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    题名 作者 年代 出处 被引量
1自然资源(基本)法立法可行性研究报告显示文摘本文立足于我国基本国情,全面分析了自然资源(基本)法立法的客观依据和现实条件,对自然资源(基本)法及替代方案进行了比较研究,在此基础上。Research Group of Feasibility Research of the Legislation of Natural Resources Basic law 1998兰州大学学报(社会科学版)1998,26,3:13
2中国北方岩溶含水介质研究显示文摘岩溶含水介质是决定岩溶水文地质系统功能的最基本要素,是水文地质工作者长期关注的问题之一。本文把碳酸盐岩岩石学的现代理论同岩溶学、洞穴学、构造地质学与水文地质学密切结合起来,对碳酸盐岩骨架、岩溶含水空间的微观和宏观介质特征进行了深入的研究,把中国北方岩溶含水介质概化为五种类型。Working Group of the Research Project Groundwater Resources in Karst Areas of North China and Prediction, Use and Management of Karst Water in Mine Areas 1990中国岩溶1990,9,4:12
3Sequencing,annotation and comparative analysis of nine BACs of the giant panda(Ailuropoda melanoleuca)显示文摘A 10-fold BAC library for the giant panda was constructed and nine BACs were selected to generate finish sequences.These BACs could be used as a validation resource for the de novo assembly accuracy of the whole genome shotgun sequencing reads of the giant panda newly generated by Illumina GA sequencing technology.Complete Sanger sequencing,assembly,annotation and comparative analysis were carried out on the selected BACs of a joint length 878 kb.Homologue search and de novo prediction methods were used to annotate genes and repeats.Twelve protein coding genes were predicted,seven of which could be functionally annotated.The seven genes have an average gene size of about 41 kb,an average coding size of about 1.2 kb and an average exon number of 6 per gene.Besides,seven tRNA genes were found.About 27 percent of the BAC sequence is composed of repeats.A phylogenetic tree was constructed using a neighbor-join algorithm across five species,including the giant panda,human,dog,cat and mouse,which reconfirms dog as the most closely related species to the giant panda.Our results provide detailed sequence and structure information for new genes and repeats of the giant panda,which will be helpful for further studies about the giant panda.ZHENG Yang1,2,3,CAI Jing4,LI JianWen3,6,LI Bo3,LIN RunMao3,TIAN Feng3,WANG XiaoLing3 & WANG Jun3,5 1Beijing Institute of Genomics,Chinese Academy of Sciences(CAS),Beijing 100029,China 2College of Life Science,Graduate University of Chinese Academy of Sciences,Beijing 100049,China 3Beijing Genomics Institute at Shenzhen,Shenzhen 518083,China 4CAS-Max Planck Junior Research Group on Evolutionary Genomics,State Key Laboratory of Genetic Resources and Evolution,Kunming Institute of Zoology,Chinese Academy of Sciences(CAS),Kunming 650223,China 5Department of Biology,University of Copenhagen,Copenhagen DK-2200,Denmark 6School of Biological Science and Engineering,South China University of Technology,Guangzhou 510006,China 2010Science China(Life Sciences)2010,53,1:5
4Base level change and depositional filling response of Jurassic in the Qiangtang Basin of Tibet显示文摘The base level during the deposition of Jurassic in the Qiangtang Basin shows a complete cycle from rising to falling. The base level change is closely connected with tectonic evolution of the basin,especially connected with Bangonghu-Nujiang ocean evolution process in the formation and evolution of the basin. It is also affected by climate. The Jurassic strata correspond to a long-term base level cycle sequence. The sequence is in fact a non-complete symmetrical cycle,consisting of rising hemicycle and falling hemicycle. It can be divided into 6 intermediate-term base level cycle sequences,including 2 carbonate sequences,3 mixture sedimentary sequences of carbonate and clastic rocks and one clastic sedimentary sequence. Depositional filling characteristics during base level change show that Bangonghu-Nujiang ocean spreads in Toarcian-Bajocian ages,and is at the height of spreading of Bangonghu-Nujiang ocean in Bathonian-Oxfordian ages. In that process,sea area became smaller because of the dry climate. Eventually,marine depositional filling is ended with the subduction and collision of Bangonghu-Nujiang ocean.ZHANG ShangFeng1,2,ZHANG ChangMin1,HU MingYi1,GONG WenPing1,XIAO ChuanTao1,LIU AiHua1 & Lü Dong11 Remaining Resources Research Group of Geoscience College,Yangtze University,Jingzhou 434023,China 2 Key Laboratory of Exploration Technologies for Oil and Gas Resources,Ministry of Education of China,Yangtze University,Jingzhou 434023,China 2009Science China Earth Sciences2009,52,S1:2
