首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 29 毫秒
1.
西藏地区盐湖锂资源的开发现状   总被引:15,自引:0,他引:15  
随着国外锂盐生产逐渐转向盐湖提锂,我国急需加强盐湖锂资源的开发.西藏地区盐湖锂资源储量丰富,主要分布在扎布耶湖、班戈-杜佳里湖、扎仓茶卡等盐湖中.其中扎布耶盐湖经过十余年的开发研究,目前已找到一条适合该湖自然条件的锂资源工艺开发路线.班戈-杜佳里湖近期刚开始进行试验,表现出良好的发展前景.开发中需坚持综合利用的原则,同时可以利用西藏丰富的太阳能和盐湖资源建立盐湖太阳池系统,为资源开发提供能源支持.  相似文献   

2.
我国能源发展战略研究   总被引:16,自引:1,他引:15  
介绍了我国能源资源状况和开发利用程度及其与世界发展水平的对比,分析了我国在能源问题上存在的“三大”、“三少”矛盾。依据能源生产的全球化进程和消费的天然气化趋势,分析了调整和改善我国能源结构、实现能源替代的必要性和可行性。综合众多专家的观点认为,我国必须实行品种优质化、多元化的用能发展战略。研究了实行这一战略的资源和技术保证条件。提出:我国应充分发挥水能资源优势,提高水电比重;开发西部天然气资源,扩大天然气消费份额;利用国外油气资源,降低煤炭消费比例;发展洁净煤技术,加速煤炭清洁利用;加快太阳能利用技术研究和转化,为可再生能源的战略替代作准备;建立节能型能源供应和消费体系。  相似文献   

3.
The Earth surface is a multiple open system. Semiconducting minerals, including most metal oxides and sulfides, absorb visible light of the solar spectrum. Microorganisms evolve varied pathways to get carbon and energy sources. It is obvious that the interaction among solar light, semiconducting minerals, photoelectron/photohole, organics, inorganics, valence electrons and microorganisms occurs continuously on our planet. In a recent study, Lu et al. (2012) presented evidence demonstrating solar energy mediated by semiconducting mineral photocatalysis, acting as energy source, promoted the growth of some non-photosynthetic bacteria and revealed that the ternary system of microorganisms, minerals and solar light has played a critical role in the history of life on our planet. In simulated system, under simulated solar light semiconducting minerals, such as metal oxides and metal sulfides, generates photoelectrons which could be used by non-phototrophic microorganisms to support their metabolisms. The growth of microorganism was closely related to photon quantity and energy, and the microorganism growth and mineral light absorption spectra were fitted well under different light wavelengths. The overall energy efficiency from photon to biomass was 0.13‰ to 1.9‰. Further studies revealed that in natural soil systems, semiconducting mineral photocatalysis could influence the microbial population. Solar energy utilization pathway by nonphototrophic microorganisms mediated by semiconducting mineral photocatalysis provides a new concept to evaluate the origin and evolution of life. Semiconducting minerals are ubiquitous on Earth’s surface and widely participate in redox reactions following photoelectron-photohole pairs excited by solar light. As photoholes can be easily scavenged by environmental reductive substances and microorganisms possess multiple strategies to utilize extracellular electrons, the highly reductive photoelectrons serve as potential energy source for microbial life. The discovery of this pathway extends our knowledge on the use of solar energy by nonphototrophic microorganisms, and provides important clues to evaluate life on the early Earth. Microorganisms, minerals and solar light constitute a complex but important ternary system through Earth history. The discovery of the novel energy conversion pathway in this system demonstrates how nonphototrophic microorganisms directly or indirectly utilized photoelectrons as the solar energy source. The fully comprehending of nonphototrophic bacteria solar energy utilization conducted by semiconducting minerals in present environment will greatly help us to better understand the energy transform mechanism among interfaces of lithosphere, pedosphere, hydrosphere and biosphere.  相似文献   

4.
The relative abundances of suprathermal (with energies ~0.04–2 MeV/nucleon) 3He, 4He, C, O, and Fe ions and the energy spectra of 3He and Fe ions in near-Earth space during quiescent periods of solar activity are studied. Measurements obtained with the ULEIS instrument onboard the ACE spacecraft during the 23rd and 24th solar cycles are used. Substantial differences in the energy spectra of suprathermal ions in the 23rd and 24th solar cycles are observed for the selected quiescent periods. Appreciable differences in the energy dependences of the relative ion abundances are also found. One possible explanation for the results obtained is that the background ions were accelerated to suprathrmal energies under different conditions in the solar corona in these two cycles.  相似文献   

