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801.
长期施肥潮土土壤呼吸的温度和水分效应   总被引:6,自引:0,他引:6  
孟磊  丁维新  蔡祖聪 《生态环境》2008,17(2):693-698
温度和水分是影响土壤呼吸的重要因素.利用室内培养试验研究因长期施用不同肥料造成有机质含量存在差异的土壤在不同土壤水分含量(30%WFPS、45%WFPS、60%WFPS、75%WFPS 和90%WFPS)和培养温度(5 ℃、15 ℃、25 ℃、35 ℃)下的土壤呼吸.结果表明,土壤水分含量和培养温度对土壤呼吸既表现出相互制约作用,在一定范围内又具有相互促进作用.施肥影响着土壤呼吸所需的最适水分含量,不均衡施肥处理的土壤呼吸所需最适土壤水分含量高于均衡施肥处理的土壤.培养温度也影响土壤呼吸的最适水分含量,土壤呼吸所需最适水分随培养温度升高而升高.土壤水分含量的增加可增加土壤呼吸的Q10.施肥特别是施有机肥而增加的土壤有机碳的释放速率是最快的.因此,气温升高和降水增加等气候变化趋势下,不利于通过施用有机肥来增加农田土壤有机碳储量.  相似文献   
802.
实验采用营养液培养法,设置2,50,100,500和1000μmol·L^-1浓度ZnSO4处理,比较C4植物甜高粱(Sorghum bicolor(L.)Moench.)和玉米(Zea mays.L)幼苗对Zn胁迫的响应差异。结果表明,甜高粱对重金属Zn胁迫的敏感性强于玉米,随着Zn处理浓度加大,前者幼苗苗高、根长、单株干物质量、叶绿素含量和根系活力的下降幅度及丙二醛含量的上升幅度皆大于后者,玉米对Zn胁迫的耐受性强于甜高粱。在处理浓度达到500μmol·L^-1之前,甜高粱和玉米体内吸收的Zn随处理浓度加大显著递增,达500μmol·L^-1之后,玉米根系积累的Zn不再明显增加。在处理浓度达到和高于100μmol·L^-1时,甜高粱由根系向地上部转运的Zn显著高于玉米。甜高粱和玉米对zn胁迫的敏感性差异可能缘于它们的吸收和转运差异。  相似文献   
803.
十溴联苯醚(BDE-209)是目前唯一仍在全球范围内广泛使用的多溴联苯醚阻燃剂,其环境行为及生物效应逐渐成为环境污染领域研究的热点。选用2(LD组)、10(MLD组)、50(MHD组)及250μg.L-1(HD组)4个浓度的BDE-209作用于紫红笛鲷,探讨BDE-209对紫红笛鲷鳃抗氧化酶(SOD、CAT及POD)活性和MDA含量的影响。结果显示:BDE-209可以显著促进SOD和CAT活性,且随着暴露时间延长CAT活性呈现逐渐增加的趋势。暴露7d后,MLD组SOD活性达到最高68.31U.mg-1,是对照组(CK)的5.50倍,HD组CAT活性达到6.31U.mL-1,其次为MHD组的5.96U.mL-1。BDE-209对鳃POD活性呈现先促进后抑制的作用,暴露3d时各浓度POD活性均显著高于CK组(P<0.05);7d时各浓度POD活性则受到显著抑制(P<0.05),清水恢复15d后各浓度组与CK组没有显著差异(P>0.05)。暴露期间各浓度组MDA含量均显著高于CK组(P<,并且随暴露时间延长呈现先增加后减少的趋势,7d后HD组MDA含量达到最高,为6.99nmol.mg-1,清水恢复15d后,LD和MLD组MDA含量与CK组没有显著性差异(P>0.05)。以上结果表明:BDE-209可以诱导紫红笛鲷产生氧化应激效应,CAT和SOD则在氧自由基清除中发挥作用。  相似文献   
804.
