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41.
中国低硒带生态环境中硒的环境行为研究进展   总被引:22,自引:0,他引:22  
王子健 《环境化学》1993,12(3):237-243
本文综述了目前与低硒带硒生物地球化学循环有关的研究结果。从这些研究中可以看出,低硒带的形成主要由表层土壤对低硒母质层的继承性,演化趋势主要决定于降水输入和淋溶流失二个自然过程的相对通量及土壤对硒的保留程度,后者在很大程度上依赖于土壤铁锰氧化物含量,土壤中硒的挥发损失可能并不重要。土壤-植物系统中硒的小循环中,环境腐植酸物质对土壤硒的环境行为和生物有效性产生了显著影响。  相似文献   
42.
垃圾渗滤液污染羽在地下环境中的分带现象研究   总被引:21,自引:14,他引:7  
董军  赵勇胜  韩融  刘莹莹  李志斌  宗芳 《环境科学》2006,27(9):1901-1905
通过土柱实验研究垃圾渗滤液污染物在地下环境中降解的生物地球化学作用和分带现象,并对污染前后土壤中的Fe3+、Fe2+、氧化容量(OXC)和还原容量(RDC)等的变化进行分析.结果表明,垃圾渗滤液污染羽中出现了4个顺序氧化还原带,微生物在每个带所利用的最终电子受体是不同的,分别为CO2、Fe3+、NO3-和O2,相应地依次称为产甲烷带、铁还原带、NO相似文献   
43.
Selenium(Se) is an essential micronutrient for lives. Indigenous microbial communities play an important role on Se geochemistry in soils. In this study, the microbial community composition and functions of 53 soil samples were investigated using high-throughput sequencing. Samples were divided into 3 groups with different farming types based on the measured geochemical parameters and microbial functional structures. Results indicated that putative Se related bacteria Bacillus, Dyella, Paenibaci...  相似文献   
44.
Surface water concentrations of dissolved organic carbon ([DOC]) are changing throughout the northern hemisphere due to changes in climate, land use and acid deposition. However, the relative importance of these drivers is unclear. Here, we use the Integrated Catchments model for Carbon (INCA-C) to simulate long-term (1996–2008) streamwater [DOC] at the four Swedish integrated monitoring (IM) sites. These are unmanaged headwater catchments with old-growth forests and no major changes in land use. Daily, seasonal and long-term variations in streamwater [DOC] driven by runoff, seasonal temperature and atmospheric sulfate (SO4 2−) deposition were observed at all sites. Using INCA-C, it was possible to reproduce observed patterns of variability in streamwater [DOC] at the four IM sites. Runoff was found to be the main short-term control on [DOC]. Seasonal patterns in [DOC] were controlled primarily by soil temperature. Measured SO4 2− deposition explained some of the long-term [DOC] variability at all sites.  相似文献   
45.
The distribution of chemical elements in plants was studied in natural and technogenic ecosystems of the southern Baikal region. Basic statistical parameters characterizing the contents of a wide range of elements in different soil horizons and plants of the region and the “world land” (average for all the continents) were compared. On the basis of data on the distribution of chemical elements in the soil-plant system, groups of elements differing in the coeffient of biological absorption (C b) were distinguished. Evidence of antagonism between the main biophilous elements and heavy metals accumulating in plants was obtained. Interrelations of K and Na, which play an important role in the regulation of osmotic processes in plants, were analyzed. The phenomenon of potassium replacement by sodium in plants of technogenic ecosystems may serve as a criterion for assessing the phytotoxicity and environmental quality.  相似文献   
46.
九龙江口湿地表层沉积物氮的形态分布特征   总被引:5,自引:1,他引:4  
利用连续提取法对九龙江口湿地表层沉积物中不同形态氮含量进行了测定,探究了滨海湿地表层沉积物中氮形态及其与沉积物理化性质的相关关系.结果表明:九龙江口滨海湿地沉积物中w(TN)达到12.67 mg/g,可转化态氮(EFN)质量分数〔w(EFN)〕占w(TN)的18.78%.有机硫化物结合态氮(OSFN)和碳酸盐结合态氮(CFN)是九龙江口滨海湿地沉积物EFN的主要形态,w(OSFN)和w(CFN)分别占w(EFN)的37.82%和36.97%.不同潮水位和植被类型沉积物中的w(TN)和w(EFN)呈现差异性,表现为高潮位>中潮位>低潮位,红树林>其他植被类型(北部互花米草、红树与互花米草混交和南部互花米草)>光滩.w(CFN),w(OSFN),w(EFN)和w(TN)存在显著相关关系,表明w(TN)和w(EFN)的增加主要来源于OSFN和CFN.w(OSFN),w(EFN)和w(TN)与w(OM)存在显著相关关系,表明河口滨海湿地有机质的累积、矿化,可增加沉积物中的w(OSFN),w(EFN)和w(TN),从而对滨海湿地氮生物地球化学过程产生重要影响.   相似文献   
47.