5社会经济公平:持续发展的关键要素显示文摘人们似乎不会怀疑,一个较为公平的世界会变得更加持久,只要思考一下在关于保护臭氧层和控制温室气体排放国际协议谈判过程中引起的南北紧张,就会看到这一点。目前发达国家与欠发达国家的收入差距,使穷国对向穷国鼓吹资源紧张和过度消耗资源的富国起了疑心。然而人类创造持久文明的唯一机遇有赖于全球合作。Gretchen C.Daily Energy Resources Group Anne H. Paul R.Ehrlich 董锁成 1995人类环境杂志1995,24,1:1
6Combination of drainage, water supply and environmental protection as well as rational distribution of water resource in Zhengzhou mining district显示文摘The geological condition of coalfield is much complex in China. With increasing in mining depth and drainage amount, the contradiction of drainage, water supply and environ-mental protection is becoming more and more serious. However, the contradiction can be solved by the scientific management of optimizing combination of drainage, water supply and environ-mental protection. The Philip multiple objectives simplex method used in this article has searched for a possible solution at the first step, and then it goes on searching to find out whether there is a weight number that can lead the solution to the biggest. It can reduce the randomness and diffi-culty of traditional weight method which determine the weight number artificially. Some beneficial coefficients are vague and the number is larger in the model of water resource dispatch. So the vague layer analysis method can consider these vague factors fully, combining the qualitative and quantitative analysis together. Especially, this method can quantify the experiential judge-ment of policy decider, and it will turn to be more suitable if the structure of objective factors is complex or the necessary data are absent. In the paper, the two methods above are used to solve the plans of drainage, water supply and optimizing distribution of water resource in the Zhengzhou mining district.WU Qiang1, LI Duo1,2, DI Zhiqiang3, MIAO Ying3, ZHAO Suqi4 & GUO Qiwen5 1. Resource Exploitation Engineering College, CUMT, Beijing 100083, China 2. Shijiazhuang Engineering College, University of Economics, Shijiazhuang 050031, China 3. Shenyang Institute of Geology and Mineral Resources, Shenyang 110032, China 4. State Adminstration of Coal Mine Safety, Beijing 100013, China 5. Zhengzhou Coal Mine Company (Group), Zhengzhou 452371, China 2005Science China Earth Sciences2005,48,10:1
7Protection of Children Away Lead Poisoning显示文摘Group of Environment and Health Research Institute of Geographic Sciences and Natural Resources Research CAS 2002Xiamen Science and Technology (in Chinese)2002,4,:1
8隔河岩工程弦矢导线施工及安装调试显示文摘结合弦矢导线的原理,阐述了隔河岩工程弦矢导线的系统构成、施工安装及调试的过程。弦矢导线在大坝安全监测中是一种新的尝试,也是一种可行的监测手段。Luo Chen (Surveying and Mapping General Team of China Gezhouba Construction Group Corporation for Water Resources and Hydropower,443002,Yichang,Hubei) 1998大坝观测与土工测试1998,22,4:1
9台湾省地层多重划分对比研究显示文摘台湾省地层多重划分对比研究福建省地矿局台湾省地层研究组(福建省地质矿产局,福州,350003)地层学是地层领域中的基础学科。随着现代地层学和沉积学的发展,地质学家普遍认识到沉积地层叠复是在复杂的侧向堆积过程中形成的,且岩石地层单位具有普遍的穿时性。因...Taiwan Strata Research Group(Fujian Bureau of Geology and Mineral Resources,Fuzhou,350003) 1995福建地质1995,14,3:1
10计算机仿真与系统工程技术在森林资源监测中的应用研究显示文摘本文研制的森林资源监测系统是由基层生产单位建立的资源信息采集点和计算机系统软件组成的.本系统将森林经理、林业经济、数理统计、最优控制和系统科学的理论与方法同计算机软件工程技术相结合,建立了以仿真模型为主体,并配以其他辅助模型的森林资源数据更新、预测和决策的动态监测系统.它包括6个子系统,共有可执行文件68个,其他程序文件数十个,另外还有几十个运行中自动生成的文件.The Project Research Group of Forest Resources Monitoring System 1992北京林业大学学报1992,14,4:0
11云南地勘局企业化经营的认识与实践显示文摘云南地勘局企业化经营的改革是以局为单元重组思路的典型,这个改革思路共有六个要点:①以局为单元调整产业结构,构建主导产业和支柱产业,着眼于提高市场竞争能力;②以主导产业和支柱产业的企业为主体,进行公司制改革,着眼于所有制结构改革和机制转变;③以队为主,放开搞活小企业、网点,采取多种形式分流富余人员;④以地质队基地为基础,组建物业管理中心,减轻企业办社会的压力;⑤正确处理地方政府与局、局与所属企业的关系;⑥实行配套改革。这六个方面互为条件,相互依存,构成地勘局由事业转向企业的完整工程。Ivestigation Group of chinese Economic Society of Geology and Mineral Resources 1999中国地质矿产经济1999,12,12:0
12积极稳妥地推进地勘事业体制向企业体制转变显示文摘文章通过对地勘部门和单位转企建制工作的全面分析之后,对如何积极稳妥地推进地勘事业体制转向企业体制,从转企思路、转变观念、发展经济、以及政策措施等方面。Joint Investigation Group by Economic Institute of Metallurgical geology and Mineral Resources and No.1 Geological Prospecting Bureau of Metallurgical Industry 1998中国地质矿产经济1998,11,10:0
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