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841.
Caraballo MA Macías F Rötting TS Nieto JM Ayora C 《Environmental pollution (Barking, Essex : 1987)》2011,159(12):3613-3619
During 20 months of proper operation the full scale passive treatment in Mina Esperanza (SW Spain) produced around 100 mg/L of ferric iron in the aeration cascades, removing an average net acidity up to 1500 mg/L as CaCO3 and not having any significant clogging problem. Complete Al, As, Cd, Cr, Cu, Ti and V removal from the water was accomplished through almost the entire operation time while Fe removal ranged between 170 and 620 mg/L. The system operated at a mean inflow rate of 43 m3/day achieving an acid load reduction of 597 g·(m2 day)−1, more than 10 times higher than the generally accepted 40 g·(m2 day)−1 value commonly used as a passive treatment system designing criteria. The high performance achieved by the passive treatment system at Mina Esperanza demonstrates that this innovative treatment design is a simple, efficient and long lasting remediation option to treat highly polluted acid mine drainage. 相似文献
842.
Rapid changes to the Arctic hydrological cycle challenge both our process understanding and our ability to find appropriate
adaptation strategies. We have investigated the relevance and accuracy development of climate change projections for assessment
of water cycle changes in major Arctic drainage basins. Results show relatively good agreement of climate model projections
with observed temperature changes, but high model inaccuracy relative to available observation data for precipitation changes.
Direct observations further show systematically larger (smaller) runoff than precipitation increases (decreases). This result
is partly attributable to uncertainties and systematic bias in precipitation observations, but still indicates that some of
the observed increase in Arctic river runoff is due to water storage changes, for example melting permafrost and/or groundwater
storage changes, within the drainage basins. Such causes of runoff change affect sea level, in addition to ocean salinity,
and inland water resources, ecosystems, and infrastructure. Process-based hydrological modeling and observations, which can
resolve changes in evapotranspiration, and groundwater and permafrost storage at and below river basin scales, are needed
in order to accurately interpret and translate climate-driven precipitation changes to changes in freshwater cycling and runoff.
In contrast to this need, our results show that the density of Arctic runoff monitoring has become increasingly biased and
less relevant by decreasing most and being lowest in river basins with the largest expected climatic changes. 相似文献
843.
A novel acidophile community populating waste ore deposits at an acid mine drainage site 总被引:1,自引:0,他引:1
Waste ore samples (pH 3.0) were collected at an acid mine drainage (AMD) site in Anhui, China. The present acidophillc microbial community in the waste ore was studied with 16S rRNA gene clone library and denaturing gradient gel electrophoresis (DGGE). Eighteen different clones were identified and affiliated withActinobacteria, low G + C Gram-positives, Thermomicrobia, Acidobacteria, Proteobacteria, candidate division TM7, and Planctomycetes. Phylogenetic analysis of 16S rRNA gene sequences revealed a diversity of acidophiles in the samples that were mostly novel. It is unexpected that the moderately thermophilic acidophiles were abundant in the acidic ecosystem and may play a great role in the generation of AMD. The result of DGGE was consistent with that of clone library analysis. These findings help in the better understanding of the generation mechanism of AMD and in developing a more efficient method to control AMD. 相似文献
844.
Marcello RR Galato S Peterson M Riella HG Bernardin AM 《Journal of environmental management》2008,88(4):1280-1284
Continuous industrial development increases energy consumption and, consequently, the consumption of fossil fuels. Coal mineral has been used in Brazil as a solid fuel for thermoelectric generators for several years. However, coal exploitation affects the environment intensely, mainly because Brazilian coal contains excess ash and pyrite (iron disulfide). According to the local coal industry syndicate, the average annual coal run per mine is 6 million ton/year; 3.5 million ton/year are rejected and disposed of in landfills. Besides pyrite, Brazilian coal contains Mn, Fe, Cu, Pb, Zn, Ge, Se, and Co. Additionally, the water used for coal beneficiation causes pyrite oxidation, forming an acid mine drainage (AMD). This drainage solubilizes the metals, transporting them into the environment, making treatment a requirement. This work deals with the use of sedimented residue from treated coal mine drainage sludge to obtain inorganic pigments that could be used in the ceramic industry. The residue was dried, ground and calcined ( approximately 1250 degrees C). The calcined pigment was then micronized (D(50) approximately 2mum). Chemical (XRF), thermal (DTA/TG), particle size (laser), and mineralogical (XRD) analyses were carried out on the residue. After calcination and micronization, mineralogical analyses (XRD) were used to determine the pigment structure at 1250 degrees C. Finally, the pigments were mixed with transparent glaze and fired in a laboratory roller kiln (1130 degrees C, 5min). The results were promising, showing that brown colors can be obtained with pigments made by residues. 相似文献
845.
