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| 1 | 义务教育均衡发展是实现教育公平的基石显示文摘我国义务教育均衡发展取得了很大成就,但依然面临着诸多问题和挑战。基于问题及其原因分析,相应的政策建议是明确政府是义务教育均衡发展的全部责任方,把地方促发展和中央给补偿有机结合起来;建立以'有质量的公平增长'为导向的义务教育资源配置机制;建立国家义务教育质量标准,发挥义务教育质量监测对教育公平发展的作用,并实行相应的问责制度;建立全国通用的义务教育卡,取消义务教育学校借读费,完善异地接受义务教育的保障机制;资助承担义务教育责任的民办学校。 | Center for Educational Policy Analysis of China National Institute for Educational Research | 2007 | 教育研究2007,28,2: | 75 |
| 2 | CO_2浓度变化和气候变化对中国陆地生态系统净初级生产及其平衡的影响(英文)显示文摘本文应用陆地生态系统模型(TEM,4.0)对中国陆地生态系统在目前气候下的净初级生产力,以及在CO2浓度增加和气候变化后的净初级生产力的变化进行了预测。气候变化模型采用三种大气环流模型生成,即:GISS、GFDL和OSU模型。在当前气候条件和CO2浓度(312.5×10-6)下,TEM模型预测中国陆地生态净初级生产力为3,653TgC·a-1(1012gC·a-1)。温带常绿阔叶林是生产力最高的生物区,占有中国净初级生产力的最大比例。NPP的空间格局主要与降水量和温度的空间分布相关联。中国陆地生态系统的年净初级生产力对CO2浓度和气候的变化敏感。在陆地区域尺度上,其年净初级生产力仅在CO2浓度上升至519×10-6的情况下可增加6.0%(219TgC·a-1)。在气候变化而无CO2浓度变化的条件下,净初级生产力的响应在GISS气候方案下表现为1.5%(54.8TgC·a-1)的降低,在GFDL-q气候方案下表现为8.4%(306.9TgC·a-1)的增加。在气候和CO2浓度均发生变化的情况下,净初级生产力有较大程度的增加,在GISS气候方案下的增加比例为18.7%(683TgC·a-1),在GFDL-q气候? | Xiao 1,2 , X., J.M.Melillo 1, D.W.Kicklighter 1, Y.Pan 1, A.D.McGuire 3 and J.Helfrich 1 ( 1The Ecosystems Center, Marine Biological Laboratory, Woods Hole, MA 02543, USA) ( 2 The Joint Program on the Science and Policy of Globa | 1998 | 植物生态学报1998,22,2: | 35 |
| 3 | 我国民事检察的功能定位和权力边界显示文摘我国的民事检察,是在人民代表大会政体制度下检察权对审判权进行有效制约的重要体现。要认识我国民事检察的功能定位和权力边界,应当在全面认识我国民事检察的地位、制度前提、理论基点、基本内容与特征及其基本原则的基础上,正确把握民事检察与司法权威、当事人的民事处分权、民事当事人的诉讼地位、民事裁判的不确定性、'裁判的既判力'原则、诉讼经济原则之间的关系;而要准确界定民事检察权行使的边界,则要正确处理好民事检察权与诉权、审判权、当事人的自力救济权、法院内部的监督制约、检察机关的职务犯罪侦查权之间的关系。2012年民诉法的修改,为中国民事检察制度的未来发展奠定了新的法律基础,也将使检察机关面临着新的问题与挑战。 | Law and Policy Research Office of the Supreme People’s Procuratorate | 2013 | 中国法学2013,,4: | 35 |
| 4 | A Practical Approach to Modifying Pairwise Comparison Matrices and Two Criteria of Modificatory Effectiveness | MA Weiye Bureau of Science & Technology Policy, Academia Sinica, Beijing 100080, PRCXU Jiangyue, WEI Yixiang Beijing University of Aeronautics & Astronautics, Beijing 10080, PRC | 1993 | Systems Science and Systems Engineering1993,3,4: | 35 |
| 5 | Change of surface cover greenness in China between 2000 and 2010显示文摘Surface greenness reflects the situation of vegetation cover.Vegetation index calculated from the Red and Near Infrared bands of remote sensing images,whose values indicate the level of photosynthetic activity,is monotonically related to surface greenness when vegetation canopy does not fully cover the background soil.Especially for desert regions,vegetation index is positively correlated with vegetation coverage.Therefore,vegetation index can be used to study the change in greenness of desert areas.This study collected MODIS Normalized Difference Vegetation Index (NDVI) data from 2000 to 2010 and analyzed their change over China in this period.The results showed that an increasing trend of NDVI occurred over 66.84% (OLS fitting) or 64.27% (LAD fitting) of China,indicating that China's greenness is increasing overall.Meanwhile,desertification of China decreased.Areas showing large increase in greenness are found in Shaanxi,Shanxi,Ningxia,Henan,Shandong,Qinghai,and Gansu while regions with large decrease in greenness are found in Northeast Inner Mongolia,South Tibet,Jiangsu,and Shanghai.Changes of Qinghai,Gansu,Xinjiang and South Tibet could probably be driven by climate factors.Decrease of greenness in Northeast Inner Mongolia was related to agricultural reclamation.Decrease of greenness in Jiangsu and Shanghai was related to rapid urbanization.Climate factors did not exhibit obvious correspondence to the large increase in greenness in Shaanxi,Shanxi,Ningxia and Gansu,indicating that the changes might have been caused by human factors.The reduction of desert areas in China could probably have been caused by human management and protection at the national scale. | LIU Shuang1,4& GONG Peng1,2,31State Key Laboratory of Remote Sensing Science, Jointly Sponsored by Institute of Remote Sensing Applications of Chinese Academy of Sciences,and Beijing Normal University, Beijing 100101, China 2Institute for Global Change Studies & Center for Earth System Science, Tsinghua University, Beijing 100084, China 3Department of Environmental Science, Policy and Management, University of California, Berkeley, CA94720, USA 4Graduate University of Chinese Academy of Sciences, Beijing 100049, China | 2012 | Chinese Science Bulletin2012,57,22: | 23 |
