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3篇 您的检索式:作者名="LIN TIANSHUI"
    题名 作者 年代 出处 被引量
1Valuation of Forest Ecosystem Services and Benefit Sharing:A Case Study of Qingdao City, China显示文摘The forest ecosystem goods and services and the natural capital stocks that produce them make great contribution to national economy and human welfare both directly and indirectly. This paper evaluates the economic value of natural capital stock and the annual output flow of forest ecosystem goods and services taking Qingdao City and its eight districts as case study. The results of the valuation study showed, that the stock value of forest natural capital of Qingdao was RMB 13.46 billion at the end of 2007. The flow value of annual output of forest ecosystem goods and services of Qingdao was RMB 26.76 billion which amounted to 7.07% of its GDP of 2007. However, the share of forest goods and services actually included in its GDP of 2007, in accordance with the current national accounting system, was only 0.71%. Among the annual flows the value of intangible forest ecosystem services alone accounted for 70.90% of total flows which was 2.44 times the value of forest material goods. These non- market forest benefits mainly contributed to the non-forestry sectors of the economy and to the social groups who did not own and manage the forests. Extensive policy implications were analyzed as per the results of the forest valuation study.WU Shuirong1 GUO Shitao2 LIN Qiao’e2 YAN Xiujing3 HOU Yuanzhao1 1. Research Institute of Forestry policy and Information, Chinese Academy of Forestry, Beijing 100091,P.R.China 2. Qingdao Forestry Bureau, Qingdao 266061,P.R.China 3. Gansu Forestry Technological College, Tianshui 741020,P.R.China 2010Chinese Forestry Science and Technology2010,9,1:2
2Heparin and magnesium sulfate cure advanced lung and heart disease combined caused to respiratory failure显示文摘LIN TIANSHUI CAO JIANNAN 2002Chinese journal of practical internal medicine2002,22,6:1
3Nanoporous Au-Sn with solute strain for simultaneously enhanced selectivity and durability during electrochemical CO2 reduction显示文摘Electrochemical carbon dioxide reduction meditated by metallic catalysts suffers from restricted selectivity and competition from hydrogen evolution, which sensitively depends on ambiguous contributions of alloying and strain state in bimetallic catalysts. Herein, nanoporous Au-Sn(NPAS) containing trace tin solute in Au lattices is delicately designed to convince real strain effect, while eliminating other undesirable factors, such as alloying, crystal facets and surface composition. Compared with nanoporous gold(NPG), the NPAS with a solute strain of ~2.2% enables more efficient CO2-to-CO conversion, with an efficiency as high as 92% at-0.85 V versus reversible hydrogen electrode(vs. RHE), and the high activity can retain for more than 8 h. The combination of HRTEM and surface valence band photoemission spectra reveals that the tensile strain on the surface of 3 D nanoporous structure promotes the catalytic activity by shifting up the d-band center and strengthening the adsorption of key intermediate *COOH. A small amount of Sn solute in the nanoporous alloy can prevent ligament coarsening effectively and improve the electrochemical stability.Xianglong Lu Tianshui Yu Hailing Wang Lihua Qian Ruichun Luo Pan Liu Yao Yu Lin Liu Pengxiang Lei Songliu Yuan 2020Journal of Materials Science & Technology2020,36,8:0
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