论健全环境影响评价法律制度的几个问题   总被引:3,自引:0,他引:3  
环境影响评价制度是从源头控制环境污染和生态破坏的法律手段,但中国的环境影响评价制度在实施中却存在执行率高、效果差的尴尬困境.探讨了健全环境影响评价制度的指导思想和途径,并从完善战略环境影响评价制度、环境影响评价审批制度、公众参与制度、法律责任制度等方面进行了具体论述.  相似文献   
805.
北京市妫水河流域景观生态学分析   总被引:2,自引:0,他引:2  
基于GIS的空间分析平台,以景观生态学的方法建模,分析了北京市妫水河流域的景观格局特征,并与妫水河平原的景观格局特征进行了比较,发现在妫水河平原范围内,由于人为干扰程度的加剧,整体生态格局的异质性下降、碎裂化增加,景观生态格局的稳定性和安全性比之妫水河流域有所下降.分析了妫水河流域面临的问题及其原因,进而提出妫水河流域生态恢复的建议和措施.  相似文献   
806.
以(NH4):SO4和NaNO2作为基质,富集厌氧氨氧化污泥.提取厌氧氨氧化污泥中细菌总DNA,纯化后使用特异性引物对厌氧氨氧化菌16S rDNA进行PCR扩增.扩增产物连接到pMD19-T载体,将载体转化到感受态细胞大肠杆菌JM109中,并对其16S rDNA基因进行测序.将测序结果进行系统发育树分析,发现富集得到的厌氧氨氧化菌与Candidatus Anammoxoglobus propionicus进化关系比较接近,是一种尚未见报道的厌氧氨氧化菌.  相似文献   
807.
Yao X  Zhang Y  Zhu G  Qin B  Feng L  Cai L  Gao G 《Chemosphere》2011,82(2):145-155
Taihu Basin is the most developed area in China, which economic development has resulted in pollutants being produced and discharged into rivers and the lake. Lake Taihu is located in the center of the basin, which is characterized by a complex network of rivers and channels. To assess the sources and fate of dissolved organic matter (DOM) in surface waters, we determined the components and abundance of chromophoric dissolved organic matter (CDOM) within Lake Taihu and 66 of its tributaries, and 22 sites along transects from two main rivers. In Lake Taihu, there was a relative less spatial variation in CDOM absorption aCDOM(355) with a mean of 2.46 ± 0.69 m−1compared to the mean of 3.36 ± 1.77 m−1 in the rivers. Two autochthonous tryptophan-like components (C1 and C5), two humic-like components (C2 and C3), and one autochthonous tyrosine-like component (C4) were identified using the parallel factor analysis (PARAFAC) model. The C2 and C3 had a direct relationship with aCDOM(355), dissolved organic carbon (DOC), and chemical oxygen demand (COD). The separation of lake samples from river samples, on both axes of the Principal Component Analysis (PCA), showed the difference in DOM fluorophores between these various environments. Components C1 and C5 concurrently showed positive factor 1 loadings, while C4 was close to the negative factor 1 axis. Components C2 and C3 showed positive second factor loadings. The major contribution of autochthonous tryptophan-like components to lake samples is due to the autochthonous production of CDOM in the lake ecosystems. The results also showed that the differences in geology and associated land use control CDOM dynamics, such as the high levels of CDOM with terrestrial characteristics in the northwestern upstream rivers and low levels of CDOM with increased microbial characteristics in the southwestern upstream rivers. Most of river samples from the downstream regions in the eastern and southeastern plains had a similar relative abundance of humic-like fluorescence, with less of the tryptophan-like and more of the tyrosine-like contributions than did samples from upstream regions.  相似文献   
808.