Abstract: In 2006, we collected flow, sediment, and phosphorus (P) data at stream locations upstream and downstream of a small degraded wetland in south‐central Wisconsin traversed by a stream draining a predominantly agricultural watershed. The amount of sediment that left the wetland in the two largest storms, which accounted for 96% of the exported sediment during the observation period, was twice the amount that entered the wetland, even though only 50% of the wetland had been inundated. This apparently anomalous result is due to erosion of sediment that had accumulated in the low‐gradient channel and to the role of drainage ditches, which trapped sediment during the wetland‐filling phase. In the case of total P, the inflow to the wetland approximately equaled the outflow, although the wetland sequestered 30% of the incoming dissolved reactive P. The discrepancy is almost certainly due to net export of sediment. Many wetlands in the glaciated midwestern United States are ditched and traversed by low‐gradient channels draining predominantly agricultural areas, so the processes observed in this wetland are likely to be common in that region. Knowledge of this behavior presents opportunities to improve water quality in this and similar regions.  相似文献   
48.
Little is known about the impact of agricultural legacy on subsurface biogeochemical processes in the years following restoration of riparian wetlands (WLs). More knowledge is also needed on the relative importance of seasons, precipitation events, and inputs of water and nutrients driving nitrogen (N), phosphorus (P), sulfur (S), and greenhouse gas (GHG) (N2O, CO2, CH4) dynamics in these systems. This investigation of a riparian zone comprising a restored WL area and a nonrestored well‐drained alluvium (AL) area in the United States Midwest revealed that despite successful hydrological restoration a decade earlier, biogeochemical conditions in the WL area remained less anoxic than in natural WLs, and not significantly different from those in the AL area. No significant differences in N, P, S, and C compound concentrations or fluxes were observed between the AL and WL areas. Over the duration of the study, nitrate (NO3?) and soluble reactive phosphorus appeared to be primarily driven by hillslope contributions. Ammonium (NH4+), sulfate (SO42?), and CO2 responded strongly to seasonal changes in biogeochemical conditions in the riparian zone, while N2O and CH4 fluxes were most influenced by large rewetting events. Overall, our results challenge overly simplistic assumptions derived from direct interpretation of redox thermodynamics, and show complex patterns of solutes and GHGs at the riparian zone scale.  相似文献   
49.
The biogeochemical cycle of organic carbon in Russian terrestrial ecosystems in 1990 is considered. Its components have been estimated as follows: net primary production, 4354 million metric tons of carbon (Mt C); annual amount of plant detritus, 3223 Mt C; heterotrophic soil respiration, 3214 Mt C; biomass utilization, 680 Mt C; damage to vegetation caused by fire and pests, 140 Mt C; and removal by surface and ground waters, 79 Mt C. Anthropogenically regulated fluxes of organic carbon (820 Mt C) are comparable to its amount involved in the natural cycle.  相似文献   
50.
ABSTRACT: Human induced long-term changes in precipitation and stream chemistry have been observed in eastern North America and Europe, but few long-term studies have been conducted in coastal western North America. The objectives of this research were to determine: (1) time trends in precipitation and stream chemistry in a pristine old-growth forest watershed, and (2) seasonal patterns in precipitation and stream chemistry. It was conducted in 58 ha West Twin Creek Watershed, Hoh River Valley, Olympic National Park, Washington from 1984 to 1993. Vegetation consists of old-growth forest, with western hemlock, Douglas-fir, western redcedar, Pacific silver fir, and Sitka spruce being the dominant tree species. Annual precipitation varied from 2336 to 4518 mm during the study period with the majority of the rain falling between October and May. Chemistry of precipitation was strongly dominated by oceanic influences with Na and Cl being the dominant ions. The chemistry of the stream was influenced by bedrock weathering and was dominated by Ca, HCO3, and SO4 and was not strongly related to precipitation chemistry. The pH of precipitation averaged 5.3 over time and ranged from 4.3 to 7.1, while the stream pH averaged 7.5 and ranged from 5.5 to 9.0. There were few long-term trends in the chemical constituents of bulk precipitation or stream water with the exception of a slight decrease in NO3 in precipitation and an increase of SO4 in stream water. A trend of decreasing concentrations of Ca, Mg and Na in precipitation also occurred. There were no significant seasonal patterns in precipitation although the highest SO4 concentrations usually occurred in late spring and summer perhaps due marine algal activity. Strong seasonal trends occurred in concentrations of HCO3, SO4, Ca, Mg, and Na in stream water resulting from weathering and stream flow patterns, with highest ion concentrations occurring just before the onset of the rainy season. Pulses of NO3 in the stream were observed during fall and early winter resulting from the release of NO3 which had accumulated in soils or sediments.  相似文献   
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