| 6 | Regional differences and determinants of built-up area expansion in China显示文摘Based on remote sensing data on land use provided by the Chinese Academy of Sciences and socio-economic data collected by the authors,this paper analyzes the trends and regional differences in built-up area(BUA) expansion in China from the late 1980s to 2000,and empirically estimates the major determinants of BUA expansion in different regions in 1996―2000.In 1989―2000,although China's overall BUA expansion accelerated,the trends differed significantly among regions.BUA expansion in the central and western regions accelerated significantly,but it slowed down considerably in the east-ern region.The estimation results from our econometric analysis reveal that BUA expansion in the eastern region reached a period when economic growth had no further significant impact on per capita BUA,the land utilization in this region has become more intensive with further expansion of the economy.In the central and western regions,the BUA has expanded remarkably due to the relatively more flexible land development policies and the relatively cheap land prices.Therefore,as the econ-omy continues to grow rapidly,policies relating to BUA expansion and cultivated land reductions may face more serious challenges in the central and western regions. | HUANG JiKun1,2,ZHU LiFen3,1 & DENG XiangZheng1,2 1 Center for Chinese Agricultural Policy,Chinese Academy of Sciences,Beijing 100101,China 2 Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences,Beijing 100101,China 3 Research Center of the Economy of the Upper Reaches of the Yangtze River,Chongqing Technology and Business University,Chongqing 400067,China | 2007 | Science China Earth Sciences2007,50,12: | 17 |
| 7 | 2008年中国科技工作者状况调查显示文摘中国科协会同中国科技发展战略研究院,于2008年下半年组织开展了第2次全国科技工作者状况调查。本次调查依托中国科协分布在全国的209个科技工作者状况调查站点,通过随机抽样方法选取样本,共发放问卷32100份,回收合格问卷30078份,回收率为93.7%。与2003年进行的第1次全国科技工作者状况调查结果相比,2003-2007年间科技工作者队伍快速增长,科技人力资源数量从2002年末的2959万人增长到2007年末的5160万人,增长74%;年轻化趋势日益突出,40岁以下的达3700万人,占总量2/3以上;高学历化趋势明显,调查者中硕士、博士学位获得者从2002年末的11.4%提高至2007年末的25%;科研产出可观,2005-2007年间54.5%的科技工作者发表过学术论文,人均发表论文2.91篇;近50%科技工作者对中国创新政策环境给予较高评价,4/5的科技工作者关注党和国家大政方针,77.5%愿意参与公共事务管理。本次调查结果基本反映了中国科技工作者队伍素质、职业认同、工作压力、科研效率、微观环境、学术交流、继续教育、科技奖励、资助经费、知识产权、产学研合作等方面的状况及需改进的问题。 | Department of Policy Research and Publicity,China Association for Science and Technology,Beijing 100863,China | 2009 | 科技导报2009,27,13: | 14 |
| 8 | Eco-economic evolution, emergy evaluation and policy options for the sustainable development of Tibet显示文摘As economies and ecological support systems become more interdependent, new disciplines are needed to 'bridge the gap' of understanding between societies and nature. It is now clear that neither ecology nor economics alone can address the problems of our global commons. New measures of wealth, of value, of contributions and production are needed that acknowledge the 'natural capital' and 'ecosystem services' provided from healthy environments. A new interface is now being recognized termed 'eco-economics'. It is an ambitious and necessary attempt to understand the affairs of humanity and nature as a single, interdependent system. New tools are being invested to measure wealth. services and production fairly and equitably. In this report we use systems analysis approach to study the combined ecological-economic system of Tibet We use an alternative measure of value, based on real contributions to system performance, termed EMERGY, spelt with an 'M'. It is an accounting unit of total contributions, direct and indirect. used in generating a product or service. It is a concept derived from understanding whole systems, their interactions and interdependence, and the resources driving and maintaining them. This broader approach will help us to investigate Tibetan resources utilization and potentialities and exchange. Emergy analysis allows comparison and incroporation of environmental costs and benefits with variables of traditional economic costs and benefits to provide a more comprehensive perspective for public policy directives. Through this research, we think: 1) China has made a great effort in making Tibet develop from a closed regional system to a more and more opened regional system which is very important to the sustainable development of Tibet. 