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1.
Acidification is considered the most important one of the primary chemical stress factors that impact on freshwater ecosystems. In unpolluted freshwater systems, the primary controls on the degree of acidification are factors such as the geological substrate of the catchment area, the presence of organic acids secreted by vegetation in the river system, and equilibrium exchange of carbon dioxide with the atmosphere. Anthropogenic factors that can impact on the degree of acidification of freshwater systems include agricultural, mining and industrial activities, either through direct runoff into river systems or through deposition of atmospheric pollutants from these sources. The capacity factors alkalinity and acidity, which represent the acid- and base-neutralizing capacity (ANC and BCN) of an aqueous system, have been used as more reliable measures of the acidic character of freshwater systems than pH. Unlike pH, ANC and BNC are not affected by parameters such as temperature and pressure. Therefore, ANC has been employed as a predictor of biological status in critical load assessments. Freshwater systems with ANC's eq/L isμeq/L are considered sensitive to acidification, ANC=0 μbelow 150 commonly used as the predictor for fish species such as trout in lakes, and an eq/L as more realistic for streams. Acid-neutralizing capacity μANC value of 40 (ANC) can be determined by titration with a strong acid to a preselected equivalence point. Alternatively, it can be calculated as the difference between base cations ([BC]) and strong acid anions ([SAA]): ANC=[BC]- [SAA]=[Ca^2+]+[Mg^2+]+[Na^+]+[K^+]-[SO4^2-]-[NO3^-]-[Cl^-] To date, there has been no attempt to establish the ANC of South Africa's freshwater ecosystems or variability therein, despite the fact that long-term water quality monitoring data exist for all the parameters needed to calculate it according to the above equations. As a result, the relationship between the acid neutralizing capacity of freshwater ecosystems in South Africa and biodiversity factors, such as fish status, is unknown. Results of the first comprehensive (country-wide scale) evaluation of the acid neutralizing capacity of river systems in South Africa will be presented. Long-term monitoring data obtained from the Department of Water Affairs and Forestry (DWAF) from most of South Africa's river systems were used to establish geographic and temporal variabilities in ANC. The results show that the Berg and Breede River systems are most susceptible to acidification, and that geological substrate appears to explain most of the geographic variabilities observed.  相似文献   
2.
Bedrock weathering and atmospheric deposition are the two primary sources of base cations (K^+, Na^+, Ca^2+ and Mg^2+) to forest ecosystems. Therefore, the key problem is to understand the relative inputs from these two sources and the cycling in the ecosystem. This study focuses on the effects of acid deposition on cation cycling in a small-forested karstic catchment in Guizhou Province. Sr isotope ratios were used as a tracer for understanding the transport process between the different cation pools: rock, soil, surface water, atmospheric deposition and plant. The samples of wet deposition, total deposition, throughfall, surface and ground waters, vegetation, and soil were monthly collected. The exchangeable Sr^2+ and Ca^2+ in soil samples were extracted by using 1 M ammonium acetate. The leaf-tissue samples were ashed at 550℃, and the residue was digested in ultrapure HClO4 and HNO3. All water samples were filtrated through 0.45 μm aperture filter paper. Base cation concentrations and Sr isotopic composition were analyzed for all the samples. The results show that acid deposition (average pH 4.9) frequently occurred in the studied region. Cation abundance follows an increasing manner from rainwater, throughfall, to surface water or ground water samples, suggesting that acid deposition at first eiuviates Ca^2+ , Mg^2+ and Sr^2+ from leaf, then the exchangeable cations from soil, and at last cations accumulate in surface water or ground water.  相似文献   
3.
Naturally acidic drainage associated with pyritic black shale has been observed in many locations in the Yukon Territory. While not necessarily linked to known mineral deposits, most of these natural acid rock drainage occurrences show elevated dissolved concentrations of trace elements, especially zinc, nickel, copper, cadmium and arsenic. Based on field observations, microbial investigation, chemical analyses and geochemical modeling, the fate and transport of potentially deleterious elements at two natural acid drainage occurrences with slightly different settings are examined. The Macintosh Creek is a small, acidic stream (pH 2.98-3.40), 2 km long, located in the Macmillan Pass area of east-central Yukon amidst known sedimentary exhalative massive sulfide mineralization but remains undisturbed by exploration activities. Its trace metal content is apparently derived from groundwater discharges, which gave as much as 5.0, 2.5, 0.7, 0.13 and 0.03 mg/L ofZn, Ni, Cu and As, respectively. Interaction and sorption reactions with algal mats, biofilms and iron oxyhydroxides appear to be the dominant mechanisms attenuating aqueous contaminant transport along the stream. Cryogenic precipitation further consolidates the ferricrete formation and reduces the mobility of the sorbed metals. The tributaries of the Engineering Creek along the Dempster Highway in northern Yukon drain through a series of dolomite, phyllite, argillite, limestone, black shale, sandstone and conglomerate with no known concentration of mineralization. In this area, the water chemistry fully reflects the local geology with acidic streams invariably associated with black shale occurrences. Groundwater seeps in the headwaters area of the km-180 Creek completely enclosed in black shale gave pH 3.0 and as much as 148, 39, 2.9 and 9.1 mg/L of Zn, Ni, Cu and As, respectively. Sorption with iron oxyhydroxide and organic matter appear to dominate the attenuation of contaminant transport along the stream. However, once entered into carbonate-dominated terrains, secondary carbonate minerals exercise additional geochemical control on the local water chemistry as a result of neutralization.  相似文献   
4.
