首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 62 毫秒
1.
Progress and Prospects of Salt Lake Research in China   总被引:3,自引:0,他引:3  
China has unique salt lake resources, and they are distributed in the east of Eurasian salt lake subzone of the Northern Hemisphere Salt Lake Zone, mainly concentrated in the regions with modern mean annual precipitation lower than 500 mm. This paper preliminarily reviews the progress made in salt lake research in China for the past 60 years. In the research of Paleoclimate and paleoenvironment from salt lake sediments, a series of salts have been proposed to be indicators of paleoclimate, and have been well accepted by scholars. The chloride-sulfate depositional regions of the west Qaidam and the east Tarim have been revealed to be the drought center of China since the Quaternary, and more than 6 spreading stages of arid climate(salt forming) have been identified. Five pan-lake periods with highstands have been proved to exist during the late Quaternary on the Tibetan Plateau. In mineral resource prospecting and theories of the forming of salt deposits: the atlas(1:2500000) of hydrochemical zoning of salt lakes on the Tibetan Plateau has been compiled for the first time, revealing the zonal distribution and transition from carbonate type to chloride type from south to north and presenting corresponding mineral assemblages for different type of salt lakes; several large continental salt deposits have been discovered and the theory of continental potash deposition has been developed, including the salt deposition in deep basins surrounded by high mountains, the mineral deposition from multistage evolution through chains of moderate or shallow lakes with multilevels, the origin of potassium rich brines in gravel layers, and the forming of potassium deposits through the inheriting from ancient salt deposits, thus establishing the framework of "Continental Potash Deposition Theory"; several new types of Mg-borate deposits have been discovered, including the ulexite and pinnoite bed in Da Qaidam Lake, Qinghai, the pinnoite and kurnakovite bed in Chagcam Caka, Tibet, the kurnakovite bed in Lake Nyer, and the corresponding model of borate deposition from the cooling and dissolution of boron rich brines was proposed based on principles of geology, physics and chemistry. The anti-floatation-cold crystallization method developed independently has improved the capacity of KCl production to 3 million tons per year for the Qarham, serving the famous brand of potash fertilizer products. One 1.2 million ton K-sulfate production line, the biggest in the world, has been built in Lop Nor, and K-sulfate of about 1.6 million tons was produced in 2015. Supported by the new technology, i.e. brine preparation in winter-cooling-solarization-isolation-lithium deposition from salt gradient solar pond" the highest lithium production base at Zabuye Lake(4421 m), Tibet, has been established, which is the first lithium production base in China that reaches the year production of 5000 tons of lithium carbonate. The concept of Salt lake agriculture(Salt land agriculture) has been established based on the mass growth of Dunaliella and other bacillus-algae and the occurrence of various halophytes in saltmarsh and salt saline-alkali lands, finding a new way to increase arable lands and develop related green industry in salt rich environments. Finally this paper presents some new thoughts for the further research and development on salt science, and the further progress in salt science and technology will facilitate the maturing of the interdisciplinary science "Salinology".  相似文献   

2.
正Production of lithium carbonate from brines has become the dominate trend in the world from the beginning of this century.Dangxiongcuo,a carbonate-type salt lake,is located in the interior of the Tibetan Plateau,China.As a salt lake deposit,rich in Li,B,K and other useful trace  相似文献   

3.
The paper discusses the distribution of Quaternary sediments, occurrence of saline minerals and phases of neotectonic movements and their manifestations in the Qaidam basin. The formation of four successive lacustrine terraces in Tertiary anticlinal zones in the western part of the basin was related to the neotectonic movements that took place 100 Ka ago, and the distribution of such terraces discloses, in a way. the evolutionary history of the Quaternary salt lakes. According to the distribution of the terraces coupled with the distribution of Quaternary sediments and features of salt deposition, four periods of Quaternary salt lake evolution in the basin may be distinguished, which correspond to four stages of salt deposition respectively.  相似文献   

4.
正At present,the extraction of lithium from salt lake brine is the new trend of the salt lake industrialization.The saltine lake lithium resources are extremely rich in western china,especially in Qinghai-Tibetan plateau.Brine of salt  相似文献   

5.
正The research status and the future study prospect of salt lake organisms of Chinese salt lakes were elaborated in this paper.Many saline lakes occur widely in arid and semiarid areas of China,and more than half of the total  相似文献   

