编辑: JZS133 | 2019-07-03 |
64 万(直接经费) ? 河口海岸学国家重点实验室开放课题基金:辽东半岛东岸全新世泥质沉积体 系的形成和演化过程对鸭绿江流域变化的响应(SKLEC\KF201601) , 2016-2018,主持人,14 万?江苏省自然科学基金项目:苏北潮滩湿地对 N、P 的富集作用及其生态环境 效应(BK2005165) ,2005-2007 年,主持人,7.5 万?国家重大科学研究计划:人类活动对大三角洲体系地貌、资源稳定性的影响 (2013CB956503) ,2013-2017,项目骨干,494 万?国家海洋局公益性行业科研专项:南黄海辐射沙脊群空间开发利用及环境生 态评估--辐射沙脊群空间开发的人工岛填筑技术 (201005006-01) , 2011-2014,项目骨干,539.13 万?国家海洋局公益性行业科研专项:珠江口、台湾浅滩地形变化监测管理保障 系统―示范区沉积过程观测与数值模拟,2012-2015 年, 项目骨干,
117 万, ? 江苏省重点专项: 江苏沿海滩涂冲淤及岸线变化规律研究与预测, 2011-2014 年,项目骨干,300 万?江苏省
908 专项:南黄海辐射状沙脊群调查与评估, 2006-2012 年,项目骨 干,1350 万元 ? 江苏省
908 专项:江苏海岸带与海岛调查, 2006-2012 年,项目骨干,170 万元 (5)科研成果 第一作者和通讯作者 SCI 论文: 1) Gao J.H. * , Jia J.J., Sheng H., Yu R., Li G.C., Wang Y.P., Yang Y., Zhao Y., Li J., Bai F., Xie W.J., Wang A., Zou X.Q., Gao S.,2017. Variations in the transport, distribution and budget of 210Pb in sediment over the estuarine and inner shelf areas of the East China Sea due to Changjiang catchment changes. Journal of Geophysical Research-Earth Surface, 122(1) , 235-247, DOI:10.1002/2016JF004130. 2) Shi Y., Liu Z.S., Gao J.H.*, Yang Y., Wang Y.P., 2017. The response of sediment record to catchment changes induced by human activities in the western intertidal flat of Yalu River Estuary, China. Acta Oceanologica Sinica, 36(4), 54-63, DOI: 10.1007/s13131-016-0941-7 3) Chen L., Gao J.H.* , Zhu Q.G., Wang Y.P., Yang Y., 2017. The accumulation and output of heavy metals in Spartina alterniflora in a salt marsh. Pedosphere, DOI: 10.1016/S1002-0160(17)60369-2 4) Gao J.H.*, Feng Z.X., Chen L., Wang Y.P., Bai F.L., Li J., 2016. The effect of biomass variations of Spartina alterniflora on the organic carbon content and composition of a salt marsh in northern Jiangsu Province, China. Ecological Engineering, 95, 160-170. DOI: 10.1016/j.ecoleng.2016.06.088 5) Gao J.H.* , Xu X.N., Jia J.J., Kettner A.J., Xing F., Wang Y.P., Yang Y., Zou X.Q., Gao S., Qi S.H., Liao F.Q.,2015. A numerical investigation of freshwater and sediment discharge variations of Poyang Lake catchment, China over the last
1000 years. The Holocene, 25(9),1470-1482 6) Gao J.H.*, Jia J.J., Wang Y.P., Yang Y., Li J., Bai F., Zou X.Q., Gao S., 2015. Variations in quantity, composition and grain size of Changjiang sediment discharging into the sea in response to human activities. Hydrology and Earth System Sciences, 19, 645-655 7) Gao J.H.*, Jia J.J., Kettner A.J., Xing F., Wang Y.P., Li J, Bai, F., Zou, X., Gao, S. 2015. Reservoir-induced changes to fluvial fluxes and their downstream impacts on sedimentary processes: the Changjiang (Yangtze) River, China. Quaternary International, 10.1016/j.quaint.2015.03.015 8) He, X.Y., Wang, Y.P.*, Zhu Q.G., Zhang, Y., Zhang, D., Zhang J.C., Yang, Y., Gao, J.H.*, 2015. Simulation of sedimentary dynamics in a small-scale estuary: the role of human activities. Environmental Earth Sciences, 74:869-878 9) Gao J.H. *, Jia J.J., Kettner A.J., Xing F., Wang Y.P., Xu X.N., Yang Y., Zou X.Q., Gao S., Qi S.H., Liao F.Q., 2014. Changes in water and sediment exchange between the Changjiang River and Poyang Lake under natural and anthropogenic conditions, China. Science of the Total Environment, 481, 542-553 10) Jia J.J., Gao J.H. *, Liu Y.F., Gao S., Yang Y., 2012. Environmental changes in Shamei Lagoon, Hainan, China: Interactions between natural processes and human activities. Journal of Asia Earth Science, 52, 158-168 11) Gao J.H. *, Bai FL, Yang Y, Gao S, Liu ZY, Li J,