982 resultados para Perak former tin mining areas


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This paper analyses the consequences of urban environmental degradation on the well-being of Spanish miners. It is based on analyses of differences in mortality and height. The first part of the paper examines new hypotheses regarding the urban penalty. We take into consideration existing works in economic theory that address market failures when analysing the higher urban death rate. We explain the reduction in height using the model recently created by Floud, Fogel, Harris and Hong for British cities. The second part of the paper presents information demonstrating that the urban areas in the two largest mining areas in Spain (Bilbao and the Cartagena-La Unión mountain range) experienced a higher death rate relative to rural areas as a consequence of market failures derived from what we term an ‘anarchic urbanisation’.

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The Buchans ore bodies of central Newfoundland represent some of the highest grade VMS deposits ever mined. These Kuroko-type deposits are also known for the well developed and preserved nature of the mechanically transported deposits. The deposits are hosted in Cambro-Ordovician, dominantly calc-alkaline, bimodal volcanic and epiclastic sequences of the Notre Dame Subzone, Newfoundland Appalachians. Stratigraphic relationships in this zone are complicated by extensively developed, brittledominated Silurian thrust faulting. Hydrothermal alteration of host rocks is a common feature of nearly all VMS deposits, and the recognition of these zones has been a key exploration tool. Alteration of host rocks has long been described to be spatially associated with the Buchans ore bodies, most notably with the larger in-situ deposits. This report represents a base-line study in which a complete documentation of the geochemical variance, in terms of both primary (igneous) and alteration effects, is presented from altered volcanic rocks in the vicinity of the Lucky Strike deposit (LSZ), the largest in-situ deposit in the Buchans camp. Packages of altered rocks also occur away from the immediate mining areas and constitute new targets for exploration. These zones, identified mostly by recent and previous drilling, represent untested targets and include the Powerhouse (PHZ), Woodmans Brook (WBZ) and Airport (APZ) alteration zones, as well as the Middle Branch alteration zone (MBZ), which represents a more distal alteration facies related to Buchans ore-formation. Data from each of these zones were compared to those from the LSZ in order to evaluate their relative propectivity. Derived litho geochemical data served two functions: (i) to define primary (igneous) trends and (ii) secondary alteration trends. Primary trends were established using immobile, or conservative, elements (i. e., HFSE, REE, Th, Ti0₂, Al₂0₃, P₂0₅). From these, altered volcanic rocks were interpreted in terms of composition (e.g., basalt - rhyodacite) and magmatic affinity (e.g., calc-alkaline vs. tholeiitic). The information suggests that bimodality is a common feature of all zones, with most rocks plotting as either basalt/andesite or dacite (or rhyodacite); andesitic senso stricto compositions are rare. Magmatic affinities are more varied and complex, but indicate that all units are arc volcanic sequences. Rocks from the LSZ/MBZ represent a transitional to calc-alkalic sequence, however, a slight shift in key geochemical discriminants occurs between the foot-wall to the hanging-wall. Specifically, mafic and felsic lavas of the foot-wall are of transitional (or mildly calc-alkaline) affinity whereas the hanging-wall rocks are relatively more strongly calc-alkaline as indicated by enriched LREE/HREE and higher ZrN, NbN and other ratios in the latter. The geochemical variations also serve as a means to separate the units (at least the felsic rocks) into hanging-wall and foot-wall sequences, therefore providing a valuable exploration tool. Volcanic rocks from the WBZ/PHZ (and probably the APZ) are more typical of tholeiitic to transitional suites, yielding flatter mantlenormalized REE patterns and lower ZrN ratios. Thus, the relationships between the immediate mining area (represented by LSZ/MBZ) and the Buchans East (PHZ/WBZ) and the APZ are uncertain. Host rocks for all zones consist of mafic to felsic volcanic rocks, though the proportion of pyroclastic and epiclastic rocks, is greatest at the LSZ. Phenocryst assemblages and textures are common in all zones, with minor exceptions, and are not useful for discrimination purposes. Felsic rocks from all zones are dominated by sericiteclay+/- silica alteration, whereas mafic rocks are dominated by chlorite- quartz- sericite alteration. Pyrite is ubiquitous in all moderately altered rocks and minor associated base metal sulphides occur locally. The exception is at Lucky Strike, where stockwork quartzveining contains abundant base-metal mineralization and barite. Rocks completely comprised of chlorite (chloritite) also occur in the LSZ foot-wall. In addition, K-feldspar alteration occurs in felsic volcanic rocks at the MBZ associated with Zn-Pb-Ba and, notably, without chlorite. This zone represents a peripheral, but proximal, zone of alteration induced by lower temperature hydrothermal fluids, presumably with little influence from seawater. Alteration geochemistry was interpreted from raw data as well as from mass balanced (recalculated) data derived from immobile element pairs. The data from the LSZ/MBZ indicate a range in the degree of alteration from only minor to severe modification of precursor compositions. Ba tends to show a strong positive correlation with K₂0, although most Ba occurs as barite. With respect to mass changes, Al₂0₃, Ti0₂ and P₂0₅ were shown to be immobile. Nearly all rocks display mass loss of Na₂O, CaO, and Sr reflecting feldspar destruction. These trends are usually mirrored by K₂0-Rb and MgO addition, indicating sericitic and chloritic alteration, respectively. More substantial gains ofK₂0 often occur in rocks with K-feldspar alteration, whereas a few samples also displayed excessive MgO enrichment and represent chloritites. Fe₂0₃ indicates both chlorite and sulphide formation. Si0₂ addition is almost always the case for the altered mafic rocks as silica often infills amygdules and replaces the finer tuffaceous material. The felsic rocks display more variability in Si0₂. Silicic, sericitic and chloritic alteration trends were observed from the other zones, but not K-feldspar, chloritite, or barite. Microprobe analysis of chlorites, sericites and carbonates indicate: (i) sericites from all zones are defined as muscovite and are not phengitic; (ii) at the LSZ, chlorites ranged from Fe-Mg chlorites (pycnochlorite) to Mg-rich chlorite (penninite), with the latter occurring in the stockwork zone and more proximal alteration facies; (iii) chlorites from the WBZ were typical of those from the more distal alteration facies of the LSZ, plotting as ripidolite to pycnochlorite; (iv) conversely, chlorite from the PHZ plot with Mg-Al-rich compositions (chlinochlore to penninite); and (v) carbonate species from each zone are also varied, with calcite occurring in each zone, in addition to dolomite and ankerite in the PHZ and WBZ, respectively. Lead isotope ratios for galena separates from the different various zones, when combined with data from older studies, tend to cluster into four distinctive fields. Overall, the data plot on a broad mixing line and indicate evolution in a relatively low-μ environment. Data from sulphide stringers in altered MBZ rocks, as well as from clastic sulphides (Sandfill prospect), plot in the Buchans ore field, as do the data for galena from altered rocks in the APZ. Samples from the Buchans East area are even more primitive than the Buchans ores, with lead from the PHZ plotting with the Connel Option prospect and data from the WBZ matching that of the Skidder prospect. A sample from a newly discovered debris flow-type sulphide occurrence (Middle Branch East) yields lead isotope ratios that are slightly more radiogenic than Buchans and plot with the Mary March alteration zone. Data within each cluster are interpreted to represent derivation from individual hydrothermal systems in which metals were derived from a common source.

