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911.
Juan Zhao Zhe Wang Ting Wu Xinming Wang Wanhong Dai Yujie Zhang Ran Wang Yonggan Zhang Chengfei Shi 《环境科学学报(英文版)》2016,28(7):257-269
A laboratory study was conducted to investigate volatile organic compound(VOC) emissions from agricultural soil amended with wheat straw and their associations with bacterial communities for a period of 66 days under non-flooded and flooded conditions. The results indicated that ethene, propene, ethanol, i-propanol, 2-butanol, acetaldehyde, acetone,2-butanone, 2-pentanone and acetophenone were the 10 most abundant VOCs, making up over 90% of the total VOCs released under the two water conditions. The mean emission of total VOCs from the amended soils under the non-flooded condition(5924 ng C/(kg·hr)) was significantly higher than that under the flooded condition(2211 ng C/(kg·hr)). One "peak emission window" appeared at days 0–44 or 4–44, and over 95% of the VOC emissions occurred during the first month under the two water conditions. Bacterial community analysis using denaturing gradient gel electrophoresis(DGGE) showed that a relative increase of Actinobacteria, Bacteroidetes, Firmicutes and γ-Proteobacteria but a relative decrease of Acidobacteria with time were observed after straw amendments under the two water conditions. Cluster analysis revealed that the soil bacterial communities changed greatly with incubation time, which was in line with the variation of the VOC emissions over the experimental period. Most of the above top 10 VOCs correlated positively with the predominant bacterial species of Bacteroidetes, Firmicutes and Verrucomicrobia but correlated negatively with the dominant bacterial species of Actinobacteria under the two water conditions. These results suggested that bacterial communities might play an important role in VOC emissions from straw-amended agricultural soils. 相似文献
912.
Steven S. Seefeldt Jeffery S. Conn Mingchu Zhang Phil N. Kaspari 《Agriculture, ecosystems & environment》2010,135(1-2):119-126
Over 14 million hectares of erosion prone cropland in the United States has been converted into grasslands through the Conservation Reserve Program (CRP) administered by the United States Department of Agriculture, however, studies of the effects of CRP enrollment on plant communities and subsequent plant succession are largely lacking. In Delta Junction, Alaska plant communities in CRP fields are transitioning from grasslands to shrub dominated plant communities, which are resulting in compliance problems with program regulations that state “fields must be maintained in a condition that permits easy conversion to cropland”. To determine plant succession and how previous land management and soils might influence the transition, we measured plant populations in 20 CRP fields throughout Delta Junction using modified-Whittaker plots. These data were combined with data on current management practices, previous farming history, soils, soil properties, diversity indices, and time since land was cleared and analyzed with nonmetric multidimensional scaling ordination to determine factors that influence plant succession. Time in the CRP was the only factor consistently influencing plant succession. As time in the CRP increased, the planted introduced grasses brome grass (Bromus inermis) and red fescue (Festuca rubra) and the native pteridophyte (Equisetum arvense) decreased, whereas a native grass (Calamigrostis canadensis), five native forb, two native shrub, and three native tree species increased. Plant diversity increased at a rate of more than 2 species per 1000 m2 per year. Regression analyses of plant species and plant groups using time in the CRP as the dependent variable resulted in the identification of outlier CRP fields with significantly more or less than expected covers of vegetation. All fields with these outliers had reasonable explanations for the differences in cover that were unrelated to the overall rate of plant succession. Current management practices will result in incompliant fields and different management practices that result in woody vegetation control is key to maintaining CRP fields in compliance. 相似文献
913.
914.
黑龙江省生态环境状况良好,野生动植物栖息和生长的环境逐步改善。主要污染物化学需氧量和二氧化硫排放量继续呈下降趋势。城市空气质量良好,处于全国中上游水平,城市噪声污染较轻。松花江水质稳中趋好,为轻度污染,部分支流水质明显改善,出境水质达标的频率大幅增加。 相似文献
915.
通过单因素试验研究了强化生物絮凝+生物接触氧化组合式一体化工艺对城市污水悬浮物SS、化学需氧量COD、氨氮NH3-N、总氮TN、总磷TP的去除效能和机理。试验结果表明:在组合工艺的较优运行条件下,装置对SS、COD、NH3-N、TN、TP的平均去除率分别为88.7%、89.3%、87.9%、73.4%、58.8%。组合工艺对污染物的总体去除效果良好,且稳定可靠,其中生物絮凝吸附段对总磷的去除率为32.4%,生物接触氧化段对总磷的去除率为39.1%,并对装置的除磷效果进行了分析。 相似文献
916.
环境风险评价是环境影响评价领域的一个新课题,20世纪80年代以来,发达国家就将环境风险评价纳入环境管理的范畴,环境风险评价已成为可能发生事故危险的建设项目环境影响评价中重要而不可缺少的组成部分。由于乙二胺四乙酸生产所用原料都具有一定毒害特性,故对具有发生潜在事故风险的乙二胺四乙酸建设项目,其潜在风险事故发生的可能性及其影响后果在环境风险评价中均应得到反映。本文以某拟建乙二胺四乙酸项目为例,分析乙二胺四乙酸项目环境风险评价。 相似文献
917.
从水质变化过程、水体空间维度和边界条件三个方面简要回顾了水环境模拟的研究与发展进程。介绍了目前国内外广泛应用的综合性水质模型软件:QUAL2E/2K、CE-QUAL-RIV1、MIKE11、CE-QUAL-W2、MIKE21、Delft3D、WASP、EFDC、BASINS、WARMF、SMS的特点和适用范围,重点讨论了EFDC和WASP集成应用于复杂水环境模拟的优势。对复杂水环境模拟的发展趋势进行了展望。 相似文献
918.
多级A/OVTBR组合工艺处理焦化废水 总被引:2,自引:0,他引:2
采用水解酸化、多级A/O垂直折流生物膜反应器(vertical tubulant biological reactor,VTBR)、混凝和Fenton氧化组合技术对实际焦化废水进行处理。其中水解酸化预处理阶段提高了废水可生化性,混凝降低了生化处理的有机负荷,一级A/O VTBR以脱碳为主,二级A/O VTBR主要脱碳和脱氮,三级好氧VTBR强化对氨氮的去除,Fenton氧化则对生化出水进行深度处理。试验结果表明:在进水ρ(COD)为3 000~3 500 mg/L,ρ(BOD5)为1 212 mg/L,ρ(NH3-N)为109 mg/L条件下,保持好氧段ρ(DO)为3~7 mg/L,缺氧段ρ(DO)<1 mg/L,总停留时间HRT 56 h,该工艺对COD、BOD5、NH3-N的去除率分别为98%、99%、95%,出水达GB8978-1996《污水综合排放标准》中的一级排放标准。 相似文献
919.
运用计算实验方法,以计算机为工具,构造太湖水环境系统承载力模型,通过研究水和人类的各主体行为得出太湖水环境系统的整体特征,并通过人口、TP、TN、CODMn承载度来反映。研究结果表明太湖目前点源污染得到了有效控制,但面源污染和城镇生活用水污染尚需要重点治理。实验显示:通过系统参数的调整,将大大改善太湖现有水环境系统。 相似文献
920.
介绍计算机废弃物的来源、组成、污染,重点阐述了计算机废弃物的拆卸技术和塑料、线路板、贵金属的回收利用方法。对计算机废弃物处理有重要的参考借鉴价值。 相似文献