5.
采煤活动对地下水化学环境的影响   总被引:1,自引:0,他引:1  
煤矿开采活动为人类活动提供能源的同时,也带来了诸如地表水环境污染与水资源短缺等环境问题,给人类活动甚至人类健康造成了不利的影响,迫使人们不得不开展对由煤矿开采所引起的环境问题的预防与治理研究。本文综述采煤活动对地下水化学环境影响的研究现状,并结合环境水文地质学及环境学发展的方向,指出该研究存在的问题,给出今后的发展方向。  相似文献   
6.
锶,硼和氟联合作用的亚急性毒理实验及环境意义   总被引:1,自引:0,他引:1  
本文以自由饮水给药方式进行了锶、硼和氟联合作用的亚急性实验,以探讨锶、硼对氟的拮抗作用。实验结果,给予小鼠200×l0^-6 F 六个月后,可使其骨氟含量显著升高(P<0.01),肾碱性磷酸酶活力(ALP)显著增高(P<0.01),4、5个月后血清碱性磷酸酶(ALP)活力亦显著增高(P<0.O1),同时给予80×l0^-1 B3+、100×l0^-6Sr2+ 时,可以显著降低骨氟含量,抑制血清、肾碱性磷酸酶的活力,表明锶与硼对氟存在拮抗作用。  相似文献   
7.
中酸性侵入岩中铁镁质微粒包体及其意义   总被引:17,自引:0,他引:17  
系统地介绍了近年来铁镁质微粒包体(MME)这一当今世界花岗岩研究和焦点课题的研究现状,指出铁镁质微粒包体及花岗岩的岩浆混合模式对壳--幔物质及能量交换作用过程研究的重要意义,同时提出了对包体的研究方法。  相似文献   
8.
西天山艾肯达坂组火山岩系同位素定年及其构造意义   总被引:10,自引:1,他引:10  
西天山艾肯达坂地区较好发育了艾肯达坂纽红色陆相火山岩建造.它不整合在下石炭统大哈拉军山组之上,未经变形和变质,属于陆陆碰撞晚期的橄榄安粗岩系,其年龄确定是厘定从碰撞造山向陆内构造演化的关键。因此,通过16件新获得的钾氩年龄测值,确定艾肯达坂组火山岩系形成在260Ma~270Ma之间,属早二叠世,而不是过去认为的石炭纪;西天山的陆陆碰撞应在二叠纪末结束,此后进入陆内造山阶段。  相似文献   
9.
新疆科古琴山晚石炭世火山岩及其地质意义   总被引:1,自引:0,他引:1  
分布于新疆中天山西段科古琴山一带的中酸性火山岩,是晚石炭世构造-岩浆喷发活动的产物,反映该区一次重要的构造-火山地质事件.对其岩石及地球化学特征研究表明,该火山喷发活动形成于活动陆缘构造环境,具有大陆裂谷火山岩系和岛弧火山岩双重特征,属较为典型"滞后型"弧火山岩.  相似文献   
10.
硅铍钠石在水热条件下的形成   总被引:1,自引:0,他引:1  
曹俊臣 《地球化学》1975,(2):155-157,i001
硅铍钠石(Na_2BeSi_2O_6),由于它极易溶解在HCl、HNO_3等酸性介质中,故自然界中极为少见。国外,在科拉半岛和格陵兰等少数地区发现有此矿物。天然硅铍钠石先见于科拉半岛的罗沃泽尔碱性岩体的方钠石正长伟晶岩和霞石正长伟晶岩中。有关硅铍钠石的矿物学特征曾有人做过一些研究。近年来,对其在水热条件下的合成实验也有少量报  相似文献   
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