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51.
This study investigates the retention of heavy metals in secondary precipitates from a sulfidic mine rock dump and underlying podzolic soils by means of mineralogical and chemical extraction methods. The rock dump, which is at least 50 years old, consists of a 5–10-cm-thick leached zone and an underlying 110–115-cm-thick accumulation zone. Optical microscopy and electron microprobe analyses confirm that pyrrhotite weathering has proceeded much further in the leached horizon relative to the accumulation horizon. The weathering of sulfides in the leached zone has resulted in the migration of most heavy metals to the accumulation zone or underlying soils, where they are retained in more stable phases such as secondary ferric minerals, including goethite and jarosite. Some metals are temporarily retained in hydrated ferrous sulfates (e.g., melanterite, rozenite). Received: 28 October 1996 · Accepted: 24 February 1997  相似文献   
52.
Geochemical modeling of coal mine drainage, Summit County, Ohio   总被引:4,自引:1,他引:4  
A. Foos 《Environmental Geology》1997,31(3-4):205-210
 Geochemical modeling was used to investigate downstream changes in coal mine drainage at Silver Creek Metro-park, Summit County, Ohio. A simple mixing model identified the components that are undergoing conservative transport (Cl, PO4 3–, Ca2+, K+, Mg2+ and Na+) and those undergoing reactive transport (DO, HCO3 , SO4 2–, Fe2+, Mn2+ and Si). Fe2+ is removed by precipitation of amorphous iron-hydroxide. Mn2+ are removed along with Fe2+ by adsorption onto surfaces of iron-hydroxides. DO increases downstream due to absorption from the atmosphere. The HCO3 concentration increases downstream as a result of oxidation of organic material. The rate of Fe2+ removal from the mine drainage was estimated from the linear relationship between Fe+2 concentration and downstream distance to be 0.126 mg/s. Results of this study can be used to improve the design of aerobic wetlands used to treat acid mine drainage. Received: 4 June 1996 · Accepted: 17 September 1996  相似文献   
53.
以广珠准高速铁路软土路堤试验粉喷桩处理段的变形及孔压测试数据为基础 ,对用粉喷桩处理深厚软土地基的沉降、基底横向差异沉降、边桩变形、孔压分布规律及固结进行了分析  相似文献   
54.
天山北麓玛纳斯河流域山问洼地位于低山丘陵区山前坳陷带的南部,该区褶皱、断裂、近NS向次级张性断裂与平移构造以及山间洼地的第四系沉积物发育.山区地表水流经该段入渗,加之南部中山区的侧向补给形成山间洼地地下水库.正确认识玛纳斯河流域山间洼地地下水库的形成机理并对其进行合理的开发利用,对解决玛纳斯河流域季节性缺水及枯水年缺水有重要意义.笔应用构造及地表水由山区水站至山口渠首站实测流量损失的研究成果,揭示了玛纳斯河流域山间洼地地下水库的形成及调蓄作用,并概算了补给量,为今后开发利用山间洼地地下水库水资源提供了依据.  相似文献   
55.
沉降-时间曲线呈“S”型的证明   总被引:13,自引:5,他引:13  
从一维固结理论出发,严格证明了在线性加载或近似线性加载情况下(这和工程实际加载相类似),沉降-时间曲线呈“S”型。  相似文献   
56.
考虑渗流力时对太沙基一维固结理论的修正   总被引:3,自引:2,他引:3  
吴雄志 《岩土力学》2004,25(8):1279-1282
考虑渗流力的作用,对太沙基一维固结理论进行了修正,给出了向上及向下渗流时固结度的表达式,并分析了固结过程中渗流应力的变化规律。结果表明:渗流力对固结度的影响较大,特别是在时间因素Tv=0.1附近,是否考虑渗流力的影响将导致固结度的差值达30 %,因而渗流力对固结度的影响是不可忽略的。  相似文献   
57.
