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渤黄海渔业资源三场一通道现状、问题及优化管理政策 期刊论文
海洋湖沼通报, 2018, 期号: 05, 页码: 147-157
作者:  李晓炜;  赵建民;  刘辉;  张华;  侯西勇
Adobe PDF(1211Kb)  |  收藏  |  浏览/下载:1153/385  |  提交时间:2020/07/08
渤海  黄海  产卵场  索饵场  越冬场  洄游通道  
南黄海浒苔漂移轨迹年际变化规律及驱动因素 期刊论文
海洋与湖沼, 2018, 卷号: 49, 期号: 05, 页码: 1084-1093
作者:  张广宗;  吴孟泉;  孙晓;  赵德恒;  邢前国;  梁峰
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海风  MODIS  QuikSCAT  浒苔  海温  南黄海  sea wind  MODIS  QuickSCAT  Ulva prolifera  sea surface temperature  the Southern Yellow Sea  
基于GOCI的2017年南黄海浒苔演变遥感分析 期刊论文
海洋与湖沼, 2018, 卷号: 49, 期号: 05, 页码: 1068-1074
作者:  宋德彬;  高志强;  徐福祥;  艾金泉;  宁吉才;  尚伟涛;  姜晓鹏
浏览  |  Adobe PDF(750Kb)  |  收藏  |  浏览/下载:530/243  |  提交时间:2020/07/08
GOCI  浒苔  南黄海  遥感  GOCI  ulva prolifera  the south Yellow Sea  remote sensing  
莱州湾营养盐空间分布特征及年际变化趋势 期刊论文
海洋通报, 2018, 卷号: 37, 期号: 04, 页码: 411-423
作者:  姜会超;  王玉珏;  李佳蕙;  陶慧敏;  白艳艳;  苏博;  刘东艳
收藏  |  浏览/下载:205/0  |  提交时间:2020/07/07
莱州湾  营养盐  空间分布  年际变化  
基于AIS和多尺度空间模型的船舶活动时空特征及潜在压力 期刊论文
大连海事大学学报, 2018, 卷号: 44, 期号: 03, 页码: 115-121+128
作者:  刘柏静;  贾静;  吴晓青;  杜培培
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莱州湾  海上船舶活动  时空特征  生态环境  潜在压力  船舶自动识别系统(AIS)  多尺度空间模型  
渤海湾湾口表层沉积物中的核心细菌群落结构及其对环境因子的响应 期刊论文
微生物学通报, 2018, 卷号: 45, 期号: 09, 页码: 1940-1955
作者:  刘鹏远;  陈庆彩;  胡晓珂
Adobe PDF(3381Kb)  |  收藏  |  浏览/下载:302/83  |  提交时间:2020/07/08
渤海湾  沉积物  微生物群落  16S rRNA基因多样性  
渤海三湾表层水域细菌群落结构多样性及其环境因子分析 期刊论文
微生物学通报, 2018, 卷号: 45, 期号: 09, 页码: 1956-1971
作者:  王彩霞;  王毅波;  刘鹏远;  吴霖;  孙延瑜;  胡晓珂
Adobe PDF(4487Kb)  |  收藏  |  浏览/下载:321/70  |  提交时间:2020/07/08
渤海  高通量测序  微生物多样性  细菌  
河口三角洲湿地健康生态圈构建:理论与方法 期刊论文
应用生态学报, 2018, 卷号: 29, 期号: 8, 页码: 2787-2796
作者:  韩广轩;  牛振国;  栾兆擎;  王光美;  张俪文;  管博
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河口三角洲  栖息地破碎化  生态圈  连通性  生境异质性  食物网  生态功能  
黄渤海近海海藻养殖规模及固碳强度时空分布 期刊论文
海洋科学, 2018, 卷号: 42, 期号: 04, 页码: 112-119
作者:  曹万云;  肖鲁湘;  王德;  侯金鑫
收藏  |  浏览/下载:205/0  |  提交时间:2020/07/07
黄渤海  海藻养殖  固碳强度  时空分布  
烟台夹河口外柱状沉积物还原性无机硫、活性铁的变化特征及其相互关系 期刊论文
海洋科学, 2018, 卷号: 42, 期号: 8, 页码: 90-97
作者:  姜明;  赵国强;  李兆冉;  盛彦清
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还原性无机硫  活性铁  深层柱状沉积物  硫化度  矿化度  Reduced inorganic sulfur  Reactive iron  Deep core sediments  Degree of pyritization  Degree of sulfidity  The distribution characteristics and coupling mechanism of reduced inorganic sulfur (RIS)and reactive iron in marine core sediments are closely related to the evolution of environment quality.In this study,an improved cold diffusion method and hydrochloric acid extraction method were applied to the acid-volatile sulfur (AVS),pyrite sulfur (CRS),elemental sulfur (ES),and reactive iron [Fe (Ⅱ)and Fe (III)] analyses.The distribution characteristics and coupling mechanism of S and Fe were investigated based on a core sediment 4 meters deep collected in the northern sea area of the mouth of Jiahe River,Yantai.The results showed that the RIS in sediments was dominated by CRS,followed by AVS and ES.The content of AVS presented a narrow range with depth,whereas the CRS and ES were higher at the top and bottom layers than the middle layer  reactive iron was dominated by Fe (II),which increased with depth,while Fe (Ⅲ)gradually decreased with depth.Most of the Fe (III)was reduced to the disssolved Fe(II),which was combined with the soluble H_2S of the sulfate-reducing bacteria to produce CRS and ES in the deep layer,resulting in their accumulation at the bottom of core sediments.Furthermore,this study showed that reactive iron was not a limiting factor for the accumulation of RIS with lower degree of pyritization and degree of sulfidity.