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| 1 | Evolving paradigms in biological carbon cycling in the ocean显示文摘Carbon is a keystone element in global biogeochemical cycles.It plays a fundamental role in biotic andabiotic processes in the ocean,which intertwine to mediate the chemistry and redox status of carbon in the ocean and the atmosphere.The interactions between abiotic and biogenic carbon(e.g.CO_2,Ca CO_3,organic matter)in the ocean are complex,and there is a half-century-old enigma about the existence of a huge reservoir of recalcitrant dissolved organic carbon(RDOC)that equates to the magnitude of the pool of atmospheric CO_2.The concepts of the biological carbon pump(BCP)and the microbial loop(ML)shaped our understanding of the marine carbon cycle.The more recent concept of the microbial carbon pump(MCP),which is closely connected to those of the BCP and the ML,explicitly considers thesignificance of the ocean’s RDOC reservoir and provides a mechanistic framework for the exploration of its formation and persistence.Understanding of the MCP has benefited from advanced‘omics’and novel research in biological oceanography and microbial biogeochemistry.The need to predict the ocean’sresponse to climate change makes an integrative understanding of the BCP,ML and MCP a high priority.In this review,we summarize and discuss progress since the proposal of the MCP in 2010 and formulate research questions for the future. | Chuanlun Zhang Hongyue Dang Farooq Azam Ronald Benner Louis Legendre Uta Passow Luca Polimene Carol Robinson Curtis A.Suttle Nianzhi Jiao | 2018 | National Science Review2018,5,4: | 12 |
| 2 | An implementation strategy to quantify the marine microbial carbon pump and its sensitivity to global change显示文摘INTRODUCTION The persistence of the vast pool of recalcitrant dissolved organic carbon (RDOC) in the deep ocean is fundamental to both global carbon cycling and global climate.Yet,quantitative understanding of the mechanisms that produce and utilize RDOC is still in its infancy.Moving from a conceptual framework to quantitative understanding in marine carbon cycling can take the international research community several decades--precious time that is not available in this era of anthropogenic dimate change.This perspective paper sets out an implementation strategy to move efficiently from conceptual hypotheses of marine carbon storage to quantification of the capacity for marine carbon storage through the microbial carbon pump (MCP),its sensitivity to global change and potential for modification.The aim is to excite and facilitate the intemational scientific community to hasten this process via an internationally co-ordinated multidisciplinary research initiative. | Carol Robinson Douglas Wallace Jung-Ho Hyun Luca Polimene Ronald Benner Yao Zhang Ruanhong Cai Rui Zhang Nianzhi Jiao | 2018 | National Science Review2018,5,4: | 4 |
| 3 | Defining the Concept of Supply Chain Quality Management and Its Relevance to Academic and Industrial Practice 显示文摘 | Carol J Robinson Manaoj K Malhotra | 2005 | J Production Economics2005,,96: | 1 |
| 4 | Defining the concept of supply chain quality management and its relevance to academic and industrial practice显示文摘 | Carol J. Robinson Manoj K. Malhotra | 2004 | International Journal of Production Economics2004,,3: | 1 |
| 5 | Above-ground grazing affects floristic composition and modifies soil trophic interactions 显示文摘 | ROY NEILSON DAVID ROBINSON CAROL A MARRIOTT | 2002 | Soil Biology and Biochemistry2002,34,10: | 1 |
| 6 | Defining the concept of supply chain quality management and its relevance to academic and industrial practice显示文摘 | Carol J Robinson Manoj K Malhotra | 2004 | International journal of production economics2004,10,12: | 1 |
| 7 | Association of Maternal Vitamin D and Placenta Growth Factor with the Diagnosis of Early Onset Severe Preeclampsia显示文摘 | Christopher Robinson Carol Wagner Bruce Hollis John Baatz Donna Johnson | 2013 | Amer J Perinatol2013,,03: | 1 |
| 8 | Nitrous oxide and methane in the Atlantic Ocean between 50°N and 52°S: Latitudinal distribution and sea-to-air flux显示文摘 | Grant Forster Rob C. Upstill-Goddard Niki Gist Carol Robinson Gunther Uher E. Malcolm S. Woodward | 2008 | Deep-Sea Research Part II2008,,15: | 1 |
| 9 | Malhotra Defining the concept of supply chain quality management and its relevance to academic and industrial practice 显示文摘 | Carol J Robinson Manoj K | 2005 | Production Economics2005,,96: | 1 |
| 10 | Defining the concept of supply chain quality management and its relevance to academic and industrial practice显示文摘 | Carol J. Robinson Manoj K. Malhotra | 2004 | International Journal of Production Economics2004,,3: | 1 |
| 11 | IMBeR致“感知中国——共话海上丝路”在华留学生科学论坛贺词(译文)显示文摘作为海洋生物圈整合研究(Integrated Marine Biosphere Research,IMBeR)国际计划科学指导委员会的主席,我愿借此机会欢迎大家来到'感知中国—共话海上丝路'在华留学生科学论坛——这一由IMBeR支持的论坛活动.IMBeR很高兴能够参与此次由华东师范大学的国际教育中心、河口海岸学国家重点实验室、一带一路与全球发展研究院、世界历史研究院和崇明生态研究院等单位主办的论坛活动。 | Carol Robinson | 2020 | 华东师范大学学报(自然科学版)2020,,S01: | 0 |
| 12 | Ocean negative carbon emissions: A new UN Decade program显示文摘The Paris Agreement sets the target to limit increases in mean global temperature to well below 2C,preferably to 1.5C,compared with preindustrial levels.Carbon neutrality is the preferred route to reach this target.1 This requires primarily a reduction of CO_(2) emissions to the atmosphere but also an increase of carbon sinks or negative emissions(absorption of atmospheric CO_(2)).The ocean is the largest active carbon pool on Earth,acting as the key regulator to global climate change,and thus has great potential for carbon negative emission.2,3 Recent research demonstrates that the ocean has already absorbed approximately 28%of anthropogenic CO_(2) since the Industrial Revolution,4,5 which indicates that ocean negative carbon emissions could potentially have an important role in achieving the 1.5C or 2.0C goal.Given the urgency and seriousness of the ongoing climate change,it is therefore imperative to explore the potential of enhancing ocean carbon sinks. | Jihua Liu Carol Robinson Douglas Wallace Louis Legendre Nianzhi Jiao | 2022 | The Innovation2022,3,5: | 0 |