考虑应力水平的软土固结系数计算与试验研究   总被引:1,自引:0,他引:1  
余闯  刘松玉 《岩土力学》2004,25(Z2):103-107
在固结度计算中通常将固结系数视为常数,实际上并非如此.通过研究软土固结系数在压缩过程中随应力水平变化的规律,推导出正常固结和超固结状态下固结系数与有效应力之间的表达式.在正常固结状态下,当应力水平小于在前期固结压力时,固结系数随应力水平的增加而增加;当超过前期固结压力后,固结系数随应力水平的增加而减小;在超固结状态下,固结系数随应力水平的增加而增加,在一定程度后趋于平稳.室内试验结果进一步说明了和验证固结系数这一特点.推导的固结系数与固结应力水平关系表达式是可行的,其计算值与试验结果的变化趋势一致,大小基本吻合,将其用于计算变形速率和固结度中,可提高准确性.  相似文献   
58.
承压水减压引起的沉降分析   总被引:7,自引:0,他引:7  
骆冠勇  潘泓  曹洪  尹小玲 《岩土力学》2004,25(Z2):196-200
由下卧承压水层减压引起的固结沉降计算与一般的由堆载或潜水位下降引起的固结沉降计算不同,本文着重研究了在深厚弱透水层下卧强透水承压层的复杂地质条件下,下卧承压水层减压引起的土中应力变化及周围地表沉降的计算方法;在假定一维竖向固结的条件下推导了减压引起的沉降固结度计算公式,该公式与常规的双向排水固结公式相同,表明排水减压固结与常规的双向排水固结有着相同的效果.最后,将此分析方法应用于潮州供水枢纽工程西溪水闸沉降分析中,实践的结果表明,该方法简单可行,能较好地满足工程要求.  相似文献   
59.
何元斌  李燕 《云南地质》2004,23(2):273-277
通过对深层水泥土搅拌桩的加固机理及复合地基承载力性状的简要分析,根据国家现行规范,结合具体地基处理工程实例,对深层水泥搅拌桩在软土地区地基加固处理中的方案选择、设计、施工及检测中的常见技术要点作初步探讨。  相似文献   
60.
Modeling landscape with high-resolution digital elevation model (DEM) in a geographic information system can provide essential morphological and structural information for modeling surface processes such as geomorphologic process and water systems. This paper introduces several DEM-based spatial analysis processes applied to characterize spatial distribution and their interactions of ground and surface water systems in the Greater Toronto Area (GTA), Canada. The stream networks and drainage basin systems were derived from the DEM with 30 m resolution and the regularities of the surface stream and drainage patterns were modeled from a statistical/multifractal point of view. Together with the elevation and slope of topography, other attributes defmed from modeling the stream system, and drainage networks were used to associate geological, hydrological and topographical features to water flow in river systems and the spatial locations of artesian aquifers in the study area. Stream flow data derived from daily flow measurements recorded at river gauging stations for multi-year period were decomposed into “drainage-area dependent“ and “drainage-area independent“ flow components by two-step “frequency“ and “spatial“ analysis processes. The latter component was further demonstrated to relate most likely to the ground water discharge. An independent analysis was conducted to model the distribution of aquifers with information derived from the records of water wells. The focus was given on quantification of the likelihood of ground water discharge to river and ponds through flowing wells, springs and seepages. It has been shown that the Oak Ridges Moraine (ORM) is a unique glacial deposit that serves as a recharge layer and that the aquifers in the ORM underlain by Hilton Tills and later deposits exposed near the steep slope zone of the ridges of ORM provide significant discharge to the surface water systems (river flow and ponds) through flowing wells, springs and seepages. Various statistics (cross- and auto-correlation coefficients, fractal R/S exponent) were used in conjunction with GIS to demonstrate the influence of land types, topography and geometry of drainage basins on short- and long-term persistence of river flows as well as responding time to precipitation events. The current study has provided not only insight in understanding the interaction of water systems in the GTA, but also a base for further establishment of an on-line GIS system for predicting spatial-temporal changes of river flow and groundwater level in the GTA.  相似文献   
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