5.
全球清洁能源发展现状与趋势分析   总被引:1,自引:0,他引:1  
一次能源尤其是化石能源的大规模开发利用,导致环境破坏越来越严重,对人类生活造成了极大的负面影响,因此,清洁能源的开发利用引起全球的广泛重视,美国、日本、欧盟、中国、印度等国家或地区从20世纪开始开展清洁能源的开发利用工作.本文在前人的研究基础上,首先明确了清洁能源的概念和能源种类.其次,从投资、装机容量和消费变化等方面...  相似文献   

6.
高天明  范娜  代涛 《地质学报》2024,98(4):1310-1331
传统沉淀法提锂生产周期长、不适用于低锂浓度卤水,盐湖提锂产量增长缓慢,难以满足新能源产业发展的需求。因此,开发高镁锂比卤水提锂新技术是锂产业发展的迫切需求。本文概述了吸附法、萃取法、膜法和电化学法等提锂新工艺的研究现状,发现铝基吸附剂已应用于工业生产,但其吸附容量显著地小于锰基和钛基吸附剂,而后两者的溶损和长吸附平衡时间是制约其产业化的关键。中性磷类萃取剂关注最多,但其易腐蚀和出现第三相;酰胺类萃取体系无腐蚀,已用于氯化物型卤水工业化提锂,但其稳定性需长期关注;并且萃取法工艺流程较长,酸碱消耗高。膜法无法深度除镁,需与其他方法相结合提锂,其水资源消耗量大。电渗析和“摇椅式”电化学实现了连续性提锂,加速了吸附速率,避免了洗脱剂的使用,其电耗随着优化提锂体系和工作条件的降低,电化学提锂将迎来广阔的产业前景。以上卤水提锂新工艺资源消耗和环境影响小于传统沉淀法,对高镁锂比盐湖具有显著的竞争优势,但各有弊端。因此,未来盐湖卤水提锂应加强多种新技术的集成与耦合,前移提锂过程,提升全流程锂的回收率和多种资源的综合开发。  相似文献   

7.
Quantifying past continental temperature changes is an important aspect of paleoclimate research as it allows us to constrain the amplitude of natural variability, test predictive climate models, and provide a proper context for changes that may arise in response to anthropogenically-induced climate change. The recently developed biomarker-based methylation index of branched tetraethers/cyclization ratio of branched tetraethers (MBT/CBT) proxy shows potential as a new method for continental temperature reconstruction, but thus far it has only been applied successfully in ocean margin sediments. To assess whether this proxy is also applicable to the sedimentary record in tropical lacustrine systems, we investigated the distribution of branched glycerol dialkyl glycerol tetraethers (GDGTs) in recently deposited sediments from 46 lakes in tropical East Africa. These lakes span a substantial range in surface elevation (770-4500 m above sea level), and thus also a wide gradient of mean annual temperature. We find that, saline lakes excepted, branched GDGTs are universally abundant in the lakes investigated and can be used to predict mean annual air temperature (MAAT) with a high degree of accuracy. However, the existing global MBT/CBT calibration for MAAT based on soils predicts inaccurate temperatures when applied to our African lake dataset. This observation, together with the fact that surface water pH, and to lesser extent, lake depth appear to influence the distribution of branched GDGTs among sites, leads us to conclude that in situ production of branched GDGTs in lakes is likely. The robust relationship between branched GDGT distribution and the temperature and pH of African freshwater lakes makes these compounds suitable for paleoenvironmental reconstruction, however we urge caution in using branched GDGTs in lake sediments to infer past temperatures, unless their exact origin can be determined.  相似文献   

8.
This study investigates the utilization of landfill biogas as a fuel for electrical power generation. Landfills can be regarded as conversion biogas plants to electricity, not only covering internal consumptions of the facility but contributing in the power grid as well. A landfill gas plant consists of a recovery and a production system. The recovery of landfill gas is an area of vital interest since it combines both alternative energy production and reduction of environmental impact through reduction of methane and carbon dioxide, two of the main greenhouse gases emissions. This study follows two main objectives. First, to determine whether active extraction of landfill gas in the examined municipal solid waste sites would produce adequate electric power for utilisation and grid connection and second, to estimate the reduction of sequential greenhouse gases emissions. However, in order to optimize the designing of a plant fed by biogas, it is necessary to quantify biogas production over several years. The investigation results of energy efficiency and environmental impact of biogas utilization in landfills are considering satisfactory enough both in electric energy production and in contribution to greenhouse gases mitigation.  相似文献   