2) The increase of economic development and population growth has a close relationship with the total emergy storage and use in transportation. Education in modern science and technology increased the shared emergy of Tibetans to modern science and technology and stimulated the process of matching material and energy imports from outside with local resources. 3) There is great potential to develop hydropower and geothermal reserves that may stimulate not only economic development but also the better use of environment. 4) The better trained population can increase the empower of Tibet eco-economic system. Future development needs all kinds of talent exchanges with the outside system to develop education. 3) Compared with the Tibet economic system, Taiwan economic system is much more competitive. GNP and emergy use are very useful functions for comparing the competitive power of different ecological economic systems. | YAN Mao-chao, H. T. Odum ( Commission for Integrated Survey of Natural Resources, Chinese Academy of Sciences, Beijing, China, Center for Environmental Policy, Department of Environmental Engineering Sciences, University of Florida, Gainesville, FL, USA) | 2000 | Journal of Geographical Sciences2000,10,1: | 13 |
| 9 | Sustainable Management of Planted Forests in China: Comprehensive Evaluation, Development Recommendation and Action Framework显示文摘China is one of the largest countries in the world in terms of planted forests area. Planted forests play an important role in soil and water conservation, food source, timber supply and energy security, but there are still many problems waiting for immediate resolution. Based on the current development status of planted forest in China, the paper made an comprehensive analysis for the positive impact and existing problems with regard to planted forests, and then came up with policy recommendations for promoting sustainable management of planted forests, mainly including: 1) to accelerate planted forests development and improve the quality; 2) to strengthen the protection and management, and quicken the development of planted forests; 3) to enhance the scientific planning for planted forests; 4) to reinforce the management for forests harvesting so as to promote the reasonable utilization of planted forests; 5) to perfect the management system for planted forest resources and improve the managerial capacity; 6) to complete related laws and regulations and improve the policy guarantee system; 7) to reinforce the forest tenure reform and establish a sound planted forest land transference system. Finally, the paper presented the future action framework for guiding the sustainable management of planted forests in China. | HE Youjun1 LI Zhiyong1 CHEN Jie1 LIU Yong1 LIU Daoping2 WU Shengfu3 QIN Yongsheng4 XU Zhijiang51. Research Institute of Forestry Policy and Information, Chinese Academy of Forestry(CAF), Beijing 100091, P. R. China 2. Quality Management Office and Department of Afforestation and Silviculture, State Forestry Administration(SFA), Beijing 100714, P. R. China 3. Green Panel Consulting, Beijing 100714, P. R. China 4. Beijing Forestry and Parks Department of International Cooperation, Beijing Municipal Bureau of Landscape and Forestry, Beijing 100029, P. R. China 5. International Cooperation Office, Yunnan Provincial Forestry Bureau, Kunmin 650021, P. R. China | 2008 | Chinese Forestry Science and Technology2008,7,3: | 12 |