高抽巷现已被广泛用于治理工作面采动裂隙带及采空区瓦斯,而现场实际实施存在一定经验性,影响了高抽巷的瓦斯治理效果。针对现场高抽巷抽采流量低、工作面瓦斯易超限等问题,为提高高抽巷的瓦斯抽采效果,以余吾煤业为例,通过理论计算、现场考察、数值模拟、抽采效果分析,系统地研究了综放面高抽巷抽采瓦斯的布置层位。研究结果表明:综放面顶板冒落带高度约为18 m,裂隙带高度约为40 m,同时结合现场抽采效果分析,高抽巷宜布置在距煤层顶板40 m,与回风顺槽平距30 m处。研究结论对于综放面高抽巷的合理布置、提高瓦斯抽采效果具有一定的借鉴意义。 相似文献
846.
A Hydrologic Drying Bias in Water‐Resource Impact Analyses of Anthropogenic Climate Change
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P.C.D. Milly Krista A. Dunne 《Journal of the American Water Resources Association》2017,53(4):822-838
For water‐resource planning, sensitivity of freshwater availability to anthropogenic climate change (ACC) often is analyzed with “offline” hydrologic models that use precipitation and potential evapotranspiration (Ep) as inputs. Because Ep is not a climate‐model output, an intermediary model of Ep must be introduced to connect the climate model to the hydrologic model. Several Ep methods are used. The suitability of each can be assessed by noting a credible Ep method for offline analyses should be able to reproduce climate models’ ACC‐driven changes in actual evapotranspiration in regions and seasons of negligible water stress (Ew). We quantified this ability for seven commonly used Ep methods and for a simple proportionality with available energy (“energy‐only” method). With the exception of the energy‐only method, all methods tend to overestimate substantially the increase in Ep associated with ACC. In an offline hydrologic model, the Ep‐change biases produce excessive increases in actual evapotranspiration (E), whether the system experiences water stress or not, and thence strong negative biases in runoff change, as compared to hydrologic fluxes in the driving climate models. The runoff biases are comparable in magnitude to the ACC‐induced runoff changes themselves. These results suggest future hydrologic drying (wetting) trends likely are being systematically and substantially overestimated (underestimated) in many water‐resource impact analyses. 相似文献
847.
Assessing Satellite and Ground‐Based Potential Evapotranspiration for Hydrologic Applications in the Colorado River Basin
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Muhammad G. Barik Terri S. Hogue Kristie J. Franz Alicia M. Kinoshita 《Journal of the American Water Resources Association》2016,52(1):48-66
This study evaluates a remotely sensed and two ground‐based potential evapotranspiration (PET) products for hydrologic application in the Upper Colorado River Basin (UCRB). The remotely sensed Moderate Resolution Imaging Spectroradiometer product (MODIS‐PET) is a continuous, daily time series with 250 m resolution derived using the Priestley‐Taylor (P‐T) equation. The MODIS‐PET is evaluated against regional flux tower data as well as a synthetic pan product (Epan; 0.125°, daily) derived from the North American Land Data Assimilation System (NLDAS) and a Hargreaves PET derived from DAYMET variables (DAYMET‐PET; 1 km, daily). Compared to point‐scale PET computed using regional flux tower data, the MODIS‐PET had lower errors, with RMSE values ranging from 2.24 to 2.85 mm/day. Epan RMSE values ranged from 3.70 to 3.76 mm/day and DAYMET‐PET RMSE values ranged from 3.55 to 4.58 mm/day. Further investigation showed biases in temperature and radiation data contribute to uncertainty in the MODIS‐PET values, while bias in NLDAS temperature, downward shortwave (SW↓), and downward longwave (LW↓) propagate in the Epan estimates. Larger discrepancies between methods were observed in the warmer, drier regions of the UCRB, however, the MODIS‐PET was more responsive to landcover transitions and better captured basin heterogeneity. Results indicate the satellite‐based MODIS product can serve as a viable option for obtaining spatial PET values across the UCRB. 相似文献
848.
