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| 1 | Global climate damage in 2℃ and 1.5℃ scenarios based on BCC_SESM model in IAM framework显示文摘The quantitative functions for climate damages provide theoretical ground for the cost-benefit analysis in climate change economics,and they are also critical for linking climate module with economic module in the Integrated Assessment Models(IAMs).Nevertheless,it is necessary for IAMs to update sectoral climate impacts in order to catch up the advance in climate change studies.This study updates the sectoral climate damage function at global scale from climate Framework for Uncertainty,Negotiation and Distribution(FUND)model and develops the aggregate climate damage function in a bottom-up fashion.Besides conventional sectors such as agriculture,forestry,water resources,energy consumption and ecosystems,this study expands climate disaster types,assesses human health impacts caused by various air pollutants,and updates coastal damage by sea level rise.The Beijing Climate Center Simple Earth System Model(BCC_SESM)is used to project climate system based on Business-as-Usual(BAU)scenario,and the 2℃ and 1.5℃ scenarios based on RCPs and SSP2 databases.Sectoral results show that the agricultural sector is projected to suffer 63% of the total damage,followed by water resources(16%)and human health(12%)sectors in 2100.The regression results indicate that the aggregate climate damage function is in positive quadratic form for zero discounting.Under BAU scenario,the aggregate climate damage is projected to be 517.7 trillion USD during 2011-2100.Compared to that,the 2℃ and 1.5℃ scenarios are projected to respectively reduce climate damages by 215.6 trillion USD(approximately 41.6%)and 263.5 trillion USD(50.9%)in 2011-2100. | ZHAO Zi-Jian CHEN Xiao-Tong LIU Chang-Yi YANG Fang TAN Xin ZHAO Yang HUANG Han WEI Chao SHI Xue-Li ZHAI Wen GUO Fei Bas J.VAN RUIJVEN | 2020 | Advances in Climate Change Research2020,11,3: | 4 |
| 2 | Gene-modified T cells for adoptive immunotherapy of renal cell cancer maintain transgene-specific immune functions in vivo显示文摘 | Cor H. J. Lamers Sabine C. L. Langeveld Corrien M. Groot-van Ruijven Reno Debets Stefan Sleijfer Jan Willem Gratama | | Cancer Immunology Immunotherapy0,,: | 2 |
| 3 | Passive force characteristics of an architecturally complex muscle显示文摘 | Van Eijden T M Turkawski S J Van Ruijven L J | 2002 | J Biomech2002,35,9: | 1 |
| 4 | Plant species identity and diversity effects on different trophic levels of nematodes in the soil food web显示文摘 | De DEYN G B RAAIJAMAKERS C E van RUIJVEN J | 2004 | Oikos2004,106,: | 1 |
| 5 | Plant species identity anddi- versity effects on different trophic levels of nematodesin the soil food web显示文摘 | De Deyn GB Raaijamakers CE van Ruijven J Berendse F van der Putten WH | | 0,,: | 1 |
| 6 | The effect of bone loss on rod-like and plate like trabeculaein the cancellous bone of the mandibular condyle显示文摘 | Ruijven LJ Giesen EB Mulder L | 2005 | Bone2005,36,6: | 1 |
| 7 | Root responses to nutrients and soil biota: drivers of species coexistence and ecosystem productivity显示文摘 | Kroon H D Hendriks M Ruijven J V | 2012 | Journal of Ecology2012,100,1: | 1 |
| 8 | Urban and rural energy use and carbon dioxide emissions in Asia显示文摘 | Volker Krey Brian C. O’Neill Bas van Ruijven Vaibhav Chaturvedi Vassilis Daioglou Jiyong Eom Leiwen Jiang Yu Nagai Shonali Pachauri Xiaolin Ren | 2012 | Energy Economics2012,,: | 1 |
| 9 | Plant species identity and diversity effects on different trophic levels of nematodes in the soil food web 显示文摘 | DE DEYN G B RAAIJMAKERS C E VAN RUIJVEN J | 2004 | Oikos2004,106,3: | 1 |
| 10 | Three dimensional finite element analysis of the human tem- poromandibular joint disc显示文摘 | BEEK M KOOLSTRA J H VAN RUIJVEN L J | 2000 | Journal of Biomechanics2000,33,3: | 1 |
