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201.
Sulfates are a main constituent of aerosols, which sulfate aerosols, it is necessary to determine what can cause various environmental problems sulfate ions are contained in these aerosols In the evaluation of the influence of In this study, sulfur K-edge XANES was used to determine sulfate species present in size-fractionated aerosol particles based on the post-edge structure after the main absorption peak in the XANES region. Aerosol samples were collected as part of the Japan-China joint project, "Asian Dust Experiment on Climate Impact" using a low-volume Andersen-type air sampler. XANES was measured at Beamline BL-9A at Photon Factory, Japan. A comparison of the XANES spectra of reference sulfate materials and aerosol samples collected in Tsukuba in Japan clearly showed that (NH4)2SO4 was the main sulfur species in particles with a smaller diameter and gypsum was the main sulfur species in particles with a larger diameter. A simulation of the XANES spectra by reference materials allows us to obtain the quantitative mixing ratios of the different sulfate species present in the aerosol samples. The presence of minor sulfur species other than (NH4)2SO4 and gypsum at the surface of mineral aerosols is suggested in our simulations and by a surface-sensitive conversion electron/He-ion yield XANES. In the absence of a contribution from a large dust event, the mole concentration of gypsum in the mineral aerosol fraction determined by XANES is similar to that of Ca which is determined independently using ion chromatography. This shows that the Ca and sulfate in the mineral aerosols are present only as gypsum. Considering that calcite is the main Ca mineral in the original material arising from an arid and semi-arid area in China, it is strongly suggested that gypsum is formed in aerosol during its long-range transportation by a reaction between calcite and sulfate ions.  相似文献   
202.
In southern Rocky Mountains, catchments characterized by acidic, metalliferous waters that are relatively unaffected by human activity usually occur within areas that have active or historical mining activity. The US Geological Survey has utilized these mineralized but unmined catchments to constrain geochemical processes that control the surface- and ground-water chemistry associated with near surface acid weathering as well as to estimate premining conditions. Study areas include the upper Animas River watershed, Lake City, Mt. Emmons, and Montezuma in Colorado and Questa in New Mexico. Although host-rock lithologies range from Precambrian gneisses to Cretaceous sedimentary units to Tertiary volcanic complexes, mineralization is Tertiary in age and associated with intermediate to felsic composition, porphyritic plutons. Pyrite is ubiquitous. Variability of metal concentrations in water is caused by two main factors: mineralogy and hydrology. Parameters that potentially affect water chemistry include: host-rock lithology, intensity of hydrothermal alteration, sulfide mineralogy and chemistry, gangue mineralogy, length of flow path, precipitation, evaporation, and redox conditions. Springs and headwater streams have pH values as low as 2.5, sulfate up to 3700 mg/L and high dissolved metal concentrations (for example: Al up to 170 mg/L; Fe up to 250 mg/L; Cu up to 3.5 mg/L and Zn up to 14 mg/L). With the exception of evaporative waters, the lowest pH values and highest Fe and Al concentrations occur in water draining the most intense hydrothermally altered areas consisting of the mineral assemblage quartz-sericite-pyrite. Stream beds tend to be coated with iron floc, and some reaches are underlain by ferricrete. When iron-rich ground water interacts with oxygenated waters in the stream or hyporheic zone, ferrous iron is oxidized to ferric iron, which is less soluble, leading to the precipitation of iron oxyhydroxides.  相似文献   
203.
204.
Geochemical cycling has received wide attention due to the need to understand the pathways of pollutants through our present environment. In this regard the Yangtze River plays a significant role in putting those pollutants into the East China SeafWorld Oceans. The Yangtze River is of high sedimentation rate and water discharge. The watershed covers variable climate regions from temperate to subtropical and from semiarid to humid. Twenty three (23) sampling locations at the estuary have been selected for understanding the dynamic relationships. The elements (Cl^-, SO4^2-, Na^+, K^+, and Ca^2+) show conservative behavior during mixing of fresh water with saline water whereas Mg^2+, Mn^2+ show a non-conservative pattern . The relationships between Na^+/SO4^2- and Cl^-/SO4^2- molar ratios show a mixing of more than two water sources.  相似文献   
205.