Jessica A. Salo David M. Theobald Thomas C. Brown 《Journal of the American Water Resources Association》2016,52(3):632-647
Riparian zones in semi‐arid, mountainous regions provide a disproportionate amount of the available wildlife habitat and ecosystem services. Despite their importance, there is little guidance on the best way to map riparian zones for broad spatial extents (e.g., large watersheds) when detailed maps from field data or high‐resolution imagery and terrain data are not available. Using well‐established accuracy metrics (e.g., kappa, precision, computational complexity), we evaluated eight methods commonly used to map riparian zones. Focusing on a semi‐arid, mountainous watershed, we found that the most accurate and robust method for mapping riparian zones combines data on upstream drainage area and valley topography. That method performed best regardless of stream order, and was most effective when implemented with fine resolution topographic and stream line data. Other commonly used methods to model riparian zones, such as those based on fixed‐width buffers, yielded inaccurate results. We recommend that until very‐high resolution (<1 m) elevation data are available at broad extents, models of riparian zones for semi‐arid mountainous regions should incorporate drainage area, valley topography, and quantify uncertainty. 相似文献
849.
Characterizing Runoff and Water Yield for Headwater Catchments in the Southern Sierra Nevada
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Mohammad Safeeq Carolyn T. Hunsaker 《Journal of the American Water Resources Association》2016,52(6):1327-1346
In a Mediterranean climate where much of the precipitation falls during winter, snowpacks serve as the primary source of dry season runoff. Increased warming has led to significant changes in hydrology of the western United States. An important question in this context is how to best manage forested catchments for water and other ecosystem services? Answering this basic question requires detailed understanding of hydrologic functioning of these catchments. Here, we depict the differences in hydrologic response of 10 catchments. Size of the study catchments ranges from 50 to 475 ha, and they span between 1,782 and 2,373 m elevation in the rain‐snow transitional zone. Mean annual streamflow ranged from 281 to 408 mm in the low elevation Providence and 436 to 656 mm in the high elevation Bull catchments, resulting in a 49 mm streamflow increase per 100 m (R2 = 0.79) elevation gain, despite similar precipitation across the 10 catchments. Although high elevation Bull catchments received significantly more precipitation as snow and thus experienced a delayed melt, this increase in streamflow with elevation was mainly due to a reduction in evapotranspiration (ET) with elevation (45 mm/100 m, R2 = 0.65). The reduction in ET was attributed to decline in vegetation density, growing season, and atmospheric demand with increasing elevation. These findings suggest changes in streamflow in response to climate warming may likely depend on how vegetation responds to those changes in climate. 相似文献
850.
三峡水库泄水期香溪河库湾营养盐动态及干流逆向影响 总被引:10,自引:0,他引:10
为了研究水库干流对支流库湾营养盐动态的影响,于2009年春季三峡水库汛前泄水期,通过监测分析了库湾水流特点及叶绿素a、总氮、总磷和溶解性硅酸盐的时空动态。研究发现:三峡水库汛前泄水期,库湾水体表现为分层异向流动,干流水体以异重流形式倒灌入库湾;特定的水流特性为泄水期库湾营养物质运移提供了水动力基础,水库干流对库湾营养盐的补给及水华暴发范围有明显逆向作用;受干流影响,氮和硅自河口至回水末端呈递减趋势,磷主要受上游来水影响,空间分布趋势与氮、硅相反;叶绿素a浓度峰值向上游移动,水华范围向上游收缩,河口处叶绿素a浓度的时间均值明显低于回水末端,表明三峡水库泄水期香溪河库湾下游水体水华受到干流逆向影响的抑制。 相似文献