论文:
[1]Effects of electron acceptors on soluble reactive phosphorus in the overlying water during algal decomposition;Environ. Sci. Pollut. Res;2015(22):19507-19517;SCI;责任作者
[2]Effect of algal bloom on phosphorus exchange at the sediment-water interface in Meiliang Bay of Taihu Lake, China;Environ. Earth. Sci;2016(75):57;SCI;责任作者
[3]Spatial Distribution and Pollution Assessment of Mercury in Sediments of Lake Taihu, China;Journal of environmental sciences;2013,25(2):316-325;SCI;责任作者
[4]Initial identification of heavy metals contamination in Taihu Lake, a eutrophic lake in China; Journal of environmental sciences;2012,24(9): :1539-1543;SCI;第一作者
[5] Effects of biological activity, light, temperature and oxygen on phosphorus release processes at the sediment and water interface of Taihu lakes in China;Water research;2009(42):2251-2259;SCI;第一作者
[6]Effects of concentrations head group,and structure of surfactants on the degradation of phenanthrene;Journal of hazardous materials;2007(144):215–221;SCI;责任作者
[7]Effect of linear alkylbenzene sulphonate (LAS) on the mineralization, metabolism and uptake of 14C-Phenanthrene in a model ecosystem (water-lava-plant-air);Chemosphere;2005(61):741-751;SCI;第一作者
[8]Effect of oxygen on the release and distributionof phosphorus in the sediments under the light condition;Environmental Pollution;2006(141):482-487;SCI;第一作者
[9] Within-lake heterogeneity of environmental factors structuring bacterial community composition in LakeDongting,China;World journal of Microbiology and Biotechnology;2015,(31):1683–1689;SCI;责任作者
[10] Effect of ionic strength on phosphorus sorption in different sediments from a eutrophic piateau lake;RSC Advances;2015,5:79607—79615;SCI;责任作者
[11] Characteristics of phosphorus sorption at the sediment–water interface in Dongting Lake, a Yangtze-connected lake;Hydrology Research;2016, DOI: 10.2166/nh.2016.SCI;责任作者
[12] Effect of ionic strength on phosphorus removal with modified sediments in lake: kinetics and equilibrium studies;International Journal of Electrochemical Science;2016, DOI: 10.2166/nh.2016;SCI;责任作者
[13]Profiling of sediment microbial community in Dongting Lake before and after impoundment of the Three Gorges Dam;International Journal of Environmental Research and Public Health;2016, 13(6), 617;SCI;责任作者
[14]Community dynamics of nitrifying bacteria during nitrogen release in sediment from a eutrohic plateau lake;Fresenius Environmental Bulletin;2017,27:1736-1744;SCI;责任作者
专着:
[1] 蠡湖生态环境特征与综合保护对策研究;中国环境出版社;2016.9;姜霞、王书航等
[2]丹江口水库生态安全调查评估与保障对策研究;科学出版社;2016.4;姜霞,王书航等
[3]太湖有毒有害与高氮磷污染底泥环保疏浚规划研究;科学出版社;2014.3;姜霞,张晴波,王书航等
[4]湖泊生态安全保障策略;科学出版社;2013.7;郑丙辉,姜霞等
[5]湖泊河流环保疏浚工程技术指南;科学出版社;2013.05;金相灿,李进军,张晴波,姜霞等(第一副主编)
[6]沉积物质量调查评估;科学出版社;2012.12;姜霞,王书航等
专利:
[1]用于湖泊富营养化藻类的实验分析方法及其样品采集装置;ZL200910000029.9;金相灿,姜霞,叶春;
[2]基于水体污染底泥鉴别评估的环保疏浚范围的确定方法;ZL201210339238.8;姜霞,王书航
[3]一种用于浅水湖泊悬浮颗粒物采集和分离的一体化装置;ZL201220707165.9;王书航,姜霞,王岩
[4]一种确定湖泊沉积物高氮和/或磷风险区的方法;ZL201010615667.4;姜霞,王书航,王秋娟;
[5]一种水体原位实验装置;ZL 2013 1 0451056.4;姜霞;王书航;郑丙辉
[6]水体实验装置及方法;ZL201210404633.X;王书航,姜霞,王雯雯
标准、规划:
[1]《水质较好湖泊生态环境保护总体规划(2013-2020)》;环发〔2014〕138号
[2]江河湖泊生态环境保护系列技术指南;环发〔2014〕111号
[3]优良水质的水库生态安全评估指南;环办水体函〔2016〕2254号
[4]非重点工程主要水污染物新增削减量核算方法;环办水体函〔2016〕2089号