| 10 | Valuing water quality in China:purpose,approach and policy显示文摘The economic valuation of water quality in a rapidly developing country such as China should be undertaken to determine when the benefits from rapid growth begin to exceed the costs from the same. The best approach is to ascertain the total economic valuation of the environmental resource. This includes all of the various uses of the resource, and even those values that are unconnected to individual use (e.g. natural and aesthetic values). A method known as contingent valuation (CV) is used to ascertain these forms of value. This approach is demonstrated here in an application to river water quality in the Beijing area. A CV study is reported in which Beijing area citizens reported an average willingness to pay about 1.3% of annual income in order to prevent further deterioration of river water quality. Aggregation over the representative population indicates that the perceived cost of further river quality deterioration is in the neighbourhood of USD 60 million. Such a measure provides some indication of the socially desired “stopping point”—— in the pursuit of economic growth at the expense of environmental quality. | Timothy Swanson,Brett Day,Susana Mourato Centre for Social and Economic Research on the Global Environment, Department of Economics, and School of Public Policy, University College London, Gower Street, London WC1E 6BT, United Kingdom | 1999 | Journal of Environmental Sciences1999,11,3: | 12 |
| 11 | 湛江模式的启示:探索社会医疗保险与商业健康保险的合作伙伴关系显示文摘在推进全民医保的新探索中,广东省湛江市在推进社会医疗保险与商业健康保险的合作伙伴关系上呈现出独有的特色,引起了政府和社会各界广泛的关注。'湛江模式'的重要启示是,社会医疗保险与商业健康保险建立合作伙伴关系,可以有效促进双方的共同发展以及多层次医疗保障体系的形成与发展。 | Research Center for Public Policy,China Society of Economic Reform ChangCe Thinktank | 2011 | 中国市场2011,,3: | 8 |
| 12 | 大兴安岭呼中林区狍冬季卧息生境的选择显示文摘大兴安岭呼中林区狍冬季卧息生境的选择关键词狍子,卧息点选择,大兴安岭WINTERRESTINGSITESELECTIONBYROEDEERATHUZHONG,DAXINGANLINGMOUNTAINSNORTHEASTERNCHINA¥JiangZh... | Jiang Zhaowen Xu Li(Institute of Natural Resources,Heilongjang Academy of Sciences Harbin 150040)Wang Yongqing(Daxinganling District Forestry Resource and Policy Administrative Bureau)Jiao Peirong Liu Hongfa(Resouce Management Section,Huzhong,Daxingonling | 1996 | Zoological Research1996,17,2: | 8 |
| 13 | Policies, Actions and Effects for China's Forestry Response to Global Climate Change显示文摘Climate change is a great concern of various countries, the public and science community, and forest plays an important role in mitigating climate change. The paper made a comprehensive analysis regarding the policy selections of China to promote forestry response to the global climate change, and elaborated the concrete actions and achievements in this regard. Policy selections include: 1) Reinforce tree planting and afforestation, increase the forested area and enhance the capacity of carbon sequestration; 2) Improve forest management and the quality of existing stands, and improve the carbon sequestration services provided by forest ecosystem; 3) Strengthen the soil protection on wetland and forestland, and exert the potentials of carbon sequestration; 4) Boost the nature protection, and conserve the biodiversity; 5) Vigorously exploit forestry bio-energy, and reduce the GHG emission; 6) Enhance the prevention and control of forest fires, diseases and pests as well as of illegal expropriation of forest land, and effectively control the GHG emission; 7) Appropriately increase the use of timber, further improve the utilization rate of timber, extend the use life-span of timber and strengthen the carbon-storing function of timber products; 8) Actively implement forestry programs for carbon sequestration and widen the financing channels for forestry development and carbon sequestration. Meanwhile, with the concrete actions in forestry response to climate change, e.g. setting up a specialized agency responsible for the response to climate change, establishing Asian-Pacific Network for Sustainable Forest Management and Rehabilitation, launching the national evaluation of preferential development areas for forestry CDM (Clean Development Mechanism) projects, initiating the pilot projects for Afforestation and Reforestation Project under the CDM, and creating and operating China Green Carbon Fund, China has made great achievements in her response to climate change. There witnesses a growing increase in the quantity and quality of forest resources in China, which contributes to improving ecological condition, giving play to forest potential in carbon sequestration, and mitigating global climate change. | LI Zhiyong1 LI Nuyun2 HE Youjun1 WU Shuirong1 1. Research Institute of Forestry Policy and Information, Chinese Academy of Forestry, Beijing 100091, P. R. China 2. Office of Response to Climate Change, Energy Conservation and Emission Reduction, State Forestry Administration, Beijing 100714, P. R. China | 2008 | Chinese Forestry Science and Technology2008,7,4: | 8 |