6.
正1 Introduction Yuncheng Salt Lake is an old lake with a history of more than 5000 years,which locates in the margins of the central plains of China,with an area of about 130 km.It was an important resource of salt for human consumption from early times.Major chemicals in Yuncheng Salt Lake contain Na Cl,Na2SO4 and Mg SO4(Gao et al.2007).In recent years,some halophilic bacteria and archaea were  相似文献   

7.
Bulk mineral resources of iron ores, copper ores, bauxite, lead ores, zinc ores and potassium salt play a pivotal role on the world’s and China’s economic development. This study analyzed and predicted their resources base and potential, development and utilization and their world’s and China’s supply and demand situation in the future 20 years. The supply and demand of these six bulk mineral products are generally balanced, with a slight surplus, which will guarantee the stability of the international mineral commodity market supply. The six mineral resources(especially iron ores and copper ores) are abundant and have a great potential, and their development and utilization scale will gradually increase. Till the end of 2014, the reserveproduction ratio of iron, copper, bauxite, lead, zinc ores and potassium salt was 95 years, 42 years, 100 years, 17 years, 37 years and 170 years, respectively. Except lead ores, the other five types all have reserve-production ratio exceeding 20 years, indicative of a high resources guarantee degree. If the utilization of recycled metals is counted in, the supply of the world’s six mineral products will exceed the demand in the future twenty years. In 2015–2035, the supply of iron ores, refined copper, primary aluminum, refined lead, zinc and potassium salt will exceed their demand by 0.4–0.7 billion tons(Gt), 5.0–6.0 million tons(Mt), 1.1–8.9 Mt, 1.0–2.0 Mt, 1.2–2.0 Mt and 4.8–5.6 Mt, respectively. It is predicted that there is no problem with the supply side of bulk mineral products such as iron ores, but local or structural shortage may occur because of geopolitics, monopoly control, resources nationalism and trade friction. Affected by China’s compressed industrialized development model, the demand of iron ores(crude steel), potassium salt, refined lead, refined copper, bauxite(primary aluminum) and zinc will gradually reach their peak in advance. The demand peak of iron ores(crude steel) will reach around 2015, 2016 for potassium salt, 2020 for refined lead, 2021 for bauxite(primary aluminum), 2022 for refined copper and 2023 for zinc. China’s demand for iron ores(crude steel), bauxite(primary aluminum) and zinc in the future 20 years will decline among the world’s demand, while that for refined copper, refined lead and potassium salt will slightly increase. The demand for bulk mineral products still remains high. In 2015–2035, China’s accumulative demand for iron ores(crude steel) will be 20.313 Gt(13.429 Gt), 0.304 Gt for refined copper, 2.466 Gt(0.616 Gt) of bauxite(primary aluminum), 0.102 Gt of refined lead, 0.138 Gt of zinc and 0.157 Gt of potassium salt, and they account for the world’s YOY(YOY) accumulative demand of 35.17%, 51.09%, 48.47%, 46.62%, 43.95% and 21.84%, respectively. This proportion is 49.40%, 102.52%, 87.44%, 105.65%, 93.62% and 106.49% of that in 2014, respectively. From the supply side of China’s bulk mineral resources, it is forecasted that the accumulative supply of primary(mine) mineral products in 2015–2035 is 4.046 Gt of iron ores, 0.591 Gt of copper,1.129 Gt of bauxite, 63.661 Mt of(mine) lead, 0.109 Gt of(mine) zinc and 0.128 Gt of potassium salt, which accounts for 8.82%, 13.92%, 26.67%, 47.09%, 33.04% and 15.56% of the world’s predicted YOY production, respectively. With the rapid increase in the smelting capacity of iron and steel and alumina, the rate of capacity utilization for crude steel, refined copper, alumina, primary aluminum and refined lead in 2014 was 72.13%, 83.63%, 74.45%, 70.76% and 72.22%, respectively. During 2000–2014, the rate of capacity utilization for China’s crude steel and refined copper showed a generally fluctuating decrease, which leads to an insufficient supply of primary mineral products. It is forecasted that the supply insufficiency of iron ores in 2015–2035 is 17.44 Gt, 0.245 Gt of copper in copper concentrates, 1.337 Gt of bauxite, 38.44 Mt of lead in lead concentrates and 29.19 Mt of zinc in zinc concentrates. China has gradually raised the utilization of recycled metals, which has mitigated the insufficient supply of primary metal products to some extent. It is forecasted that in 2015–2035 the accumulative utilization amount of steel scrap(iron ores) is 3.27 Gt(5.08 Gt), 70.312 Mt of recycled copper, 0.2 Gt of recycled aluminum, 48 Mt of recycled lead and 7.7 Mt of recycled zinc. The analysis on the supply and demand situation of China’s bulk mineral resources in 2015–2035 suggests that the supply-demand contradiction for these six types of mineral products will decrease, indicative of a generally declining external dependency. If the use of recycled metal amount is counted in, the external dependency of China’s iron, copper, bauxite, lead, zinc and potassium salt will be 79%, 65%, 26%, 8%, 16% and 18% in 2014, respectively. It is predicted that this external dependency will decrease to 62%, 64%, 20%,-0.93%, 16% and 14% in 2020, respectively, showing an overall decreasing trend. We propose the following suggestions correspondingly.(1) The demand peak of China’s crude steel and potassium salt will reach during 2015–2023 in succession. Mining transformation should be planned and deployed in advance to deal with the arrival of this demand peak.(2) The supply-demand contradiction of China’s bulk mineral resources will mitigate in the future 20 years, and the external dependency will decrease accordingly. It is suggested to adjust the mineral resources management policies according to different minerals and regions, and regulate the exploration and development activities.(3) China should further establish and improve the forced mechanism of resolving the smelting overcapacity of steel, refined copper, primary aluminum, lead and zinc to really achieve the goal of "reducing excess production capacity".(4) In accordance with the national strategic deployment of "One Belt One Road", China should encourage the excess capacity of steel, copper, alumina and primary aluminum enterprises to transfer to those countries or areas with abundant resources, high energy matching degree and relatively excellent infrastructure. Based on the national conditions, mining condition and geopolitics of the resources countries, we will gradually build steel, copper, aluminum and lead-zinc smelting bases, and potash processing and production bases, which will promote the excess capacity to transfer to the overseas orderly.(5) It is proposed to strengthen the planning and management of renewable resources recycling and to construct industrial base of renewable metal recycling.(6) China should promote the comprehensive development and utilization of paragenetic and associated mineral species to further improve the comprehensive utilization of bulk mineral resources.  相似文献   