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Purpose – The purpose of this paper is to contribute to the ongoing debate on governance, accountability, transparency and corporate social responsibility (CSR) in the mining sector of a developing country context. It examines the reporting practices of the two largest transnational gold-mining companies in Tanzania in order to draw attention to the role played by local government regulations and advocacy and campaigning by nationally organised non-governmental organisations (NGOs) with respect to promoting corporate social reporting practices. Design/methodology/approach – The paper takes a political economy perspective to consider the serious implications of the neo-liberal ideologies of the global capitalist economy, as manifested in Tanzania’s regulatory framework and in NGO activism, for the corporate disclosure, accountability and responsibility of transnational companies (TNCs). A qualitative field case study methodology is adopted to locate the largely unfamiliar issues of CSR in the Tanzanian mining sector within a more familiar literature on social accounting. Data for the case study were obtained from interviews and from analysis of documents such as annual reports, social responsibility reports, newspapers, NGO reports and other publicly available documents. Findings – Analysis of interviews, press clips and NGO reports draws attention to social and environmental problems in the Tanzanian mining sector, which are arguably linked to the manifestation of the broader crisis of neo-liberal agendas. While these issues have serious impacts on local populations in the mining areas, they often remain invisible in mining companies’ social disclosures. Increasing evidence of social and environmental ills raises serious questions about the effectiveness of the regulatory frameworks, as well as the roles played by NGOs and other pressure groups in Tanzania. Practical implications – By empowering local NGOs through educational, capacity building, technological and other support, NGOs’ advocacy, campaigning and networking with other civil society groups can play a pivotal role in encouraging corporations, especially TNCs, to adopt more socially and environmentally responsible business practices and to adhere to international and local standards, which in turn may help to improve the lives of many poor people living in developing countries in general, and Tanzania in particular. Originality/value – This paper contributes insights from gold-mining activities in Tanzania to the existing literature on CSR in the mining sector. It also contributes to political economy theory by locating CSR reporting within the socio-political and regulatory context in which mining operations take place in Tanzania. It is argued that, for CSR reporting to be effective, robust regulations and enforcement and stronger political pressure must be put in place.

