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991.
992.
入侵植物互花米草水浸液对莴苣的化感效应 总被引:1,自引:0,他引:1
选用互花米草根、茎、叶5个浓度梯度(0.065、0.130、0.195、0.260、0.325 g·mL-1)的水浸液为处理液,研究其对莴苣种子萌发及幼苗生长的影响.结果表明:互花米草根水浸液在浓度大于0.260 g·mL-1时会显著抑制莴苣种子的萌发,而茎、叶水浸液产生显著抑制作用的起始浓度分别为0.130 g·mL-1和0.195 g·mL-1;互花米草根、茎、叶水浸液对莴苣种子萌发的抑制,不仅表现为降低种子的最终萌发率,还表现为延长种子的平均萌发周期;茎、叶水授液对幼苗生长的影响比较显著.而根水浸液浓度低于0.195g·mL-1时对幼苗胚轴的生长产生促进作用(敏感指数RI>0).不同构件水浸液化感效应强度由大到小依次为:茎>叶>根.并且化感效应强度随水浸液浓度的增加而增强. 相似文献
993.
Levels and distributions of polychlorinated biphenyls in sewage sludge of
urban wastewater treatment plants 总被引:1,自引:0,他引:1
Concentrations of polychlorinated biphenyls (PCBs) have been measured in sewage sludge samples from 8 urban wastewater treatment plants in Beijing, China. The PCB congeners were analyzed by isotope dilution high resolution gas chromatography/high resolution mass spectrometry method. The concentration of PCBs ranged from 65.6 to 157 ng/g dry weight (dw), with a mean value of 101 ng/g dw. The dioxin-like PCB WHO-TEQs (World Health Organization-Toxic Equivalents) of the sludge were lower than 1 pg /g dw. Conse... 相似文献
994.
火电厂循环冷却水系统利用中水水源实现城市中水大规模回用,对缓解水资源短缺、减轻水体污染具有现实的意义。阐述了城市中水回用火电厂循环冷却水系统的现状、中水深度处理,提出ABFT+机械澄清池工艺弥补了传统深度处理工艺的不足,介绍其原理、特点及成功应用实例。 相似文献
995.
从二氧化硫总量减排环保监督管理的实际出发,结合日常监督工作的实例,分析影响烟气脱硫效率的因素,找出脱硫系统容易出现的故障,提出对脱硫系统日常监督考核的重点,探索建立烟气脱硫系统监督考核方法。 相似文献
996.
997.
通过野外实地调查,对辽宁省的4个国家级自然保护区外来入侵植物的种类数量和分布现状进行了调查分析。结果表明,老铁山、鸭绿江口、医巫闾山、九龙川4个自然保护区内的外来入侵植物分别为27,10,7和6种,总计16科36种。依据保护区内外来入侵植物的特点和生态影响,提出了一些有效的管理措施和防治建议。 相似文献
998.
RIP-N模型对官厅水库库滨带去氮效应的流域尺度模拟分析 总被引:1,自引:1,他引:0
以官厅水库库滨带为研究对象,构建适用于流域尺度岸边带去氮负荷估算的生态水文模型——RIP-N(Riparian-Nitrogen)模型,对官厅水库库滨带2007年3~9月间岸边带去氮效应进行分析.同时,在延庆水保站开展田间尺度的野外模拟实验,结合室内外试验分析和以往研究成果,对模型模拟结果进行验证.RIP-N模型包括土壤化学过程模拟和植物生长过程模拟.前者包括土壤反硝化模拟、硝化模拟和氨挥发模拟;后者包括植物净第一性生产力(net primary productivity,NPP)模拟、植物生产力分配模拟和植物营养元素吸收模拟.结果表明:①RIP-N模型模拟值与实验值的决定系数大于0.5,证明该模型在空间尺度模拟上的有效性及模拟结果的可靠性;②模型模拟结果表明官厅水库库滨带流域3~9月对N的总去除量为5.91×103t;③RIP-N模型对官厅水库库滨带去氮环境效益分析表明,当前库滨带土地利用格局中,滩地、林地和草地是去污效果较好的土地利用类型,3~9月对流域的去N量占流域总去N量的76.5%,在非点源污染防治中起到"汇"的作用;但是研究区中专属湿地的"汇"作用表现不明显,3~9月去N量仅占流域总去N量的5.9... 相似文献
999.
The rare plant Rheum palaestinum (Polygonaceae) is a perennial hemicryptophyte that grows during the rainy winter in desert mountainous areas in Israel and
Jordan that receive an average annual rainfall of ca. 75 mm. It produces between one and four large round leaves that are
tightly attached to the ground and form large rosettes of up to 1 m2. These leaves differ markedly from the typical small leaves of most desert plants. Moreover, they have a unique 3D morphology
resembling a scaled-down mountainous area with well-developed steep drainage systems, raising the question which selective
agents were involved in their evolution. We propose that the large leaves collect rainwater that then infiltrates the soil
surrounding the root. We measured the seasonal course of leaf growth, examined the area of wet soil surrounding the root after
actual and simulated rain, and modeled the water harvesting capacity using the plant leaf area and the weekly precipitation.
We show that even in the slightest rains, water flows above the veins to the leaf’s base where it irrigates the vertical root.
A typical plant harvests more than 4,100 cm3 of water per year, and enjoys a water regime of about 427 mm/year, equivalent to the water supply in a Mediterranean climate.
This is the first example of self-irrigation by large leaves in a desert plant, creating a leaf-made mini oasis.
All authors contributed equally to this paper. 相似文献
1000.
Effects of vegetation type on soil microbial community structure and catabolic
diversity assessed by polyphasic methods in North China 总被引:12,自引:0,他引:12
HAN Xue-mei WANG Ren-qing LIU Jian WANG Meng-cheng ZHOU Juan GUO Wei-hua 《环境科学学报(英文版)》2007,19(10):1228-1234
Soil microbes play a major role in ecological processes and are closely associated with the aboveground plant community.In order to understand the effects of vegetation type on the characteristics of soil microbial communities,the soil microbial communities were assessed by plate counts,phospholipid fatty acid (PLFA) and Biolog microplate techniques in five plant communities,i.e.,soybean field (SF),artificial turf (AT),artificial shrub (AS),natural shrub (NS),and maize field (MF) in Jinan,Shandong Province,North China.The results showed that plant diversity had little discernible effect on microbial biomass but a positive impact on the evenness of utilized substrates in Biolog microplate.Legumes could significantly enhance the number of cultural microorganisms,microbial biomass,and community catabolic diversity.Except for SF dominated by legumes,the biomass of fungi and the catabolic diversity of microbial community were higher in less disturbed soil beneath NS than in frequently disturbed soils beneath the other vegetation types.These results confirmed that high number of plant species,legumes,and natural vegetation types tend to support soil microbial communities with higher function.The present study also found a significant correlation between the number of cultured bacteria and catabolic diversity of the bacterial community.Different research methods led to varied results in this study.The combination of several approaches is recommended for accurately describing the characteristics of microbial communities in many respects. 相似文献