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Response of phytoplankton community to different water types in the western Arctic Ocean surface water based on pigment analysis in summer 2008 被引量:2
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作者 JIN Haiyan ZHUANG Yanpei +4 位作者 LI Hongliang CHEN lianfang GAO Shengquan JI Zhongqiang ZHANG Yang 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2017年第8期109-121,共13页
Nutrients and photosynthesis pigments were investigated in the western Arctic Ocean during the 3rd Chinese Arctic Research Expedition Cruise in summer 2008. The study area was divided into five provinces using the K- ... Nutrients and photosynthesis pigments were investigated in the western Arctic Ocean during the 3rd Chinese Arctic Research Expedition Cruise in summer 2008. The study area was divided into five provinces using the K- means clustering method based on the physical and chemical characteristics of the sea water, and to discuss the distribution of the phytoplankton community structure in these provinces. CHEMTAX software was performed using HPLC pigments to estimate the contributions of eight algal classes to the total chlorophyll a (TChl a). The results showed that on the Chukchi Shelf, the Pacific Ocean inflow mainly controlled the Chl a biomass and phytoplankton communities by nutrient concentrations. The high nutrient Anadyr Water and Bering Shelf Water (AnW and BSW) controlled region have high Chl a levels and the diatom dominated community structure. In contrast, in the region occupied by low-nutrient like Alaska Coastal Water (ACW), the Chl a biomass was low, with pico- and nano-phytoplankton as dominated species, such as prasinophytes, chrysophytes and cryptophytes. However, over the off-shelf, the ice cover condition which would affect the physical and nutrient concentrations of the water masses, in consequence had a greater impact on the phytoplankton community structure. Diatom dominated in ice cover region and its contribution to Chl a biomass was up to 75%. In the region dose to the Mendeleev Abyssal Plain (MAP), controlled by sea-ice melt water with relatively high salinity (MW-HS), higher nutrient and Chl a concentrations were found and the phytoplankton was dominated by pico- and nano-algae, while the diatom abundance reduced to 33%. In the southern Canada Basin, an ice-free basin (IfB) with the lowest nutrient concentrations and most freshened surface water, low Chl a biomass was a consequence of low nutrients. The ice retreating and a prolonged period of open ocean may not be beneficial to the carbon export efficiency due to reducing the Chl a biomass or intriguing smaller siz 展开更多
关键词 photosynthetic pigments phytoplankton community biological pump organic carbon ice retreat Chukchi Sea and Canada Basin
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THE ENVIRONMENTAL EVENTS ON KING GEORGE ISLAND SINCE THE LAST GLACIATION