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This paper presents a feminist analysis of corporate social responsibility (CSR) in a male-dominated industry within a developing country context. It seeks to raise awareness of the silencing of women’s voices in CSR reports produced by mining companies in Tanzania. Tanzania is one of the poorest countries in Africa, and women are often marginalised in employment and social policy considerations. Drawing on work by Hélène Cixous, a post-structuralist/radical feminist scholar, the paper challenges the masculinity of CSR discourses that have repeatedly masked the voices and concerns of ‘other’ marginalised social groups, notably women. Using interpretative ethnographic case studies, the paper provides much-needed empirical evidence to show how gender imbalances remain prevalent in the Tanzanian mining sector. This evidence draws attention to the dynamics faced by many women working in or living around mining areas in Tanzania. The paper argues that CSR, a discourse enmeshed with the patriarchal logic of the contemporary capitalist system, is entangled with tensions, class conflicts and struggles which need to be unpacked and acknowledged. The paper considers the possibility of policy reforms in order to promote gender balance in the Tanzanian mining sector and create a platform for women’s concerns to be voiced.

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The concept of environmental justice is well developed in North America, but is still at the evolutionary stage in most other jurisdictions around the globe. This paper seeks to explore two jurisdictions where incidents of environmental justice are likely to be seen in the future as a result of manufacturing and mining practices. The discussion will centre upon avenues to environmental justice for both private citizens and the public at large. The first jurisdiction considered is China, where environmental liability claims brought by Chinese citizens have increased at an annual average of 25% (Yang 2011). Manufacturing is at the core of the Chinese economy and is responsible for some of the unprecedented economic growth in the region. Less discussed are the industry impacts on water and air pollution levels and the associated implications of these pollutants on local communities. China introduced the Tort Liability Law (TLL) in 2010, which may provide avenues to justice for private citizens. The other jurisdiction considered by the paper is Australia, where the mining boom has buffered the Australian economy from the global financial crisis. There is some limited case law in Australia where private citizens have made a claim in toxic torts; however the framework is underdeveloped in terms of the significant risks facing indigenous and local communities in mining areas and also by comparison to the developments of the TLL framework in China. This paper traces the regulatory responses to the affects of major industries on communities in China and Australia. From this it examines the need for environmental justice avenues that align with rule of law principles.

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Queensland’s Surat Basin has the third largest energy resource in the world — with vast coal seam gas and coal reserves — but farm groups are warning that mining areas, which are prime farm land, risk catastrophic environmental damage to food-producing areas. Mining development is moving very quickly with 36,000 wells due to be sunk in the next few years. A Senate inquiry into the impacts of mining in the Murray-Darling Basin heard evidence from farm and mining industry representatives in Oakey on the Darling Downs yesterday.

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Abstract: YHWH’s theophany and mode of action are frequently evoked in the Bible as a volcanic event. It is shown here that this representation, of central importance in the story of the Sinai Covenant, is probably not anchored in any specific volcanic eruption experienced by the Israelites in the past. In Antiquity, volcanic activity was specifically associated with the gods who patronized metallurgy, given the homology between lava flowing from a volcano and slag released from a furnace at smelting. Evidence towards such a link is also identified in the Bible. Accordingly, rather than being simply a literary artifice imaging the outstanding powers of YHWH, volcanism may reflect the existence of metallurgical roots in Israelite theology. This contention is supported by Biblical evidences associating YHWH with metal production: (i) his primeval dominion in mining areas, (ii) his special worship by metalworkers, (iii) the representation of his celestial universe as a giant furnace. It is concluded that the volcanic representation of YHWH’s theophany and mode of action reveal a surprising level of preservation of the metallurgic religious traditions in the ancient Israelite theology.

