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砂岩型铀矿床上方氧的分布 被引量:2
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作者 陈国梁 董秀康 +2 位作者 刘汉彬 李学军 伍岳 《铀矿地质》 CAS CSCD 1998年第1期45-43,共1页
本文以层间氧化带型铀矿床为例,根据各层间分带中铀存在的形式和状态、铀成矿的条件及各阶段相应的化学变化及气体扩散所引起的氧浓度梯度变化,对砂岩型铀矿床上方氧的分布模式做了初步探讨。通过在已知矿床上取得良好效果的应用实例... 本文以层间氧化带型铀矿床为例,根据各层间分带中铀存在的形式和状态、铀成矿的条件及各阶段相应的化学变化及气体扩散所引起的氧浓度梯度变化,对砂岩型铀矿床上方氧的分布模式做了初步探讨。通过在已知矿床上取得良好效果的应用实例,指出野外工作时应注意的问题。认为该法在寻找可地浸砂岩型铀矿床中不失为一种简单易行的方法。 展开更多
关键词 砂岩型 铀矿床 氧浓度梯度 瞬时测量 分布
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Carrousel氧化沟特性系数分布规律及其关联性研究 被引量:1
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作者 黄远明 汤利华 +2 位作者 汪强林 王琨 郑力菲 《工业用水与废水》 CAS 2012年第2期50-52,60,共4页
通过对合肥市某污水处理厂Carrousel氧化沟A/O工艺运行实测数据研究,分析了该氧化沟在几个典型截面下的流速、污泥浓度和溶解氧浓度的分布规律,探讨了流速与污泥浓度、溶解氧之间的关联性。试验结果表明:在缺氧段,流速在各截面不同流层... 通过对合肥市某污水处理厂Carrousel氧化沟A/O工艺运行实测数据研究,分析了该氧化沟在几个典型截面下的流速、污泥浓度和溶解氧浓度的分布规律,探讨了流速与污泥浓度、溶解氧之间的关联性。试验结果表明:在缺氧段,流速在各截面不同流层保持比较稳定的流速梯度,溶解氧浓度沿程下降,同时污泥出现明显沉降;在好氧段,各流层流速波动较大,溶解氧浓度沿程升高,污泥浓度在各流层间分布较为均匀。在几个典型截面下流速与污泥浓度呈负相关,与溶解氧浓度呈正相关,且相关性较高。 展开更多
关键词 CARROUSEL化沟 污泥浓度 流速分布 溶解氧浓度梯度
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Gradient Step Method to Predict the Ozone Solubility in Water 被引量:1
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作者 Marco Aurelio Cremasco Vanessa Trevizan Mochi 《Journal of Environmental Science and Engineering(A)》 2012年第2期256-260,共5页
In this work it presents a strategy to obtain the ozone solubility in water by gradient step method. In this methodology, the ozone in mixture with oxygen is bubbling in a reactor with distilled water at 21℃ and pH 7... In this work it presents a strategy to obtain the ozone solubility in water by gradient step method. In this methodology, the ozone in mixture with oxygen is bubbling in a reactor with distilled water at 21℃ and pH 7. The ozone concentration on gas phase is continually increased after the saturation is reached. The method proposed is faster than conventional method (isocratic method). The solubility from the gradient method is compared with that values obtained from correlations founded in the literature. 展开更多
关键词 OZONE SOLUBILITY gradient step method isocratic method.
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Total Carbon Storage in Himalaya Rangeland of Milke-Jaljale Area, Eastern Nepal
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作者 Dil Kumar Limbu Madan Koirala Zhanhuan Shang 《Journal of Agricultural Science and Technology(A)》 2013年第10期775-781,共7页
Rangelands occupy 51% of the terrestrial land surface, 23% total land of Nepal. It contains about 36% of the world's total carbon in above and belowground biomass. Rangelands can aid in the mitigation of rising atmos... Rangelands occupy 51% of the terrestrial land surface, 23% total land of Nepal. It contains about 36% of the world's total carbon in above and belowground biomass. Rangelands can aid in the mitigation of rising atmospheric carbon dioxide concentrations via carbon storage in biomass and soil organic matter. A study on carbon stock on soil and vegetation at various altitudinal gradients in Milke-Jaljale rangeland area of Eastern Nepal was made. The study was carried out at three altitudinal gradients (above sea levels) Milke (3,000 m), Gorujure (3,500 m) and Jaljale (4,000 m). This method required establishing a transect line. Sample points were located by pacing the appropriate distances from the point of origin at a transect line. To determine distribution and quantity of plant carbon and soil organic carbon (SOC), 45 sample points were established and 15 points were sampled from each study site. Total soil carbon was estimated as follows: 17.65 t/ha at Milke, 17.27 t/ha at Gorujure and 28.33 t/ha at Jaljale. Similarly, total vegetation carbon was estimated 22.68 t/ha at Milke, 29.79 t/ha at Gorujure and 42.54 t/ha at Jaljale. Highest elevation study site with least external disturbance (Jaljale area) had high storage of carbon in both cases vegetation and soil. 展开更多
关键词 RANGELANDS altitudinal gradients total soil carbon.