9.
The problem regarding environment has been considered as contemporary issue, and to cater this, various technologies have been revolutionized in vehicle transport field. Efforts have been made to make vehicle engine efficient and introducing hybridized vehicles with the aim of reducing emissions and less fuel dependency. In essence of this, trends of solar electric cars in different countries have been reviewed. Feasibility analysis is done by doing fuel cost analysis of two cases, i.e., simple hybrid vehicle and hybrid vehicle equipped with solar module and increased battery energy storage capacity for a specific round trip distance between two cities, i.e., Rawalpindi and Islamabad in comparison with feasibility of third case, i.e., proposed solar electric car model. The solar module selection along with desired number of batteries with charging and discharging time and motor power required to carry five persons weight (70 kg each) is calculated for third case. Moreover, total carbon dioxide emission analysis has been carried out from car material production to its assembly, manufacturing solar module and nickel metal hydride battery for each case. The annual carbon dioxide emitted from fuel in first two cases relative to electric outlet in third case for specific distance has been analyzed. On large scale, emission analyses for hundred cars of each case have been done at 100 km distance. From calculations, it is revealed that overall emissions in third case on large scale and from its material production, assembly, solar module and batteries manufacturing perspective are comparatively less than other cases.  相似文献   

10.
国家能源结构调整的战略选择——加强可再生能源开发利用   总被引:20,自引:0,他引:20  
分五个方面就加快我国可再生能源开发利用作为国家能源结构调整战略选择的重要性、紧迫性、可行性进行了阐述。①实现社会的可持续发展,迫切要求调整国家能源构成体系;②可再生能源作为21世纪主导能源已显示出强大生命力。着重对太阳能、风能和海洋能开发利用的进展作了重点概括;③可再生能源开发利用的经济性。就建设费用、电价成本、占地面积、环境效益及贮能技术等方面进行了比较分析;④我国可再生能源资源及其开发利用的简要回顾;⑤加快我国可再生能源开发利用的对策建议。从提高重视程度,加强科技开发研究,大力推进产业化,统一规划,加大投入,制定优惠政策和管理政策,加强信息交流和国际合作,认真开展全民环保意识和可持续发展观的宣传教育等方面采取积极措施,尽快把我国可再生能源开发利用的水平和规模搞上去。  相似文献   

11.
盐湖锂资源开发利用及对中国锂产业发展的建议   总被引:10,自引:1,他引:9  
宋彭生  项仁杰 《矿床地质》2014,33(5):977-992
近年来,锂及其化合物的用途日益重要而广泛,特别是电动车和各种移动电子设备对大小功率锂电池的需求急剧增长,大大带动了锂资源的开发利用。全球锂资源有80%以上蕴藏在盐湖卤水、油田水、地热水等液体矿床中。在被称为"锂三角"的南美安第斯高原的智利、阿根廷、玻利维亚交界处,分布有丰富的盐湖锂资源,当地少雨、多风、极度干燥的自然条件,对开发盐湖资源十分有利,在当今世界锂开发潮流中,已成为一大热点地区。文章介绍了世界盐湖卤水锂资源的状况和开发利用工艺流程;作为多个新兴产业交汇点的锂产业,从上游锂资源调查评价、加工利用到下游各种产品的研制,近年来在中国都取得了长足发展;最后对中国锂产业的发展提出了一些建议。  相似文献   

12.
基于1995年、2005年和2015年3期Landsat影像数据,利用遥感和地理信息系统技术,分析全球不同气候带典型冰川补给型湖泊面积、数量及其对气候变化的响应。结果表明:①1995-2015年全球典型冰川补给型湖泊面积增加了2.32%,数量减少了2.26%,其中以小型湖泊(< 1 km2)和大型湖泊(>50 km2)面积变化最为剧烈,中型湖泊(1~50 km2)面积则相对稳定,1995-2005年冰川补给型湖泊面积与数量的变化速率相比2005-2015年较快。②1995-2015年热带、亚热带、温带冰川补给型湖泊面积与数量均在增加,其中以热带冰川补给型湖泊变化最为剧烈,其面积上升了20.62%,数量上升了25.32%,亚寒带与寒带冰川补给型湖泊面积与数量均减少,其中以寒带冰川补给型湖泊变化最为明显,其面积减少了11.3%,数量下降了18.97%。可为全球典型冰川补给型湖泊的变化及其影响因素的后续研究提供依据和参考。  相似文献   