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The Hainan gibbon (Nomascus hainanus) is one of the most endangered primates in the world, confined to mature natural forest in Hainan Island, China. We assessed changes in habitat condition on the island between 1991 and 2008, using vegetation maps generated by remote-sensing images. We defined forest suitable for gibbons based on composition, tree size and canopy cover. During the 17-year period, the area of suitable gibbon forest decreased by 540 km(2) (35%) across the whole island, and by 6.3 km(2) (7%) in the locality of the sole remaining gibbon population at Bawangling National Nature Reserve. The forest patches large enough (>1 km(2)) to support a gibbon group decreased from 754 km(2) to 316 km(2) in total area, and from 92 to 64 in number. Suitable natural forest was mainly replaced by plantations below 760 m, or degraded by logging, grazing and planting of pines above 760 m. Meanwhile, forests in former confirmed gibbon areas became more fragmented: mean area of patches decreased by 53%. We mapped the patches of natural forest in good condition which could potentially support gibbons. We recommend a freeze on further expansion of plantations between core patches at Bawangling, Jiaxi-Houmiling and Yinggeling Nature Reserves in accordance with forest protection regulations; establishment of nature reserves in currently unprotected natural forest patches elsewhere in line with the local government's nature reserve expansion policy; and active natural-forest restoration between remaining fragments at Bawangling. (C) 2010 Elsevier Ltd. All rights reserved.

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在简要说明榆神府矿区生态脆弱性和煤田开发对我国国民经济发展的重要性基础上,概述了矿区生态环境的现状、地下水的基本特征、采煤对地下水和植被的影响、以及矿区地下水与植被的相互关系;说明地下水资源是支撑矿区生态环境可持续发展的重要因子,采煤对地下水的破坏会严重影响矿区植被的恢复与重建;指出了目前矿区地下水与植被互动关系研究的不足,并提出了今后该领域应着重研究的方向.

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根据黄土高原( 陕西部分) 的145 个雨量观测站的30a 逐月降水资料,分析了陕西雨水资源的时空分布特征,并在次基础上,分别对西北地区的作物地土壤拦蓄潜力,陕北、渭北、关中3 地区居民工矿与交通用地的雨水汇流潜力进行了测算。初步结果为:两北地区作物地年总无效蒸发耗水达33 ×108 m3 ,若采取集流保墒措施,年可减少蒸发损失6-4 ×108 m3 ;3 地区居民工矿与交通用地年可汇流6-27 ×108 m 3 ,若一半用于粮食生产,并采取节水灌溉,初步推算黄土高原地区可增产粮食约28-8 ×108 kg。