The residues of 13 organochlorine pesticides (OCPs) in surface water and HCHs and DDTs in suspended particulate matter (SPM) from rivers and lakes in Yangtze River catchment of Wuhan, China, were investigated. The concentration of total OCPs in surface water varied from 1.01 to 46.49 ng l−1 (mean 10.55 ng l−1). The levels of total HCHs (ΣHCH) and total DDTs (ΣDDT) in surface water were in the range of 0.55–28.07 ng l−1 and lower than detection limit to 16.71 ng l−1, respectively, which was lower than Chinese standards on the whole. For OCPs residues in SPM, the mean levels varying from 0.20 to 34.72 ng l−1 and 0.46 to 2.72 ng l−1 for ΣHCH and ΣDDT, respectively, which ranked the relatively higher levels among Chinese studied rivers. Results from this investigation showed that previous excessive usage of technical OCPs was the main reason for the residues of HCHs and DDTs both in surface water and SPM, although some new sources were likely to occurred in the region. Apart from the OCPs in SPM originated from upstream in flood season, one of the important sources of OCP residues both in water and SPM in Yangtze River was supposed to be the inputs of its tributaries. Additionally, in situ water-SPM phase distributions of OCPs indicated that HCHs tended totransport with water as well as DDTs was prone to combine with SPM in Yangtze River catchment of Wuhan.  相似文献   
809.
The spatial and temporal dynamics of physical variables, inorganic nutrients and phytoplankton chlorophyll a were investigated in Xiangxi Bay from 23 Feb. to 28 Apr. every six days, including one daily sampling site and one bidaily sampling site. The concentrations of nutrient variables showed ranges of 0.02–3.20 mg/L for dissolved silicate (Si); 0.06–2.40 mg/L for DIN (NH4N + NO2N + NO3N); 0.03–0.56 mg/L for PO4P and 0.22–193.37 μg/L for chlorophyll a, respectively. The concentration of chlorophyll a and inorganic nutrients were interpolated using GIS techniques. The results indicated that the spring bloom was occurred twice in space during the whole monitoring period (The first one: 26 Feb.–23 Mar.; the second one: 23 Mar.–28 Apr.). The concentration of DIN was always high in the mouth of Xiangxi Bay, and PO4P was high in the upstream of Xiangxi Bay during the whole bloom period. Si seems no obvious difference in space in the beginning of the spring bloom, but showed high heterogeneity in space and time with the development of spring bloom. By comparing the interpolated maps of chlorophyll a and inorganic variables, obvious consumptions of Si and DIN were found when the bloom status was serious. However, no obvious depletion of PO4P was found. Spatial regression analysis could explained most variation of Chl-a except at the begin of the first and second bloom. The result indicated that Si was the factor limiting Chl-a in space before achieved the max area of hypertrophic in the first and second bloom period. When Si was obviously exhausted, DIN became the factor limiting the Chl-a in space. Daily and bidaily monitoring of Site A and B, representing for high DIN: PO4P ratio and low DIN:PO4P ratio, indicated that the concentration of Si was decreased with times at both site A and B, and the dramatically drop of DIN was found in the end monitoring at site B. Multiple stepwise regression analysis indicated that Si was the most important factor affect the development of spring bloom both at site A and B in time series.  相似文献   
810.
利用由微孔疏水性聚丙烯中空纤维制成的工业级膜组件对垃圾渗滤液中氨氮进行支撑气膜法脱除研究,考察了泡沫分离-石灰絮凝等预处理技术对垃圾渗滤液表面张力及COD值的处理效果,在此基础上研究了物料因素和操作因素对膜传质性能的影响,并对该工艺的长期操作稳定性进行了研究。实验结果表明该预处理技术不仅可显著提高垃圾渗滤液的表面张力,还可大大降低其色度和COD值。当进料流量为100 L/h、进料氨氮浓度为1 000~3 000 mg/L、硫酸吸收液流量为200 L/h、硫酸浓度为6%~10%、温度为20~30℃时,支撑气膜过程(两级膜组件串联)可有效脱除垃圾渗滤液中99%以上的氨氮,同时得到含10%~15%硫酸铵的水溶液作为副产品。工业级支撑气膜组件在连续运行的2个月内保持了良好的传质稳定性。  相似文献   
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