8.
邴慧  何平  杨成松 《冰川冻土》2004,26(Z1):44-49
As to salty soil, salt migrates with water in freezing soils, assembles and crystallizes continuously. Consequently the swelling of the soil volume leads to the phenomenon of salt heaving. It has a practical significance for solving salt-heaving and frost-heaving damage in engineering to deepen the understanding of salt heaving mechanism. In this paper a general overview about new research results at this aspect was presented. And then the study of salt migration and salt heaving mechanism and present salt heaving models were summarized. For further researching the field of salt transfer it is urgent to continually strengthen the salt migration and the numerical simulation study of salt heaving mechanism to expect perfecting the general evaluation of salt heaving prediction models so as to have a better service for engineering.  相似文献   

9.
Deposition of Potash-Magnesium Salts in the Qarhan Playa, Qaidam Basin   总被引:1,自引:0,他引:1  
The Qarhan potash-magnesium salt deposit, which consists from east to west of four playa districts, namely Huobuxun, Qarhan, Dabuxun and Bieletan, may be divided from bottom to top into three salt beds(S_1, S_2 and S_3), with potash salts mainly occurring in S_3. The paper lays emphasis on the evolutionary history of the deposition of Salt Bed S_3 and the modes of formation of potash salts in the Qarhan playa.The analysis of the data obtained from more than 170 boreholes and the geochemical studies on bromine, magnesium and calcium reveal the existence of four concentration stages and three dilution stages during the ormation of the Upper Salt Bed S_3. In the process of concentration, evaporation of brine and precipitation of salt minerals dominated, which obeyed the regularity indicated by the phase diagram of the quaternary system Mg-Na-K/Cl~-H_2O. In the dilution stages, however, mixing of brines, dissolution of salts(especially the playa) and mechanical clastic deposition played the leading role. The prerequisite for mixing in the Qarhan salt deposit lies in that chloride type brine of the northeastern part coexists with magnesium sulfate type brine of the southwestern part in the same salt lake. The appearance of bassanite has verified the process of mixing. The dissolution refers to the partial dissolution of the salt beds originally deposited. Particularly in the last dilution process, approximately 200 km~2 of the playa north of the Tuanjie Lake had been dissolved before a new-born lake took form.Solid potash salts were formed in three ways:(1) The surficial brine of the Dabuxun lake coexistent with the playa had an intercompensational relationship with the intercrystalline brine in the playa. As a result, K~+ ions were collected into the lake, and layered Carnallite precipitated from lake brine during the seasons of evaporation, which was accelerated by the action of wind.(2) Disseminated potash-magnesium salts were formed by further concentration of intercrystalline brine.(3) Dissolution and reformation of the playa resultedin the formation of a new-born salt lake, in the drying of which brine collected the potash-magnesium salts originally dispersed over the playa into local low-lying areas, forming finally stratoid potash-magnesium salts.  相似文献   