| 14 | Potential land for plantation of Jatropha curcas as feedstocks for biodiesel in China显示文摘As a renewable energy,biofuel has attracted great attention in China and the rest of world.Concerned with the national food security,China recently has shifted its biofuel development priority from grain-based to non-grain-based biofuels,including forest-based biodiesel,since 2007.Jatropha curcas is one of major biodiesel feedstocks.However,there is rising debate on availability of land for expanding Jatropha curcas areas.The overall goal of this paper is to evaluate potential land for Jatropha curcas used as feedstock for biodiesel in China.Based on remote sensing data on land use,data on meteorological,soil and land slope,and suitable environment for Jatropha curcas plantation,this study uses Agro Ecological Zone method and considers social-economic constraints to evaluate potential suitable land for Jatropha curcas plantation in China's major Jatropha curcas production region,Southwest China.The results show that while there are some potential lands to expand Jatropha curcas areas,amount of these lands will hardly meet the government's target for Jatropha curcas-based biodiesels development in the future.China may need to reconsider its long-term targets on the development of Jatropha curcas-based biodiesels. | WU WeiGuang 1,2,3,HUANG JiKun 1,3 & DENG XiangZheng 1,3 1 Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences,Beijing 100101,China 2 Department of Economics and Management,Zhejiang Forestry University,Linan 311300,China 3 Center for Chinese Agricultural Policy,Chinese Academy of Sciences,Beijing 100101,China | 2010 | Science China Earth Sciences2010,53,1: | 7 |
| 15 | 我国“中医药传承与创新发展”优先主题科技创新回顾与展望——兼述《国家中长期科技发展规划纲要(2006-2020年)》人口与健康领域科技工作实施进展显示文摘2006年,我国颁布的《国家中长期科技发展规划纲要(2006-2020年)》(简称《纲要》),首次将'人口与健康'列为重点领域,凸显了人口与健康的重要地位和战略意义。《纲要》同时部署安排了'安全避孕节育与出生缺陷防治'、'心脑血管病、肿瘤等重大非传染疾病防治'、'城乡社区常见多发病防治'、'中医药传承与创新发展'、'先进医疗设备与生物医用材料'5个优先主题和个重点研究方向,以期通过系列研究探索我国未来'人口与健康'发展之路,提高我国医学科技的自主创新能力。《纲要》实施以来,在提升我国医疗服务水平,改善人口质量和提高人民健康水平,巩固和加快医疗产业发展等方面,发挥了积极作用,为满足人民群众日益增长的健康需求,提供了有力支撑。2013年,科技部对《纲要》实施情况进行了中期评估,形成了系列调研报告。为推进中医药领域科技创新,帮助科研人员准确把握本领域科学技术发展脉络,了解相关科技工作部署,进一步激发创新思路,本刊对'中医药传承与创新发展'优选主题进行纪实报道,以飨读者。 | Institute of Policy and Management, Chinese Academy of Sciences | 2014 | 世界科学技术-中医药现代化2014,,4: | 6 |
| 16 | Optimization of mathematical models for thematic maps显示文摘The thematic map is a major class of maps designed to demonstrate particular features or concepts,functioning as an indispensable tool in geographical research.The process of thematic mapping is one into which geographical research goes deeply and broadly.The key activity and course of thematic map production is the use of mathematical models to create thematic data layers.Therefore,the selection and optimization of mathematical models is in the forefront of thematic map research.The theoretical foundations,mechanisms and methods of mathematical model optimization are expounded in this paper,including two approaches,the phase by phase mode and the multi-aim scheme balance mode.Case studies in eco-environment mapping and emergency mapping are described and analyzed,with a hierarchical analysis method being used in the model optimization for eco-environment fragility and sensitivity assessment mapping in Beibuwan (Guangxi) District,the dynamic system (DS) method being used in the model optimization for ecological security adjustment mapping in Xishuang Banna,Yunnan province,and the multi-phase mode being used in the models for forest fire and infectious diseases mapping. | QI QingWen1,ZHANG An1,JIANG LiLi1,ZOU XiuPing2,XU Li3 & CHENG Xi1,4 1 Institute of Geographical Sciences and Natural Resources Research,Chinese Academy of Sciences,Beijing 100101,China 2 Institute of Policy and Management,Chinese Academy of Sciences,Beijing 100080,China 3 Taishan University,Taian 271021,China 4 Graduate University of Chinese Academy of Sciences,Beijing 100049,China | 2010 | Science China(Technological Sciences)2010,53,S1: | 6 |