13.
马冰  贾凌霄  于洋  王欢 《中国地质》2021,48(6):1734-1747
地热能作为一种零碳、清洁能源,其开发利用对于碳中和具有重要价值。2015-2020年,全球新增地热发电约3649 GW,增长约27%;地热直接利用总装机容量增长52.0%。两者之和,所用热能比2015年增长72.3%。全球每年地热直接利用可防止7810万t碳和2.526亿t CO2排放到大气中。世界地热能发展呈现五大趋势:(1)发展非常规地热系统;(2)向海上地热资源开发进军;(3)降低钻探成本与石油热能协同生产;(4)加大浅层地热能的开发利用;(5)加强含水层热能储存技术研发。  相似文献   

14.
月球某些资源的开发利用前景   总被引:18,自引:0,他引:18  
21世纪月球探测的主要趋势是建立月球基地,开发利用月球的矿产资源,能源和特殊环境,为人类社会的可持续发展发挥长期而有效的支撑作用,通过对月海玄武岩中的钛铁矿,克里普岩中的U,Th,REE和月壤中的拟-3在月面的含量与分布的系统分析,月海玄武碉中蕴藏有极丰富的钛铁矿,TiO2总资源量超过70万亿t,钛铁矿还是月球基地生产水和火箭燃料的主要原料;克里普岩是未来月球探测与研究的热点之一,其蕴藏有巨量的铀,钍,钾,磷和稀土元素资源;月壤长期受到太阳风的辐射,使其蕴藏有极其丰富的氢,氦,氧,氮等气体资源,其中氦-3的资源量大于100万t,它是一种可供人类社会长期使用的,安全,清洁,高效,廉价的核聚变发电燃料,其含量与月壤的化学成分,矿物组分,颗粒大小等有密切的关系。  相似文献   

15.
化能自养型微生物利用太阳能途径的实验研究   总被引:2,自引:0,他引:2  
针对自然界中天然半导体矿物和化能自养微生物之间的能量交换途径进行了详细的实验研究.半导体光电化学实验结果显示,天然半导体矿物在光照情况下产生的光生电子可将Fe3+还原为Fe2+,其中金红石光催化还原Fe3+的效率为12.5%,闪锌矿为7.86%,该过程通过天然半导体矿物的日光催化作用实现了太阳光能→电能→化学能的转化;控制电势的微生物电化学反应实验结果显示,化能自养型微生物A.f.菌的细胞增加量与外界电子传入而生成的Fe2+的量呈线性关系,且有外来电子传入实验组的A.f.生长量是无电子传入组的441%,该过程通过菌的生长代谢作用实现了化学能→生物质能的转化.进一步的光电化学和微生物电化学耦合实验结果证明,在太阳光和天然半导体矿物共同作用下,A.f.菌的对数生长期由无光时的36 h延长到72 h,同时细菌的生长在该能量转化过程中得到了明显促进.在天然闪锌矿催化条件下,有光条件的A.f.菌数量增加到无光条件的1.90倍;而在金红石催化条件下,有光条件的A.f.菌数量增加到无光条件的1.69倍.实验结果说明,在以天然半导体矿物为媒介的情况下,化能自养微生物可间接利用太阳能来获得自身的生长繁殖所需的能量,这一过程也实现了太阳光能→电能→化学能→生物质能的能量转化途径.  相似文献   

16.
赵得秀 《地学前缘》2001,8(2):225-233
大气环流所需能源除太阳辐射为主要能源外 ,地震亦是不容忽视的外在能源。据统计 ,每年全球发生震级M >5以上的地震约 10 0 0次 ,每次地震在震中附近有一个增温区 ,可向大气环流补充能量。特别是环太平洋地震带 ,这里既是地震多发区 ,又是台风多发区 ,地震能影响台风运动并影响大气环流运动。除日食能影响大气环流外 ,地震亦是一个不可忽视的因素。通过对 1993,1999年用日食效应及日食、地震效应数学模拟计算 ,充分证明地震是可以影响大气环流运动的新因素。  相似文献   

17.
黄河流域水资源-能源-粮食的协同优化   总被引:3,自引:0,他引:3       下载免费PDF全文
黄河流域是中国重要能源和粮食主产区,然而水资源短缺已成为制约能源、粮食发展的关键要素。为优化流域水资源、能源、粮食之间的关系,引入协同学原理构建水资源-能源-粮食整体分析框架,建立具有总分结构、互馈关联的协同优化模型,采用多要素均衡智能算法,提出黄河流域粮食生产、能源开发与水资源调配一体优化的布局方案。结果表明,通过水资源-能源-粮食协同优化,2030年增加流域供水量23.98亿m3;优化了流域粮食生产布局,人均粮食产量提高12%;优选了能源产业规模和结构,煤炭开采、石油加工和火电总装机分别增加了2.86倍、4.08倍和0.80倍;在满足生活、生态环境用水的同时实现了粮食增收、能源增产。  相似文献   