10.
Zabuye Salt Lake in Tibet, China is a carbonate-type salt lake, which has some unique characteristics that make it different from other types of salt lakes. The lake is at the latter period in its evolution and contains liquid and solid resources. Its brine is rich in Li, B, K and other useful minor elements that are of great economic value. We studied the concentration behavior of these elements and the crystallization paths of salts during isothermal evaporation of brine at 15°C and 25°C. The crystallization sequence of the primary salts from the brine at 25°C is halite (NaCl) → aphthitalite (3K2SO4·Na2SO4) → zabuyelite (Li2CO3)→ trona (Na2CO3·NaHCO3·2H2O) → thermonatrite (Na2CO3·H2O) → sylvite (KCl), while the sequence is halite (NaCl) → sylvite (KCl) → trona (Na2CO3·NaHCO3·2H2O) → zabuyelite (Li2CO3) → thermonatrite (Na2CO3·H2O) → aphthitalite (3K2SO4·Na2SO4) at 15°C. They are in accordance with the metastable phase diagram of the Na+, K+-Cl?, CO32?, SO42?-H2O quinary system at 25°C, except for Na2CO3·7H2O which is replaced by trona and thermonatrite. In the 25°C experiment, zabuyelite (Li2CO3) was precipitated in the early stage because Li2CO3 is supersaturated in the brine at 25°C, in contrast with that at 15°C, it precipitated in the later stage. Potash was precipitated in the middle and late stages in both experiments, while boron was concentrated in the early and middle stages and precipitated in the late stage.  相似文献   

11.
温降时之盐分重分布及盐胀试验研究   总被引:4,自引:7,他引:4  
盐渍土广泛分布于西北、内蒙、东北及山东等地区,由于温差变化与蒸发作用,土壤水溶液中的盐分将部分离析出并结晶,同时部分盐分将从暖区向冷区、自湿区向干区迁移、聚集且结晶,导致土体积膨胀,即盐胀(亦称松胀)。土的盐胀作用给土木、水利、道路、机场等工程带来特殊的工程地质问题。本文通过试验研究,讨论了降温时土中盐分的重分布及盐胀现象,盐胀的不可逆性及激烈盐胀温度区,期望对工程防治盐胀病害有所见益。  相似文献   

12.
A water/salt system in an evaporative environment is both a physicochemical region and a biological one. All the parameters of the system, such as the salinity, temperature and CO2 partial pressure, are affected by halo-philic bacteria. The system controls salt deposition but is modified by an accompanying ecological system; therefore it should be called a water/salt/biological system. Salt minerals result from accumulation of the remains of bacteria/algae, namely, bacteria/algae formation; whereas biological, biophysical and biochemical processes provide full evidence for organic involvement. Consequently, salt deposits should not be called purely chemical but biological/chemical ones. This new argument supplements and develops the traditional idea and helps perfect the mineralization theory of salts and even general deposits, thus giving guidance to prospecting for salt deposits.  相似文献   