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Rockmass movement due to mining steep metallic ore body is a considerable question in the surface movement and deformation issue caused by underground mining. Research on coal mining induced rockmass movement and its prediction problem have been performed for a long-term, and have achieved great progress at home and abroad. However, the rockmass movement caused by mining steep metal mine is distinctivly different from coal seam mining.. Existing surface movement laws and deformation prediction methods are not applicable to the rockmass movement caused by mining steep metal mine. So far the home and abroad research to this theory is presently at an early stage, and there isn’t mature theory or practical prediction method, which made a great impact on production. In this paper, the research object—Jinchuan nickel mine, which is typical steep metal mine, characterized by complex geological conditions, developed faults, cracked rockmass, high geostress, and prominent engineering stability problems. In addition, backfill mining method is used in the mine, the features of rockmass movement caused by this mining method are also different from other mining methods. In this paper, the laws of rock mass movement, deformation and destroy mechanism, and its prediction were analyzed based on the collection of data, detailed in-sit engineering geology survey, ground movement monitoring by GPS, theoretical analysis and numerical simulation. According to the GPS monitoring of ground surface movement, ground subsidence basin with apparent asymmetry is developing, the influence scope is larger in the upper faulted block than in the lower faulted block, and the center of ground movement is moving along the upper faulted block direction with increasing depth of mining. During the past half and seven years, the largest settlement has amounted to 1287.5mm, and corresponding horizontal displacement has amounted to 664.6mm. On the ground surface, two fissure belts show a fast-growing trend of closure. To sum up, mining steep metal mine with backfill method also exist the same serious problem of rockmass movement hazards. Fault, as a low intensity zone in rockmass, when it located within the region of mining influence, the change of potential energy mainly consumed in fault deformation associated with rockmass structure surface friction, which is the essence of displacement and stress barrier effects characterized by fault rupture zone. when steep fault located in the tensile deformation region incurred by underground excavation, no matter excavation in hangingwall or in footwall of the fault, there will be additional tensile stress on the vertical fault plane and decrease in the shear strength, and always showing characteristics of normal fault slip, which is the main reason of fault escarpment appeared on the ground surface. The No.14 shaft deformation and failure is triggered by fault activation, which showed with sidewall move, rupture, and break down features as the main form of a concentrated expression of fault effects. The size and orientation of principal stress in surrounding rock changed regularly with mining; therefore, roadway deformation and damage at different stages have different characteristics and distribution models. During the process of mining, low-intensity weak structures surface always showed the most obvious reaction, accompany with surface normal stress decrease and shear strength bring down, to some extent, occurred with relative slide and deformation. Meanwhile, the impact of mining is a relatively long process, making the structure surface effect of roadway deformation and damage more prominent than others under the influence of mining. Roadway surrounding rockmass deformation caused by the change of strain energy density field after excavation mainly belongs to elastic deformation, and the correspondented damage mainly belongs to brittle rupture, in this circumstance, surrounding rockmass will not appear large deformation. The large deformation of surrounding rockmass can only be the deformation associated with structure surface friction or the plastic deformation of itself, which mainly caused by the permanent self-weigh volume force,and long-term effect of mining led to the durability of this deformation Good pitting fill effect and supporting effect of backfill, as well as the friction of rockmass structure surface lead to obvious macro-rockmass movement with long-lag characteristics. In addition, the loss of original intensity and new structure surface arisen increased flexibility in rockmass and fill deformation in structure surface, which made the time required for rockmass potential energy translate into deformation work associated with plastic deformation and structure surface friction consumed much, and to a large extent, eliminated the time needed to do those plastic work during repeated mining, all of which are the fundamental reason of rockmass movement aftereffect more significant than before. Mining steep deposits in high tectonic stress area and in gravity stress area have different movement laws and deformation mechanism. The steep deposit, when the vertical size of the mining areas is smaller than the horizontal size of the orebody, no matter mining in gravity stress area or in high tectonic stress area, they have similar features of ground movement with mining horizontal orebody; contrarily, there will appear double settlement centers on the ground surface under the condition of mining in high tectonic stress area, while there will always be a single center under the other condition. Meanwhile the ground movement lever, scale of mining influence area and macro features of ground movement, deformation and fracture are also different from mining in gravity stress area, and the fundamental reason lies in the impact of orientation of the maximum principal stress on rock movement features in in-site rock stress field. When mining thick and steep deposit, the ground surface movement and deformation characteristic curves are significantly different from excavating the horizontal ore bed and thin steep deposit. According to the features of rockmass movement rate, the development process of mining-induced rockmass movement is divided into three stages: raising stage, steadily stage and gradually decay stage. Considering the actual exploitation situation, GPS monitoring results and macro-characteristics of surface movement, the current subsidence pattern of Jinchuan No.2 mine is in the early stage of development. Based on analysis of surface movement rate, surface subsidence rate increase rapidly when mining in double lever at the same time, and reach its peak until the exploitation model ended. When double lever mining translate into single, production decreased, surface subsidence rate suddenly start to reduce and maintain a relatively low value, and the largest subsidence center will slowly move along with the hangingwall ore body direction with increasing depth of mining, at the same time, the scope and extent of subsidence in footwall ore body will begin magnify, and a sub-settlement center will appear on ground surface, accompanied with the development and closure trend of ground fissure, the surrounding rockmass of shaft and roadway will be confronted to more frequent and severe deformation and failure, and which will have a negative impact on the overall stability of No.2 mine mining. On the premise of continuity of rockmass movement, gray system model can be used in ground rockmass movement prediction for good results. Under the condition of backfill mining step by step, the loose effect of compact status of the hard, broken rockmass led to lower energy release rate, although surrounding rockmass has high elastic energy, loose and damage occurred in the horizontal ore body, which made the mining process safety without any large geological hazards. During the period of mining the horizontal ore body to end, in view of its special “residual support role”, there will be no large scale rockmass movement hazards. Since ground surface movement mainly related to the intensity of mining speed and backfill effect, on the premise of constant mining speed, during the period of mining the horizontal ore body to end, the rate of ground surface rockmass movement and deformation won’t have sudden change.