Although hydrotalcite, or layered double hydroxides (LDHs), is not a common mineral, it is an important material that can be easily synthesized in laboratory. In this study, structural evolvement and BET surface area changes of heat treated Mg/AI-LDH is evaluated by XRD, TEM and N2-BET analyses. The results indicate that the magnesium-aluminum LDH with carbonate as interlayer anion, periclase-like oxides was formed at temperatures of 400-800℃. Meanwhile, 2-3 nanometer mesoporous were formed during decomposition of LDH. However, the heat treated samples still preserve the morphology of the original LDH plates. Periclase-like formed from LDH heat treatment may re-hydrolyze and recover the structure of LDH. However, crystallinity of the recovered LDH is lower than that of the original LDH. This heat treatment will result in formation of (Mg, Al)-oxide nano-crystals and nanopores among the nano-crystals. When heating temperature exceeds 1000, the periclase-like (Mg, Al)-oxide is transformed into a composite with periclase (MgO) and spinel phases. The periclase can be re-hydrolyzed and dissolved in HCl solution. After acid treatment, the sample with a high surface area is composed of spinel nano-crystals and nanopores among them. Our results will provide a new and economic way to synthesize mesoporous materials through pathways of phase transformation of precursor materials with different composition.  相似文献   
206.
地理教学中探究性问题情境的创设   总被引:1,自引:0,他引:1  
郑云萍 《福建地理》2006,21(1):58-60
新一轮的课程改革对地理学习过程提出了新的要求。顺应课改要求,本文就地理教学中如何创设探究性问题情境作了初步的探讨,认为创设探究性问题情境应符合“新颖性、开放性、启发性”等要求,根据不同的教材内容、不同的学生情况,应有不同的教学方式,以求取得最佳成效。  相似文献   
207.
(六)寨-(水)任二级公路施工后,滑坡、坍塌、崩塌现象甚多,边坡治理迫在眉睫。桩锚支挡体系是一项主动性加固边坡技术,具结构轻巧、用材合理、施工简单、工期短、费用低等特点。论文通过其在(六)寨-(水)任二级公路K56段高边坡治理工程中的应用,对桩锚支挡体系的设计及施工要点作了介绍。  相似文献   
208.
“12319”城建服务热线和数字化城市管理,是建设部大力倡导和推进加强城市管理的重要抓手,近年来,上海在全力推进“枢纽型,功能性、网络化”基础设施建设,不断增强城市功能,改善城市形象的同时,积极探索“12319”服务热线与数字化管理工作的结合,努力提高城市管理水平。  相似文献   
209.
我国煤炭资源开发利用中某些问题的探讨   总被引:3,自引:0,他引:3  
针对我国煤炭资源开发利用中存在的诸如煤炭资源的低效率应用、无序开采、生态环境恶化等问题,指出了我国煤炭资源管理法规中存在的问题,提出了加强煤炭资源开发管理、构建煤炭循环经济体系、加大安全投入、加强煤炭矿区环境的治理和保护、健全有偿使用资源法规制度等对策。  相似文献   
210.
四川盆地南部志留系碳酸盐泥丘储层发育特征   总被引:1,自引:0,他引:1  
灰泥丘主要发育在台缘斜坡及台地内部水体比较安静的缓坡环境中,缓坡环境和较弱的水动力条件是形成灰泥丘的两个重要条件。通常情况下礁、丘不相互共生。灰泥丘主要由微生物(蓝藻及其它微观藻类、细菌等)建造的,或者以微生物为主、并有其它多门类生物(珊瑚、苔藓虫、层孔虫、海绵、棘皮、头足、腕足、多门类钙藻等)参与建造的,是主要由灰泥组成、具有穹形特征的碳酸盐岩建隆。其中,灰泥是指粒径小于0.01mm或0.005mm的碳酸盐矿物,而非陆源粘土矿物,是热带、亚热带静水环境中沉积的特有产物之一,并主要由微生物通过新陈代谢、光合作用胶结固化…  相似文献   
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