13.
近年来在八岭山-花园背斜构造翼部有新的油气发现,有必要对其构造性质进行再认识。通过地震解剖,认为渔洋组-新沟嘴组(K2y-Ex)有盐和盐泥两类构造叠置,可进一步划分为盐丘-盐柱多层叠置构造、盐泥丘-盐泥株(柱)构造和盐泥丘构造;盐泥构造的形成是塑化的盐泥岩顺层蠕动使每一单层变厚、多层累加增厚的叠加效应结果,盐泥沿早期断层侵入或底辟导致逆断层的产生,使断层具有下正上逆的特点;差异负荷和火山热对流为其主导动力学机制;渔洋组-沙市组下段(K2y-Es下)盐丘-盐柱产生期为中始新世,主要形成期为晚渐新世,沙市组上段-新沟嘴组(Es上-Ex)盐泥构造产生期为晚渐新世,两者均于更新世基本定型;盐泥构造翼部地层-盐泥封挡和上倾尖灭岩性-盐泥封挡圈闭为潜在的油气藏勘探类型。  相似文献   

14.
中国盐湖科学技术研究的若干进展与展望   总被引:19,自引:0,他引:19  
我国拥有得天独厚的盐湖资源,分布于北半球盐湖带欧亚盐湖亚带东部,主要分布在现代降水量500mm/a的范围内。本文对中国盐湖科学技术60年来取得的若干进展进行初步梳理。1.在盐湖沉积与古气候、古环境研究方面:提出了各种盐类矿物的古气候转换指标。柴达木西部-塔里木东部氯化物型-硫酸盐型沉积区为我国第四纪以来干旱成盐中心,历经了6次以上的向外干旱(成盐)扩张期;提出青藏高原第四纪晚期存在5次泛湖高湖面;2.在盐湖成矿与成盐成钾理论研究方面:首编青藏高原湖泊水化学分带图(1/250万),揭示了青藏高原盐湖水化学类型由南往北、由碳酸盐-氯化物型分布规律及其相应成盐成矿专属性;发现几个大型陆相钾盐矿床,提出了高山深盆成盐模式、链式多级中浅盐湖成矿模式、多级湖盆深盆成盐模式、砂砾型含钾卤水成矿模式以及"隔代承袭成钾"等新认识,建立和发展了"陆相成钾"理论认识;发现青海大柴旦湖钠硼解石-柱硼镁石矿床、西藏扎仓茶卡柱硼镁石-库水硼镁石矿床、聂尔错库水硼镁石矿床等新类型镁硼酸盐(锂)矿床,进而提出冷冻稀释成硼理论新认识。3.自主研发出的"反浮选冷结晶工艺"生产氯化钾自控系统,使察尔汗盐湖钾盐达到300万吨/年KCl产量,形成了名牌钾肥产品。成功研发了罗布泊120万吨/年硫酸钾成套技术,建成世界最大的硫酸钾生产装置,2015年产量达160万吨,以上为我国钾肥生产作出了重大贡献。在自主研发的"冬储卤-冷冻-日晒-分离-盐梯度太阳池积热沉锂"创新技术支撑下,在西藏高原海拔4421米的扎布耶盐湖建成了世界海拔最高的锂盐产业,也是我国首条年产5000吨碳酸锂的盐湖提锂基地。4.根据盐水域发育大面积杜氏藻等嗜盐菌藻、盐沼带和盐碱地繁衍多种盐生植物的盐境生态特点,提出"盐湖农业"("盐土农业")农业新概念,发展盐境绿色产业提供新的理念和技术支持。最后,为今后盐类科学发展方向,提出了深绿科技与产业研发方向,随着盐类科学技术的发展,将会促进新的边缘交叉学科盐类学(Salinology)的发展和日臻完善。  相似文献   

15.
西藏高原盐湖的构造地球化学和生物学研究   总被引:3,自引:0,他引:3       下载免费PDF全文
郑绵平  刘喜方  赵文 《地质学报》2007,81(12):1698-1708
按盐湖的盐类组分和地质构造背景差别,将其概分为普通盐湖和特种盐湖。前者产于克拉通、地台等稳定构造区;后者分布于活动构造区,包括大陆边缘火山弧后盆地或陆-陆碰撞带,板块转换带后盆地。西藏高原盐湖产于陆-陆碰撞带;盐湖硼和稀碱元素主要来自高原深部壳层重熔岩浆,热水成为输入盐湖中的重要载体;盐湖水化学类型和组分特征控制了不同的成矿专属性。笔者等对藏北高原作了大范围盐湖生物概查,在调查的125个湖泊中,确定30个盐湖有卤虫繁衍。在羌塘北部21个湖泊中,已鉴定出浮游植物95种,主要种类有Gloeothece linearis,Doctylococcopsis rhaphichoidesHansg,Chroococcus minor,Naviculasp.,Cymbella pusilla,Dunaliellasalina,Chlorella rulgaris,Diatoma elongatum。浮游动物共鉴定出原生动物16种,主要种类有Voriticellaspp.,Epistylisspp.,Keratella quadrata,Daphniopsis tibetana,Artemiasp.等。  相似文献   