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贵州省是我国最重要的汞工业基地,境内分布着大量的汞矿床,汞金属储量88000 t,占全国总储量近80%。汞矿开采、冶炼历史悠久,大规模的汞矿开采冶炼活动都已经停止。但是,由于汞矿区偏僻的自然地理位置、落后的经济水平和近期金属汞价格的攀升,这些地区仍然存在着较大规模的土法炼汞活动。大面积的土法炼汞活动和长期的大规模汞矿开采冶炼活动,给矿区生态环境造成了严重的汞污染。土法炼汞工艺十分落后,冶炼过程向周围大气释放大量的汞,而土法炼汞工人也必然会遭受严重的汞蒸气暴露。释放到大气的汞在进入周围环境后,在自然条件下通过微生物活动,会转化为毒性、生物有效性更强的甲基汞,并通过食物链富集放大,最终对矿区居民的身体健康构成一定的威胁。 本文选择贵州省务川汞矿区、万山汞矿区和铜仁垢溪、老屋场土法炼汞地区,进行了土法炼汞的汞释放量估算、汞矿地区环境汞污染调查及炼汞工人和矿区居民汞暴露调查和健康风险评价,系统阐述了贵州典型土法炼汞地区汞的生物地球化学循环特征及人体汞暴露评价。 1. 务川和铜仁垢溪地区的土法炼汞活动是当地大气的最主要人为释汞源。务川汞矿区土法炼汞的平均释汞因子为18.2%(6.9-32.1%),土法炼汞活动每年向大气排汞3.7-9.6 t;铜仁垢溪地区土法炼汞的平均释汞因子为9.8%(6.6-14.5%),土法炼汞活动每年向大气排汞1.3-2.7 t。 2. 务川汞矿区大面积的土法炼汞活动和长期大规模的汞矿活动以及垢溪、老屋场地区的土法炼汞活动,给当地的大气、地表水体和土壤造成了严重的汞污染,而汞污染程度受汞矿开采冶炼活动的历史和规模的影响显著。务川汞矿区大气汞浓度空间变化很大(7-40000 ng•m-3),受矿业活动影响的区域,大气汞含量明显升高;重污染区大气汞平均浓度为15000 ng•m-3,轻污染区为120 ng•m-3,对照区为24 ng•m-3。务川矿区地表水体的总汞含量的变化范围为43-2100 ng•L-1,总甲基汞含量变化范围为0.30-1.1 ng•L-1;垢溪、老屋场地区地表水体总汞含量的变化范围为92-2300 ng•L-1,总甲基汞含量变化范围为2.6-7.9 ng•L-1,地表水体显示了极强的甲基化能力。颗粒态汞占地表水体总汞含量的绝大部分比例,是矿区地表水体汞迁移的主要方式;而甲基汞则以溶解态为主。务川汞矿区土壤总汞含量的变化范围为1.3-360 mg•kg-1,垢溪、老屋场地区土壤总汞含量的变化范围为0.18-47.5 mg•kg-1,土壤剖面表层土壤汞的富集表明大气汞的沉降是土壤汞的重要来源,而土壤pH、有机质含量和土地利用类型影响着土壤中汞的迁移和富集。 3. 务川汞矿区土法炼汞工人尿汞含量的平均值高达1060 g•g-1 Cr,铜仁垢溪地区炼汞工人尿汞含量的平均值为347 g•g-1 Cr,铜仁老屋场地区炼汞工人尿汞含量的平均值为917 g•g-1 Cr,土法炼汞工人尿汞平均含量远远超过世界卫生组织规定的职业暴露人群的最大允许值-50 g•g-1 Cr,说明土法炼汞工人遭受严重的汞蒸气暴露。部分土法炼汞工人已经表现出轻度慢性汞中毒的症状,其肾脏已经遭受到一定程度的损伤。铜仁垢溪地区一般居民尿汞的平均值为40.0 g•g-1 Cr,铜仁老屋场地区一般居民尿汞含量的平均值为66.2 g•g-1 Cr,万山汞矿区大水溪居民尿汞含量的平均值为56.9 g•g-1 Cr,说明土法炼汞地区一般居民也遭受一定的汞蒸气暴露。对照区人群尿汞含量的平均值为1.30 g•g-1 Cr,万山下场溪村居民尿汞含量的平均值为2.5 g•g-1 Cr,其尿汞水平与对照组接近。 4. 食用大米是汞矿区居民甲基汞暴露的主要途径。万山汞矿区大水溪、下场溪和报溪3个村庄居民头发总汞含量的几何平均值分别为7.3、1.9和2.3 g•g-1,而头发甲基汞的平均含量分别为2.8、1.3和1.5 g•g-1,说明万山汞矿区居民存在一定程度的汞暴露。3个村庄居民食用大米总汞的平均含量分别为58.5、21.3和33.1 ng•g-1,大米甲基汞的平均含量分别为14.6、5.7和4.0 ng•g-1。居民食用的蔬菜、猪肉和饮水也表现出很高的总汞含量,但是甲基汞含量很低。3个村庄居民食用大米的摄入量占总甲基汞摄入量的平均比例分别为97.5%、94.1%和93.5%,且不同参与者每日通过食用大米的甲基汞摄入量和对应的头发甲基汞含量之间存在显著的相关关系 (r=0.65, p<0.01),这证实了居民头发甲基汞的来源确实是食用大米,食用大米是汞矿区居民甲基汞暴露的主要途径。 5. 铜仁垢溪、老屋场地区炼汞工人头发甲基汞的平均含量分别为5.05 g•g-1(2.35-10.6 g•g-1)和5.63 g•g-1(2.54-9.55 g•g-1),而一般居民头发甲基汞的平均含量分别为3.53 g•g-1(1.87-5.65 g•g-1)和4.01 g•g-1(2.29-9.23 g•g-1)。万山汞矿区大水溪、下场溪和报溪3个村庄居民头发甲基汞的平均含量分别为2.8、1.3和1.5 g•g-1。务川汞矿区土法炼汞工人和居民的头发甲基汞含量的变化范围为0.47-5.69 μg•g-1。对照组头发甲基汞的平均含量为0.65 g•g-1,变化范围为0.26¬-1.38 g•g-1。食用大米甲基汞摄入量的估算表明,铜仁垢溪和老屋场地区部分居民的甲基汞摄入量已经超过世界卫生组织2003年制定的标准-0.23 g•d-1•kg-1,汞矿区大部分人群的甲基汞摄入量超过了美国环保局的推荐值-0.1 g•d-1•kg-1 (USEPA, 1997),而对照区居民的甲基汞摄入量均没有超过这一推荐值,表明铜仁垢溪和老屋场地区居民存在一定的甲基汞暴露风险,而其他汞矿区人群也存在通过食用大米暴露甲基汞的潜在风险。