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作者 Xie Youyi and Cui ZhijiuInstitute of Geography, Chinese Academy of Sciences, Beijing 100101 Department of Gorgraphy, Peking University, Beijing 100871 《Chinese Journal of Polar Science》 1992年第2期56-68,共13页
The extension of ice sheet on King George Island during the last glaciation was an environment event since the last glaciation. At that time South Shedlands Islands were a large unified island and the ice mass on King... The extension of ice sheet on King George Island during the last glaciation was an environment event since the last glaciation. At that time South Shedlands Islands were a large unified island and the ice mass on King George Island might come from the Antarctic Peninsula. The model of ice retreat and ice advance events in the Holocene show that the ice sheet was separated into three small ice caps and then dispeared gradually. At present the retreating velocity of glacier is about 1. 3m each year. After the retreat of ice sheet the isostatic compensation appeared in the crust there, and then 5-6 steps of the uplifted marine terraces have been developed along the coast. The uplift rate of the crust may be 6-10mm/a. 展开更多
关键词 ice advance ice retreat isostatic compensation uplift
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东南极阿德雷企鹅古生态变化及其对气候环境的响应
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作者 黄涛 孙立广 《地球环境学报》 2011年第2期337-343,共7页
阿德雷企鹅是气候生态环境变化良好的生物指示计,其登陆历史和种群数量变化是了解南极冰川进退和生态环境演变的重要指标。此前对阿德雷企鹅的古生态研究主要集中在南极半岛和罗斯海地区,对东南极的研究则非常有限。基于此,对东南极西... 阿德雷企鹅是气候生态环境变化良好的生物指示计,其登陆历史和种群数量变化是了解南极冰川进退和生态环境演变的重要指标。此前对阿德雷企鹅的古生态研究主要集中在南极半岛和罗斯海地区,对东南极的研究则非常有限。基于此,对东南极西福尔丘陵阿德雷企鹅聚居地进行了考察采样,并在后期开展了深入的生态地质学研究。通过对粪土剖面的AMS^(14)C定年和元素地球化学分析恢复了全新世以来东南极西福尔丘陵阿德雷企鹅的登陆历史及其种群数量动态变化,发现历史时期企鹅的种群生态变化与该地区冰川进退和气候环境之间存在紧密的联系:冰盖的后退和无冰区的出露往往伴随着企鹅的登陆,适宜的气候有利于企鹅种群的增长,而冰期气候则不利于企鹅种群的发展。 展开更多
关键词 南极 西福尔丘陵 阿德雷企鹅 气候变化 14C定年 全新世 冰川后退 海洋环境
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北冰洋海洋酸化和碳循环的研究进展 被引量:8
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作者 祁第 陈立奇 +8 位作者 蔡卫君 高众勇 陈宝山 钟文理 魏晧 孙恒 张远辉 许苏清 张逸行 《科学通报》 EI CAS CSCD 北大核心 2018年第22期2201-2213,共13页
海洋响应大气CO_2升高,引起海水pH和碳酸钙饱和度下降,这一过程称为海洋酸化.海洋酸化可能会对海洋生物和生态系统造成严重危害.在过去的20年中,全球气候变化引起北冰洋发生一系列快速变化,包括:海表温度上升、海冰快速后退、太平洋入... 海洋响应大气CO_2升高,引起海水pH和碳酸钙饱和度下降,这一过程称为海洋酸化.海洋酸化可能会对海洋生物和生态系统造成严重危害.在过去的20年中,全球气候变化引起北冰洋发生一系列快速变化,包括:海表温度上升、海冰快速后退、太平洋入流水增多、北冰洋和大气环流异常、淡水储量增加、初级生产力变异等.全球气候变化所诱发的北极快速变化预计将放大北冰洋海洋酸化,通过CO_2吸收和碳输送,北冰洋在响应气候变化较其他大洋更快速和显著.本文以北冰洋近岸碳吸收和碳封存研究,海盆区域表层海水p CO_2变异机理研究,20年来西北冰洋的酸化水体扩张现象为主线,综述了北冰洋快速融冰背景下的区域碳循环研究进展,并分析了其酸化水体增长与过去20年的环境和气候变化之间的联系. 展开更多
关键词 CO2 海洋酸化 气候变化 快速融冰 北冰洋
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The Rapidly Changing Arctic and Its Impact on Global Climate 被引量:4
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作者 ZHAO Jinping ZHONG Wenli +1 位作者 DIAO Yina CAO Yong 《Journal of Ocean University of China》 SCIE CAS CSCD 2019年第3期537-541,共5页