18.
人类开发应用石英具有悠久的历史:早在石器时代,人类就曾将石英作为装饰品、工具、法器、武器、日用品等应用;在工业时代,石英主要作为玻璃原料及冶金熔剂使用;当代,石英广泛应用于许多工业和高科技领域。近年来,石英作为可再生能源及其它高科技领域用的材料,特别是以石英为原料制备多晶硅及单晶硅作为微电子学材料及太阳能利用材料方面展示了广阔的前景。但这个领域对石英纯度的要求很高,通过传统的提纯和晶体生长技术将石英转化为硅很不经济,因为传统方法大量使用氯、氯化氢及四氯化硅对环境有负面影响。而开发闭路循环技术系统或使用高纯度石英原料足解决这个问题的重要途径,前者取决于化学冶金技术水平,而后者则取决于矿产地质。因此,高纯度石英的找矿评价及工业硅的提纯是大力发展太阳能产业的重要途径。目前,以石英为原料进行高纯半导体材料和微电子材料等的合成在有些国家已经大规模工业化,并形成产业,如太阳能产业和高科技工业。据预测,在2010至2012年间,高纯石英原料将会短缺且竞争激烈。根据发达国家的实践经验,在哈萨克斯坦建立用于太阳能和其它高科技工业的高纯石英基地具有重要的理论和现实意义。哈萨克斯坦高纯石英资源丰富,在哈萨克斯坦中部,变质成因的石英脉及交代型的石英岩很普通,在东部、中部、南部和西部,石英结晶仡岗岩则很多,水晶矿床则主要集中在哈萨克斯坦的西南地区,花岗岩侵入体的水晶矿以及粒状石英脉几乎在哈萨克斯坦到处都有分布,结晶花岗岩则分布在哈萨克斯坦北部和南部地区,但是该国针对高纯石英的工业化研究与应用则很少。埃及的石英原料也很丰富,主要矿床位于该国中部和东南部地区,工业化研究与应用也很少。建议这两个国家将高纯石英原料作为太阳能产业及其它高科技产业发展的重点研究领域。  相似文献   

19.
Application of models over large areas requires enormous amounts of point data which are seldom available. As a result, the use of remote sensing to acquire data for these models becomes a practical alternative because from space areal measurements can be made over entire regions. Remote sensing data sets of snow are being studied and refined for input into energy balance, hydrological, and general circulation models. Snow influences the amount of solar energy retained and returned to space, the utilization of radiant energy in the hydrological cycle, and the atmospheric circulation by interacting with and modifying air masses. The continually evolving remote sensing technology will be used to provide a better understanding of how snow cover influences global climate and a better fundamental understanding of snow accumulation and ablation processes.  相似文献   

20.
Under the ever-present solar radiation, photosynthetic organisms on Earth evolved structurally-sophisticated photosynthetic systems. However, little attention has been paid to the inherent impact of sunlight illumination on the inorganic minerals widespread on the Earth surface. We discovered for the first time the solar energy conversion system of the “mineral coatings” on the Earth's surface (aka“mineral membrane”), which exerts potential oxygen-production and carbon-sequestration functions on the Earth surface. Our finding shed a light on the photoelectric effect and non-classical photosynthesis involving natural semiconducting minerals. In this contribution, we studied the semiconducting property and photoelectron energy of typical minerals in the “mineral membrane”, focusing primarily on the photoelectric effect in and oxygen-production/carbon-sequestration function of ferromanganese oxides, as well as relevant geological records. We propose that birnessite, goethite and hematite, the semiconducting minerals commonly found in the “mineral membrane”, can perform sensitive and stable photon-to-electron conversion under solar radiation. The non-classical mineral photosynthetic function we put forth is as follows: Solar energy utilization by inorganic minerals resembles photosynthesis in regarding to oxygen evolution and carbon fixing, and the “mineral membrane” may take part in both photocatalytic water-oxidation reaction and transformation of atmospheric CO2into marine carbonate. In addition, minerals might as well have promoted photosynthesis in photosynthetic organisms. During the water-oxidation reaction, the inorganic cluster Mn4CaO5of photosystem II cycles through redox intermediates that are analogous to birnessite both in structure and component. Thus, it is fair to postulate that birnessites could play a role in the initiation of the photosynthesis in cyanobacteria, as minerals could weaken the hydrogen bond strength and alter water properties, thus facilitating water oxidation and photosynthesis. This observation offers further insights into the molecular mechanism of mineral participation in photosynthesis in photosynthetic organisms.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号