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本研究选择有代表性的陕西省潼关县(小秦岭地区)采金地区作为研究对象,从环境地球化学的角度出发,研究了该地区由于受采金活动的影响后,大气、水体、土壤以及农作物中总汞和甲基汞的分布,探讨汞在采金地区环境中迁移、转化和富集的环境地球化学行为和规律,并估算了渲关县及全国在过去二十多年里,由混汞法炼金活动向环境释放汞的总量,最后对混汞法采金地区的环境管理提出可行性建一议。通过本论文的详细研究,主要得出以下结论:1.潼关县辖区大气汞的分布呈明显的空间梯度关系,炼金厂密集区大气汞含量明显高于其它地区,距离炼金厂越远,大气汞含量越低。大型炼金厂混汞提金车间内的平均大气汞浓度为18,047ng/m~3,最高达33,080ng/m~3;距离炼金厂密集区较近和较远的居民区的平均大气汞浓度分别为385ng/m~3和77ng/m~3;而一些偏远地区大气汞的平均浓度降至29ng/m~3,受炼金活动影响较 小的黄河沿岸背景区的平均大气汞浓度只有2ng/m~3。通过估算,潼关县炼金矿工汞蒸气的平均摄入量高达72,804~75,268ng/d,而当地非矿工居民(成人)每天的摄入量也有924~4,620ng。2.潼关县内泉水和井水中总汞的平均浓度有329.2ng/L,其中各形态汞的浓度都相对较高,说明金矿地区的汞背景值可能较高,且地下水也可能受到一定程度的汞污染;冷暖两季水样中溶解态汞浓度和暖季的甲基汞浓度要比泉水和井水中的溶解态汞和甲基汞浓度分别高出几倍,其它形态汞则要高出几百倍;水样中的活性汞和溶解态汞浓度表现出极显著的相关关系;冷季水样的活性汞和溶解态汞平均浓度要略高于暖季的水样,而颗粒态汞恰恰相反;两季采集的一些水样中活性汞在溶解态汞中占有较高的比例,但总汞均以颗粒态为主,大多超过50%。3.冷暖两季沉积物中平均总汞浓度分别高达151.1和44.6μg/g,甲基汞平均浓度分别为7.1和3.6ng/g,而暖季沉积物中总汞与甲基汞含量表现出极显著的相关关系;水体颗粒物和沉积物主要来源于炼金厂排出的废渣和尾矿,拥有较高的重金属(Hg、Fe、Mn和Cu)含量,且两者之间体现出一定的继承关系,但颗粒物由于粒径小,表面积大,含有机颗粒多,吸附能力强,所以其中的重金属含量要明显高于沉积物中的重金属含量;颗粒物中汞含量与Fe、Mn、Cu的含量之间均表现出极显著的相关性,而沉积物中汞含量仅与Cu含量之间有一定的相关性,与其它重金属含量的相关性不明显。4.潼关县辖区金矿石中汞的平均含量是69.2ng/g,而炼金尾矿中汞的平均含量竟高达628,4林吮,高出原矿石样中汞平均含量10,000倍,其它重金属(Fe、Mn、Cu)由于受炼金活动影响较小,其含量变化并不十分明显;黄土由于自身的特殊质地和性质,受炼金活动的干扰较小,其中的各重金属含量能够较好的反映其背景含量水平;撞关地区采集的土壤样品中总汞和甲基汞含量均要比黄土中的含量高约50倍,而其它重金属含量与黄土背景值无明显差异;土壤中甲基汞在总汞含量中所占比例较小(分布在0.001%~0.57%之间),说明潼关地区土壤中汞的甲基化水平较低。5.苔鲜样品中的高汞含量反映了采金地区较高的大气汞沉降水平;河流水藻中高含量的总汞和甲基汞体现出汞在生物体内超强的富集作用;潼关县大多数农作物样品中的汞主要来源于大气,且几乎所有样品的汞含量都严重超出国家食用标准,最高超标倍数达到60;农作物中甲基汞含量占总汞的比例在0.12%~12.34%之间波动,其中蔬菜类作物的甲基汞比例要高于粮食作物,而总体来说,作物体内的总汞和甲基汞含量之间表现出一定的负相关关系;通过估算,潼关县居民由于粮食作物(小麦)的食用每天摄入的总汞量高达54,72Ong,要高于当地居民(非矿工)通过呼吸吸入的汞蒸气量,且已超出国际上对人体汞摄入量标准的有关规定。6.潼关县水体、沉积物、土壤以及农作物中的甲基汞含量相对总汞而言,都表现了相对较低的水平,原因可能是受石英脉型金矿地区地质背景的影响,大量存在的Fe、Mn类化合物对离子态汞有着较强的束缚能力,减缓或抑制了甲基化的发生。7.通过混汞法生产黄金的产量和汞释放因子的调研和确定,估算在1980~2003年期间,全国混汞炼金行业向环境释放汞累计达1476.6t,其中约有78%进入大气;而仅潼关县就有116.5t,约占全国的7.9%:目前(1996年以后),由于混汞法工艺的改进,汞的释放量大大降低,全国混汞炼金行业平均每年释放汞约30t,憧关县平均每年有3.9t,约占全国年平均释放量的13%。