16.
盐湖地区钾、钠、镁、锂、气资源丰富,盐湖资源的综合开发利用越来越受到人们的重视.但盐湖地区土环境中Mg^2+、Cl^-、SO4^2-离子含量高,对混凝土和钢结构的侵蚀破坏非常严重.通过化学和电化学检测手段,分析了盐湖地区几个典型地点土的电阻率、含盐量、pH值、氯离子含量和硫酸根离子含量等理化指标,根据相关标准分析评价了盐湖地区土的腐蚀性,评价结果表明,该盐湖土属于强腐蚀土.  相似文献   

17.
西藏当雄错盐湖卤水冬季日晒蒸发实验研究   总被引:7,自引:0,他引:7  
伍倩  郑绵平  乜贞  卜令忠 《地质学报》2013,87(3):433-440
西藏当雄错盐湖位于藏北高原腹地西南侧,其水化学类型属典型的中度碳酸盐型,具有很好的工业开发前景和价值.自然蒸发是盐田日晒工艺的应用基础工作,本文基于室内卤水等温蒸发实验的相关结果,在当雄错湖区现场开展了盐湖卤水冬季日晒蒸发实验,通过考察碳酸盐型盐湖卤水在现场低温条件下自然蒸发过程中液相各元素的富集规律以及矿物的结晶析盐规律,分析了锂、硼、钾等元素的集散行为,并根据卤水蒸发过程中的元素富集、蒸失水量、盐类析出顺序、矿物组合以及物化性质的变化探索了盐类分离的控制条件.以Na+,K+/CO2-3,SO2-4,Cl--H2O五元体系(25℃)介稳相图为参考依据,绘制了当雄错盐湖卤水冬季日晒蒸发的结晶析盐路线.实验结果表明,当雄错盐湖卤水在冬季日晒蒸发过程中依次析出石盐、泡碱、天然碱、硼砂、钾石盐和扎布耶石,另有少量芒硝和泡碱等低温产物会提前析出或被母液夹带析出,利用冬季低温蒸发可制取富锂卤水,蒸发后期的母卤还可用于提取硼砂和钾石盐等矿物资源.实验结果为下一步开展盐田工程设计及制卤工艺操作提供了必要的基础数据,同时也为碳酸盐型盐湖卤水的综合利用和开发提供了理论支持.  相似文献   

18.
中国盐湖资源与生态环境   总被引:12,自引:0,他引:12  
郑绵平 《地质学报》2010,84(11):1613-1622
中国盐湖区受干旱-半干旱气候控制,现代盐湖主要分布于年降水量500mm范围内。依据中国盐湖地貌、地质构造条件及物质成分特点,将中国盐湖划分为4个盐湖区,并简述第四纪以来各区由于古气候变化和地质构造活动性不同,而具有各自的盐湖演化特点。由于各区盐湖规模、经济价值和交通技术条件不同,开发利用程度有差异,以吉兰泰盐湖和运城盐湖综合利用和环境保护较好;以察尔汗为代表的钾盐湖开发规模最大。目前中国盐湖区环境还存在很多需要改善的问题,尤其是地处边远的中小型盐湖,采富弃贫、回收率低和单一矿种开采使大量伴生有用组分贫化等。同时,由于气候环境因素也引起盐湖环境的重大变化,在全球变暖的背景下,西北盐湖区,自1987年以来,出现向暖湿转型,湖泊有扩大上升趋势;青藏高原盐湖区则大致从1992年以来,由东往西,相继出现高湖面,显现向暖湿转型;而西北盐湖区仍处于暖干阶段,湖水位下降,盐湖沙化。随着中国全面建设小康和和谐社会的实施,生态环境保护日益受到重视,建议进一步吸取国内外在盐业综合利用、整体开发和环境保护的经验和先进技术,加强盐湖环境变化观察和监测,建设环境友好型的绿色大盐湖产业。  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