Arctic sea ice has significant seasonal variability. Prior to the 2000 s, it retreated about 15% in summer and fully recovered in winter. However, by the year 2007, Arctic sea ice extent experienced a catastrophic dec... Arctic sea ice has significant seasonal variability. Prior to the 2000 s, it retreated about 15% in summer and fully recovered in winter. However, by the year 2007, Arctic sea ice extent experienced a catastrophic decline to about 4.28×10^6 km^2, which was 50% lower than conditions in the 1950 s to the 1970 s(Serreze et al., 2008). That was a record low over the course of the modern satellite record, since 1979(note that the year 2012 became the new record low). This astonishing event drew wide-ranging attention in 2007-2009 during the 4 th International Polar Year. The dramatic decline of sea ice attracts many scientists’ interest and has become the focus of intense research since then. Currently, sea ice retreat is not only appearing around the marginal ice zone, but also in the pack ice inside the central Arctic(Zhao et al., 2018). In fact, premonitory signs had already been seen through other evidence. Before the disintegration of the Soviet Union, US naval submarines had been conducting an extensive survey under the sea ice and taking measurements of sea ice thickness. Their measurements revealed a gradual decrease of ice thickness to 1.8 m during winter by the end of the 20 th century, in contrast to the climatological mean of 3.1 m(Rothrock et al., 1999). However, this alarming result did not draw much attention since the Arctic was still severely cold at that time. 展开更多
关键词 ARCTIC Ocean climate change sea ice retreat FRESHWATER ACCUMULATION ARCTIC AMPLIFICATION global impacts
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北冰洋酸化指标——海水文石饱和度变异的研究进展 被引量:6
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作者 祁第 陈立奇 《地球科学进展》 CAS CSCD 北大核心 2014年第5期569-576,共8页
文石饱和度(Ω文石)是评估海洋酸化及对海洋钙质生物影响的重要指标之一。海洋吸收CO2引起海洋酸化,导致Ω文石显著下降。模式研究预测表明北冰洋表层海水将成为最先出现Ω文石<1的世界大洋。通过对北冰洋Ω文石有关研究进行归纳总结... 文石饱和度(Ω文石)是评估海洋酸化及对海洋钙质生物影响的重要指标之一。海洋吸收CO2引起海洋酸化,导致Ω文石显著下降。模式研究预测表明北冰洋表层海水将成为最先出现Ω文石<1的世界大洋。通过对北冰洋Ω文石有关研究进行归纳总结,重点阐述了北冰洋Ω文石的分布特征,讨论海—气CO2交换过程、融冰过程以及生物过程等因素对北冰洋Ω文石分布的影响,展望未来的变化趋势并提出一些关键的科学问题。 展开更多
关键词 文石饱和度 海洋酸化 模型预测 海冰融化 北冰洋
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快速融冰背景下北冰洋夏季表层海水CO2分压的变异假设 被引量:5
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作者 陈立奇 祁第 +5 位作者 高众勇 詹力扬 孙恒 许苏清 张远辉 汪燕敏 《科学通报》 EI CAS CSCD 北大核心 2016年第21期2419-2425,共7页
近几年来,夏季北冰洋融冰出现明显加快的态势.融冰过程引起了表层海水CO_2浓度的变化,在2008年中国国家北极科学考察(CHINARE)航次通过深入到88°N的北冰洋中心区的170°W断面观测,发现表层海水中CO_2在冰覆盖下,融冰区和融冰... 近几年来,夏季北冰洋融冰出现明显加快的态势.融冰过程引起了表层海水CO_2浓度的变化,在2008年中国国家北极科学考察(CHINARE)航次通过深入到88°N的北冰洋中心区的170°W断面观测,发现表层海水中CO_2在冰覆盖下,融冰区和融冰后开阔水域等不同状况下出现了明显的变异性.针对所观测到的表层海水二氧化碳分压(pCO_2)变异性现象,我们提出了北冰洋快速融冰情景下的表层海水pCO_2变异的"低-低-高"假设,即海冰覆盖下的海水是"低"p CO_2,刚融冰的海水是"低"pCO_2,而融冰后的开阔海水会出现"高"pCO_2.出现这种"低-低-高"pCO_2变异现象是由不同驱动过程引起的.冰覆盖下海水低pCO_2,控制因素可能是水体受到不同水团的混合过程、温度变化、冰-水CO_2交换和生物冰藻微吸收CO_2过程控制,其主要诱因还需要进一步探索;现场观测表明刚融冰时海水的低pCO_2主控因素可能是生物的CO_2吸收,以及CaCO3溶解共同作用;而融冰后开阔海水的高CO_2已被论证为由于大气中CO_2快速进入海水和水体增温引起的. 展开更多
关键词 pCO2变异 假设 快速融冰 北冰洋
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