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Paddy rice has been likened to nictiana sp in its ability to scavenge cadmium (Cd) from soil, whereas arsenic (As) accumulation is commonly an order of magnitude higher than in other cereal crops. In areas such as those found in parts of Hunan province in south central China, base-metal mining activities and rice farming coexist. Therefore there is a considerable likelihood that lead (Pb), in addition to Cd and As, will accumulate in rice grown in parts of this region above levels suitable for human consumption. To test this hypothesis, a widespread provincial survey of rice from mine spoilt paddies (n = 100), in addition to a follow-up market grain survey (n = 122) conducted in mine impacted areas was undertaken to determine the safety of local rice supply networks. Furthermore, a specific Cd, As, and Pb biogeochemical survey of paddy soil and rice was conducted within southern China, targeting sites impacted by mining of varying intensities to calibrate rice metal(loid) transfer models and transfer factors that can be used to predict tissue loading. Results revealed a number of highly significant correlations between shoot, husk, bran, and endosperm rice tissue fractions and that rice from mining areas was enriched in Cd, As, and Pb. Sixty-five, 50, and 34% of all the mine-impacted field rice was predicted to fail national food standards for Cd, As, and Pb, respectively. Although, not as elevated as the grains from the mine-impacted field survey, it was demonstrated that metal(loid) tainted rice was entering food supply chains intended for direct human consumption.

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En primera instancia, con este trabajo se busca contextualizar a las personas del común acerca de las concesiones explicándoles qué es una concesión y cómo se relacionan con la economía. Adicional se explicará qué es la sal, cuáles son sus derivados y sus usos. En una segunda instancia, y en forma más concreta, se explicará en qué consisten las concesiones de sal de Nemocón y Zipaquirá, mostrando la manera como se han usado los recursos monetarios generados por dichas concesiones y determinando el grado de influencia que estos recursos han tenido sobre los proyectos que se esperan generen mayor beneficio a la comunidad. Finalmente, se proyectó el flujo de ingresos que el gobierno espera recibir por compensaciones generadas de las concesiones de sal hasta el año 2038 y de esta forma poder brindar, en valor presente, la cantidad de dinero en la que el gobierno podría llegar a endeudarse teniendo como garantía los ingresos que generarán las concesiones de las áreas mineras de sal de Nemocón y Zipaquirá.