| 11 | Can root trait diversity explain complementarity effects in a grassland biodiversity experiment?显示文摘Aims The positive relationship between plant biodiversity and com-munity productivity is well established.However,our knowledge about the mechanisms underlying these positive biodiversity effects is still limited.One of the main hypotheses is that com-plementarity in resource uptake is responsible for the positive biodiversity effects:plant species differ in resource uptake strat-egy,which results in a more complete exploitation of the avail-able resources in space and time when plant species are growing together.Recent studies suggest that functional diversity of the community,i.e.the diversity in functional characteristics(‘traits’)among species,rather than species richness per se,is important for positive biodiversity effects.However,experimental evidence for specific trait combinations underlying resource complemen-tarity is scarce.As the root system is responsible for the uptake of nutrients and water,we hypothesize that diversity in root traits may underlie complementary resource use and contribute to the biodiversity effects.Methods In a common garden experiment,16 grassland species were grown in monoculture,4-species mixtures differing in root trait diversity and 16-species mixtures.The 4-species mixtures were designed to cover a gradient in average rooting depth.Above-ground biomass was cut after one growing season and used as a proxy for plant productivity to calculate biodiversity effects.Important Findings Overall,plant mixtures showed a significant increase in biomass and complementarity effects,but this varied greatly between com-munities.However,diversity in root traits(measured in a separate greenhouse experiment and based on literature)could not explain this variation in complementarity effects.Instead,complementa-rity effects were strongly affected by the presence and competitive interactions of two particular species.The large variation in comple-mentarity effects and significant effect of two species emphasizes the importance of community composition for positive biodiversity effects.Future research should focus on identifying the traits asso-ciated with the key role of particular species for complementarity effects.This may increase our understanding of the links between functional trait composition and biodiversity effects as well as the relative importance of resource complementarity and other underly-ing mechanisms for the positive biodiversity effects. | Lisette M.Bakker Liesje Mommer Jasper van Ruijven | 2018 | Journal of Plant Ecology2018,11,1: | 1 |
| 12 | Three-dimensional finite element analysis of the cartilaginous structures in the human temporomandibular joint显示文摘 | Beek M Koolstra JH van Ruijven LJ | 2001 | J Dent Res2001,80,10: | 1 |
| 13 | Cochlear targets of cisplatin:an electrophysiological and morphological time-sequence study显示文摘 | VAN RUIJVEN MW DE GROOT JC KLIS SF | 2005 | Hear Res2005,205,12: | 1 |
| 14 | Three-dimensional finite element analysis of the human temporomandibular joint disc显示文摘 | Beck M Koolstra JH Van Ruijven LJ | 2000 | Biomech2000,33,3: | 1 |
| 15 | Recovery ofplant species richness during long-term fertilization of aspecies-rich grassland显示文摘 | Pierik M Ruijven J V’Bezemer T M | 2011 | Ecology2011,92,7: | 1 |
| 16 | Three- dimensional finite element analysis of the human temporomandibular joint disc 显示文摘 | Beek M Koolstra JH van Ruijven LJ | 2000 | J Biomech2000,33,3: | 1 |
| 17 | The cochlear targets of cisplatin : an electrophysiological and morphological time - sequence study显示文摘 | VAN RUIJVEN M W DE GROOT J C KLIS S F | 2005 | Hear Res2005,205,: | 1 |
| 18 | Three- dimensional finite element analysis of the cartilaginous structures in the human temporomandibular joint 显示文摘 | Beek M Koolstra JH van Ruijven LJ | 2001 | J Dent Res2001,80,10: | 1 |
| 19 | Sod cutting and soil biota effects on seedling performance显示文摘 | Weijtmans K Jongejans E Van Ruijven J | 2009 | Acta Oecologi- ca2009,35,5: | 1 |
| 20 | Model-based scenarios for rural electrification in developing countries 显示文摘 | B J van Ruijven J Schers D P van Vuuren | 2012 | Energy2012,38,1: | 1 |