社区内涵的分析,探讨了城市型生态社区可持续发展评价指标体系的构建原则,在该原则指导下结合苏州市区域特征采用层次分析法建立了与之相应的评价指标体系,并在该基础上以指标体系中的生态建筑子系统为例对其做出详细的指标说明.  相似文献   
6.
大气微小颗粒物中汞的污染特性初步研究   总被引:4,自引:0,他引:4  
采用分级采样器采集大气中微小颗粒物中的汞,用冷原子吸收测汞仪分析。结果表明,颗粒态汞浓度随粒径分布呈双峰型,2个峰值分别出现在粒径1.0μm和4.0μm左右,与水溶性离子,碳含量的粒径分布基本一致。PM_(1.6)、PM_(8)和TSP中颗粒态汞的浓度分别为0.150、0.273、0.429ng/m~3,汞的质量分数分别为3.75.1.09、1.07μg/g,高于背景参考值;结果还表明,颗粒态汞主要集中在细颗粒中。通过正态概率分布测算,PM_(1.6)、PM_(6)中汞主要来自于1个主体源;PM_(1.6)中汞的浓度与硫酸根离子呈显著性相关,而与硝酸根离子、氯离子则不显著相关:说明颗粒物中汞的主要来源可能与燃煤有关。  相似文献   
7.
PFU微型生物群落水质鉴别及群落参数变化模式的研究   总被引:11,自引:1,他引:11  
基于PFU微型生物群落参数调查数据,对湖北省汉江两条污染带11个站 和湖南常德市水系15个站点所属水质组别进行了综合分析研究。所得典型鉴别函数能够对水质组别作出有效的鉴别,分类函数对站点的水质组别分类正确率达到96%;群落参数对化学综合污染指数的响应不呈简单的线性关系,群落的变化存在一定模式。  相似文献   
8.
内蒙古自治区位于祖国北部边疆,地域辽阔,是我国北疆的绿色屏障,由于自然条件的制约,草场保护与草地资源利用间的矛盾比较突出。近几年我区的过度放牧和养殖,使草地面积退化,而且草地建设严重滞后。我区有得天独厚的风能和水资源,但资源分布不均,东部地区水资源和草地资源丰富,而中西部地区风能资源丰富,如何充分认识与利用资源空间有机组成,充分利用生态承载力,实现生存与生态良性发展,则显得十分重要。本文要结合我区的风、水、土、草等资源的分布条件,探讨我区走协调发展的道路。  相似文献   
9.
Numerous studies support that biodiversity predict most to ecosystem functioning, but whether other factors display a more significant direct impact on ecosystem functioning than biodiversity remains to be studied. We investigated 398 samples of the phytoplankton phosphorus resource use efficiency (RUEP = chlorophyll-a concentration/dissolved phosphate) across two seasons in nine plateau lakes in Yunnan Province, China. We identified the main contributors to phytoplankton RUEP and analyzed their potential influences on RUEP at different lake trophic states. The results showed that total nitrogen (TN) contributed the most to RUEP among the nine lakes, whereas community turnover (measured as community dissimilarity) explained the most to RUEP variation across the two seasons. Moreover, TN also influenced RUEP by affecting biodiversity. Species richness (SR), functional attribute diversity (FAD2), and dendrogram-based functional diversity (FDc) were positively correlated with RUEP in both seasons, while evenness was negatively correlated with RUEP at the end of the rainy season. We also found that the effects of biodiversity and turnover on RUEP depended on the lake trophic states. SR and FAD2 were positively correlated with RUEP in all three trophic states. Evenness showed a negative correlation with RUEP at the eutrophic and oligotrophic levels, but a positive correlation at the mesotrophic level. Turnover had a negative influence on RUEP at the eutrophic level, but a positive influence at the mesotrophic and oligotrophic levels. Overall, our results suggested that multiple factors and nutrient states need to be considered when the ecosystem functioning predictors and the biodiversity-ecosystem functioning relationships are investigated.  相似文献   
10.
Anaerobic digestion (AD) of swine manure (SM) commonly shows low biogas output and unsatisfactory economic performance. In this study, thermophilic AD (TAD, 50 ± 1 °C) was combined with thermal hydrolysis pretreatment (THP, 170 °C/10 bar), to investigate its potential for maximizing biogas yield, securing successful digestion and microbial diversity, as well as improving energy balance. Four lab-scale continuously stirred tank reactors were operated for 300 days and compared with each other, i.e., reactor 1 (raw SM fed in mesophilic AD: RSM-MAD), reactor 2 (THP-treated SM fed in MAD: TSM-MAD), reactor 3 (RSM-TAD), and reactor 4 (TSM-TAD). The results showed that THP was efficient to increase methane production of SM, TSM-TAD mode led to the highest methane yield (129.8 ± 40.5 mL-CH4/g-VS/day) among the tests (p < 0.05). Although TAD was more likely to induce free ammonia (> 700 mg/L) or volatile fatty acids (> 6000 mg/L) accumulation compared with MAD in start-up phase, TSM-TAD treatment mode behaved a sustainable digestion process in a long-term operation. For TSM-TAD scenario, higher Shannon–Weaver (3.873) and lower Simpson index (0.061) indicated this mode ensured and enlarged the diversity of bacteria communities. Phylum Bathyarchaeota was dominant (59.3%−90.0%) in archaea community, followed by Euryarchaeota in the four reactors. RSM-MAD treatment mode achieved the highest energy output (4.65 GJ/day), TSM-TAD was less effective (−17.38 GJ/day) due to increased energy demands. Thus improving the energetic efficiency of THP units is recommended for the development of TSM-TAD treatment mode.  相似文献   
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