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6篇 您的检索式:作者名="Cecily L"
    题名 作者 年代 出处 被引量
1Insitu Microbial Ecology for Quatitative Appraisal, Monitoring, and Risk Assessment of Pollution Remediation in Soils, the Subsurface, the Rhizosphere and in Biofilms显示文摘David C W Cecily A F Kam T L 1998Journal of Microbiological Methods1998,32,:1
2Health related quality of life and the physical activity levels of middle - aged women, California health in terview survey显示文摘Cecily L Matthew Z 2011Prey Chronic Dis2011,5,8:1
3Effect of addition of rhamnolipid biosurfactants or rhamnolipid-producing pseudomonas aeruginosa on phenanthrene mineralization in soil slurries显示文摘Miguel A P Cecily A F Hung L 1995FEMS Microbiology Ecology1995,17,:1
4Health-related quality of life and the physical activity levels of middle- aged women显示文摘Cecily L Dr PH Matthew Z 2011Prey Chronic Dis2011,8,2:1
5万家灯火显示文摘乍暖还寒的三月,满眼绿意中花蕊还在悄悄地张望。这个夜晚,天空不见月亮,只是稀稀疏疏地散落着几颗星星。难得的清闲,我披了件外套漫步于街头,风从身边飘过,还带着几分丝丝的寒气。循着浓香四溢的咖啡香,不知不觉地走进灯光摇曳的星巴克。咖啡店里顾客不多,有年轻人在抱着笔记本上网,全神贯注;有情侣浓情软语相视而坐,温情而娴静。满屋漫溢着蓝调爵士的旋律……Cecilie Manz Dan Yeffet d'Esposito & Gaillard Hans Sandgren Jakobsen Komplot Jake Phipps Jo Hammerborg Jordi López Aguiló Jorn Utzon Lukas Dahln Lucie Koldova Maija Puoskari Markus Johansson Ross Gardam 伏平 2014现代装饰(家居)2014,,4:0
6Comparing the climate change mitigation potentials of alternative land uses:Crops for biofuels or biochar vs.natural regrowth显示文摘Using biomass from dedicated crops for energy production and natural vegetation regrowth are key elements in future climate change mitigation scenarios.However,there are still uncertainties about the mitigation potentials that can be achieved by the different land-based systems and how they perform relative to each other.In this study,we use harmonized future land use datasets to identify global land areas dedicated to second generation bioenergy crop production in 2050 under different climate scenarios.We then assess the global climate change mitigation potentials of using biomass for producing bioethanol with(BECCS)or without carbon capture and storage,biochar,or a synthetic fuel(e-methanol).For the latter,the electricity required to produce hydrogen for e-methanol synthesis is sourced from either wind power or the projected average electricity mix in 2050.Mitigation potential from natural regrowth on the identified land is also quantified.For all the cases,we modelled emissions of greenhouse gases from the life-cycle stages and use parameterized models to estimate local biomass growth rates.The identified land areas range from 1.95 to 13.8 million hectares and can provide from 30 to 178 mega ton(Mt)dry biomass annually from dedicated crops.Climate change mitigation potentials range from 11 to 257 MtCO_(2)-eq.yr^(−1),depending on technological option and land availability.The largest mitigation is delivered by BECCS,but e-methanol can achieve similar findings when hydrogen is sourced from wind power.If hydrogen is produced from grid electricity,e-methanol can result in net positive emissions.E-methanol can also deliver more final energy than bioethanol(4.04 vs.1.27 EJ yr^(−1)).Natural vegetation regrowth can generally achieve higher mitigation than bioethanol,but less than biochar.An optimal combination of BECCS and natural vegetation regrowth can achieve a larger mitigation,up to 281 MtCO_(2)-eq.yr^(−1),indicating that integrated solutions can help to achieve successful land management strategies for climate change mitigation.Anne Cecilie Løvenskiold Xiangping Hu Wenwu Zhao Francesco Cherubini 2022Geography and Sustainability2022,3,4:0
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