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Facile electrodeposition of 3D concentration-gradient Ni-Co hydroxide nanostructures on nickel foam as high performance electrodes for asymmetric supercapacitors 被引量:9
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作者 Mingyang Yang Hua Cheng +10 位作者 Yingying Gu Zhifang Sun Jing Hu Lujie Cao Fucong Lv Minchan Li Wenxi Wang Zhenyu Wang Shaofei Wu Hongtao Liu Zhouguang Lu 《Nano Research》 SCIE EI CAS CSCD 2015年第8期2744-2754,共11页
Novel three-dimensional (3D) concentration-gradient Ni-Co hydroxide nanostructures (3DCGNC) have been directly grown on nickel foam by a facile stepwise electrochemical deposition method and intensively investigat... Novel three-dimensional (3D) concentration-gradient Ni-Co hydroxide nanostructures (3DCGNC) have been directly grown on nickel foam by a facile stepwise electrochemical deposition method and intensively investigated as binder- and conductor-free electrode for supercapacitors. Based on a three- electrode electrochemical characterization technique, the obtained 3DCGNC electrodes demonstrated a high specific capacitance of 1,760 F·g^-1 and a remarkable rate capability whereby more than 62.5% capacitance was retained when the current density was raised from 1 to 100 A·g^-1. More importantly, asymmetric supercapacitors were assembled by using the obtained 3DCGNC as the cathode and Ketjenblack as a conventional activated carbon anode. The fabricated asymmetric supercapacitors exhibited very promising electrochemical performances with an excellent combination of high energy density of 103.0 Wh·kg^-1 at a power density of 3.0 kW·kg^-1, and excellent rate capability-energy densities of about 70.4 and 26.0 Wh·kg^-1 were achieved when the average power densities were increased to 26.2 and 133.4 kW·kg^-1, respectively. Moreover, an extremely stable cycling life with only 2.7% capacitance loss after 20,000 cycles at a current density of 5 A·g^-1 was achieved, which compares very well with the traditional doublelayer supercapacitors. 展开更多
关键词 ELECTRODEPOSITION concentration-gradient nickel cobalt hydroxides SUPERCAPACITORS
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Soil Microbiological Activity and Carbon Dynamics in the Current Climate Change Scenarios:A Review 被引量:13
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作者 Javid A.SOFI Aabid H.LONE +5 位作者 Mumtaz A.GANIE Naseer A.DAR Sajad A.BHAT Malik MUKHTAR Mohd Ashraf DAR Shazia RAMZAN 《Pedosphere》 SCIE CAS CSCD 2016年第5期577-591,共15页
Microbial activities are affected by a myriad of factors with end points involved in nutrient cycling and carbon sequestration issues.Because of their prominent role in the global carbon balance and their possible rol... Microbial activities are affected by a myriad of factors with end points involved in nutrient cycling and carbon sequestration issues.Because of their prominent role in the global carbon balance and their possible role in carbon sequestration, soil microbes are very important organisms in relation to global climate changes. This review focuses mainly on the responses of soil microbes to climate changes and subsequent effects on soil carbon dynamics. An overview table regarding extracellular enzyme activities(EAA) with all relevant literature data summarizes the effects of different ecosystems under various experimental treatments on EAA. Increasing temperature, altered soil moisture regimes, and elevated carbon dioxide significantly affect directly or indirectly soil microbial activities.High temperature regimes can increase the microbial activities which can provide positive feedback to climate change, whereas lower moisture condition in pedosystem can negate the increase, although the interactive effects still remain unanswered. Shifts in soil microbial community in response to climate change have been determined by gene probing, phospholipid fatty acid analysis(PLFA),terminal restriction length polymorphism(TRFLP), and denaturing gradient gel electrophoresis(DGGE), but in a recent investigations,omic technological interventions have enabled determination of the shift in soil microbe community at a taxa level, which can provide very important inputs for modeling C sequestration process. The intricacy and diversity of the soil microbial population and how it responds to climate change are big challenges, but new molecular and stable isotope probing tools are being developed for linking fluctuations in microbial diversity to ecosystem function. 展开更多
关键词 carbon cycling carbon dioxide carbon exchange carbon sequestration microbe community soil enzymes soil moisture soil temperature
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