| 17 | Spatial interaction: a statistical mechanism model显示文摘In this paper some micro-mechanisms of spatial interaction is discussed with a view of statistical physics. The paper found the relation between spatial interaction and geographical diffusion, and some new conclusions concerning Wilson Model and its parameter have been reached. | WANG Zheng (Institute of Policy and Management, Chinese Academy of Sciences, Beijing 100080, China) | 2000 | Journal of Geographical Sciences2000,10,3: | 5 |
| 18 | Global Planted Forest Development: Opportunities,Challenges and Policy Choices显示文摘In recent decades, there has seen a dramatic expansion of global planted forest area and their great impact on human life. It is reported in Forest Resource Assessment 2010 that the current area of global planted forests is about 264 million ha, representing only 7% of the total forest area but able to meet the two thirds of the global demand for logs. Planted forests can not only provide timber, fiber, fuel and non-wood forest products, but also contribute to carbon sequestration, restoration of degraded land, landscape rehabilitation and watershed protection. Besides, planted forests can also provide the recreation and amusement for people. In such sense, in the coming decades, planted forests, driven by various factors such as social- economic conditions, market, consumers' demand and new technologies, will have good opportunities for development, and will also increase their contribution to achieving the series of development objectives worldwide. In the meanwhile, the development of planted forests is also constrained by the factors like policies, laws, regulations, technologies and funds, and therefore faced with the challenges in terms of eco- environment preservation, economic development and protection of community interests. Based on the long- term monitoring and research of planted forest development as well as the field study of planted forests abroad, the paper identified the opportunities and challenges in the development of global planted forests through such methods as the SWOT, policy analysis and the others, and proposed the policy choices for promoting the sustainable development of planted forests: 1) There is a need to further understand the functions of planted forests and the importance of the degraded land restoration; 2) A good institutional guarantee and investment environment should be created for the planted forest development; 3) The advanced concepts and methods in terms of the planted forests management should be actively promoted and applied; 4) There is a need to put more focus on environment management and social responsibility; 5) The intensive management of planted forests needs to rely on science and technology support; 6) The international cooperation should be strengthened to jointly facilitate the sustainable development of planted forests. | HE Youjun CHEN Jie LI Zhiyong Research Institute of Forestry Policy and Information, Chinese Academy of Forestry, Beijing 100091,P.R. China | 2010 | Chinese Forestry Science and Technology2010,9,2: | 4 |
| 19 | Development of Public Participation in Regulatory Planning in China:A Comparative Study Based on National Regulations | YIN Chengzhi, XIONG Yan School of Public Policy & Management, Tsinghua University China Architectural Design & Research Group | 2011 | China City Planning Review2011,20,4: | 4 |
| 20 | State and Potential of Forest Carbon Market in China显示文摘China has been making efforts to improve climate changes which have drawn international attentions since China formally signed UN Climate Change Framework in 1992 and ratified Kyoto Protocol in August 2002. The area of China’s forest plantation ranks the first at present so global close attention is paid to forest carbon market in China. This article introduces that 5 110 million t of carbon dioxide equivalent have been sequestrated by China’s forest during 1980 to 2005, China will have 4.2 billion t of carbon dioxide emission reduction market potential and contribute more forest carbon credits to the international community. | TAN Xiufeng1 ZHOU Fengzhi2 1. Research Institute of Forestry Policy and Information, Chinese Academy of Forestry, Beijing100091, P. R. China 2. Huyuan Forest Farm, Daxing’anling, Huyuan 165033, P. R. China | 2010 | Chinese Forestry Science and Technology2010,9,1: | 4 |