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31.
植被NPP对气候变化的响应是全球变化与陆地生态系统碳循环研究的重要核心内容之一。利用CASA模型估算了2000~2015年江汉平原植被NPP,并利用线性回归与逐像元相关性分析方法定量研究了江汉平原植被NPP的时空变化特征及其与气候因素的相关性。结果表明:(1)16年来江汉平原植被NPP的年总量在25.43~29.76 TgC之间,呈波动增加趋势;(2)江汉平原NPP的空间分布格局具有明显的不均匀特征,形成一系列的高值中心和低值中心,符合“丘陵-平原-河流-城市”的衰减趋势;(3)江汉平原NPP与年降水量、年均温的相关系数分别为0.183 7和0.498 5;经显著性检验可知,江汉平原NPP的产量与年降水量相关性较弱,而与年均温则呈较强的正相关关系;(4)植被NPP与年降水量、年均温呈正相关的像元面积分别占总面积的69.19%和83.41%,主要分布在江汉平原腹部的农耕区域,说明江汉平原农耕区NPP的产量对年降水量与年均温的依赖性较强。  相似文献   
32.
Environmental Science and Pollution Research - In this work, it was analyzed the behavior of three commercial activated carbons with different textural and chemical properties to adsorb...  相似文献   
33.

The aim of this study was to determine the bioavailability of metals in field soils contaminated with chromated copper arsenate (CCA) mixtures. The uptake and elimination kinetics of chromium, copper, and arsenic were assessed in the earthworm Eisenia andrei exposed to soils from a gradient of CCA wood preservative contamination near Hartola, Finland. In soils contaminated with 1480–1590 mg Cr/kg dry soil, 642–791 mg Cu/kg dry soil, and 850–2810 mg Ag/kg dry soil, uptake and elimination kinetics patterns were similar for Cr and Cu. Both metals were rapidly taken up and rapidly excreted by Eisenia andrei with equilibrium reached within 1 day. The metalloid As, however, showed very slow uptake and elimination in the earthworms and body concentrations did not reach equilibrium within 21 days. Bioaccumulation factors (BAF) were low for Cu and Cr (< 0.1), but high for As at 0.54–1.8. The potential risk of CCA exposure for the terrestrial ecosystem therefore is mainly due to As.

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34.
35.
湿地植物根际微生物处理生活污水的模型规模研究   总被引:3,自引:0,他引:3  
在人工湿地模型中,研究了人为增加湿地植物根际微生物对生活污水中COD的降解效果:将2株从湿地分离的根际微生物扩增培养(分别用于模型1与模型2),与一定比例的生活污水混合后注入到湿地模型中,在停留12,24,36,48 h时分别测定污水中COD的去除率.结果表明,加菌模型对COD的去除率显著高于空白模型(P<0.05),且随着时间的延长,二者的差异性越大,至48 h时,空白模型和2个加菌模型(模型1和模型2)对自然污水COD的去除率分别为50.6%,73.0%,75.3%,对灭菌污水COD的去除率分别为52.2%,76.3%,80.1%.说明向人工湿地中添加植物根际微生物将大大提高湿地对生活污水中COD的去除率,具有进一步开发的价值.  相似文献   
36.
The photocatalytic reduction of CO2 with H2O was investigated using Cu/TiO2 photocatalysts in aqueous solution. For this purpose, Cu/TiO2 photocatalysts (with 0.2, 0.9, 2, 4, and 6 wt.% of Cu) have been synthesized via sol-gel method. The photocatalysts were extensively characterized by means of inductively coupled plasma optical emission spectrometry (ICP-OES), N2 physisorption (BET), XRD, UV-vis DRS, FT-IR, Raman spectroscopy, TEM-EDX, and photoelectrochemical measurements. The as-prepared photocatalysts contain anatase as a major crystalline phase with a crystallite size around 13 nm. By increasing the amount of Cu, specific surface area and band gap energy decreased in addition to the formation of large agglomeration of CuO. Results revealed that the photocatalytic reduction of CO2 decreased in the presence of Cu/TiO2 in comparison to pure TiO2, which might be associated to the formation of CuO phase acting as a recombination center of generated electron-hole pair. Decreasing of photoactivity can also be connected with a very low position of conduction band of photocatalysts with high Cu content, which makes H2 production necessary for CO2 reduction more difficult.  相似文献   
37.
Environmental Science and Pollution Research - Sealing layers made of two alkaline paper mill by-products, fly ash and green liquor dregs, were placed on top of 50-year-old sulfide-containing...  相似文献   
38.

Green algae Cladophora aegagropila, present in cooling water of thermal power plants, causes many problems and complications, especially during summer. However, algae and its metabolites are rarely eliminated by common removal methods. In this work, the elimination efficiency of electrochemically prepared potassium ferrate(VI) on algae from cooling water was investigated. The influence of experimental parameters, such as Fe(VI) dosage, application time, pH of the system, temperature and hydrodynamics of the solution on removal efficiency, was optimized. This study demonstrates that algae C. aegagropila can be effectively removed from cooling water by ferrate. Application of ferrate(VI) at the optimized dosage and under the suitable conditions (temperature, pH) leads to 100% removal of green algae Cladophora from the system. Environmentally friendly reduction products (Fe(III)) and coagulation properties favour the application of ferrate for the treatment of water contaminated with studied microorganisms compared to other methods such as chlorination and use of permanganate, where harmful products are produced.

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39.
Regional Environmental Change - Replacement of conventional energy sources with renewables such as solar panels and wind turbines requires adequate land. Impact assessments should be conducted to...  相似文献   
40.
Environmental Economics and Policy Studies - This paper examines convergence of per capita carbon dioxide (CO2) emission for a panel of 124 countries taking into account the impact of economic...  相似文献   
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