7 G( V" Y/ ^; B 海洋有机地球化学实验室II
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) A, n. D: W1 o; U# z0 G 课题组负责人及老师介绍: * z" Z$ B3 V; q- N+ x, C
李先国 教授,博士生导师 : Z% |4 R0 V, J' i* z) c
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/ I8 c, }! [( P5 [' w O9 M 冯丽娟教授,硕士生导师 ! n2 s+ k* C0 n3 l4 M- i3 {2 X$ n9 ~
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+ `+ G' N1 R( M! N w; P" f5 h( j, y$ \ 张大海 副教授,硕士生导师
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姚硕 讲师 " x$ \* T q# N2 R0 A9 O& o
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! h" a7 L5 ~5 H; j0 X7 s0 S 课题组研究领域与方向 
3 f1 A |2 A" i& M; L 目前课题组主要开展四个方向的研究,分别是:
+ h o0 F8 J, B& H% m, B (一)、陆源有机物及其沉积记录:以木质素、正构烷烃、脂质等为特征生物标志物,研究其在海洋中的沉积记录及其环境地球化学意义。
; A% U( I. `% ^* E2 a) R (二)、现代有机污染物及其转化机理:通过实验室模拟实验中降解中间产物或/和代谢产物的分析、稳定同位素分馏效应的测定以及理论计算,与现场测定结果相结合,研究典型有机污染物在环境中的来源、分布及其光降解和生物降解机理,结合定量构效关系研究,评价其生态风险。目前已经开展的污染物研究包括多环芳烃(PAH)、多氯联苯(PCB)、多溴联苯醚(PBDE)、德克隆(DP)、塑化剂(PAES)、烷基酚(NP和OP)、微塑料(MP)等。
+ j/ M0 F2 _# z# s0 b4 U) H9 u, j (三):海洋资源化学:通过分析海洋来源物质的成分、结构,确定其可能的生物能量来源,判别其使用价值,尤其是潜在价值。通过各种化学方法或手段转化为可持续资源、能源,如浒苔液化、镁盐晶须、人工海水等。针对当前环境氮、硫污染问题,从源头出发,开展气体、液体的除氮、脱硫工艺研究。 ( F( A5 x9 ?) G5 @
(四)、微生物化学:通过分析海洋来源微生物群落结构、功能基因、次级代谢产物以及中间产物来探索小分子活性物质的生物合成途径、机理,进一步确定元素迁移路径和能量的转化方式,同时探索发现活性天然产物。通过特殊环境来源微生物的驯化,探索微生物在污染物的去除、降解方面的应用。 4 M8 l: \; I% v
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' Q4 d" G2 v, @) ?) j 课题组重要成果
2 M6 P2 h! w5 E: E 1)Chanjuan Li, Dahai Zhang, Jialin Peng, Xianguo Li*.The effect of pH, nitrate, iron (III) and bicarbonate on photodegradation of oxytetracycline in aqueous solution. Journal of Photochemistry and Photobiology A: Chemistry, 2018, 356: 239–247.
# w1 u' M3 T2 Z+ f# V& G# f$ G 2)Yanxia Lin, Wei Deng*, Shengyong Li, Jiafu Li, Guoguang Wang, Dahai Zhang, Xianguo Li*. Congener profile, distribution, sources and ecological risk of parent and alkyl-PAHs in surface sediments of Southern Yellow Sea, China. Science of the Total Environment, 2017, 580: 1309–1317. 1 z; }: r# r/ |2 X) R) {" p
3)Guoguang Wang, Jialin Peng, Ting Hao, Yao Liu, Dahai Zhang, Xianguo Li*. Distribution and region-specific sources of Dechlorane Plus in marine sediments from the coastal East China Sea. Science of the Total Environment, 2016, 573: 389–396. # T' x, f f- j& w7 a
4)Guoguang Wang, Jialin Peng, Dahai Zhang, Xianguo Li*. Characterizing distributions, composition profiles, sources and potential health risk of polybrominated diphenyl ethers (PBDEs) in the coastal sediments from East China Sea. Environmental Pollution, 2016, 213: 468-481.
! c* j3 B: }* G6 B; q( q2 l 5)Guoguang Wang, Jialin Peng, Xiang Xu, Dahai Zhang, Xianguo Li*. Polybrominated diphenyl ethers in sediments from the Southern Yellow Sea: Concentration, composition profile, source identification and mass inventory. Chemosphere, 2016, 144: 2097-2105. 8 Y2 w' n6 |, d$ @! f
6)Jiafu Li, Han Dong, Xiang Xu, Bin Han, Xianguo Li*, Chenjian Zhu, Chen Han, Shaopeng Liu, Dandan Yang, Qian Xu, Dahai Zhang*. Prediction of the bioaccumulation of PAHs in surface sediments of Bohai Sea, China and quantitative assessment of the related toxicity and health risk to humans. Marine Pollution Bulletin, 2016, 104: 92-100.
6 M8 q* Y) o8 _' q0 O 7)Jialin Peng, Guoguang Wang, Dahai Zhang, Dongmei Zhang, Xianguo Li*. Photodegradation of nonylphenol in aqueous solution by simulated solar UV-irradiation: The comprehensive effect of nitrate, ferric ion and bicarbonate. Journal of Photochemistry and Photobiology A: Chemistry, 2016, 326: 9–15.
) _3 ? b, a7 h- } 8)Yan Zhang, Ying Liu, Han Dong, Xianguo Li, Dahai Zhang*. The nonylphenol biodegradation study by estuary sediment-derived fungus Penicillium simplicissimum. Environmental Science and Pollution Research, 2016, 23(15): 15122–15132. 3 ?4 v0 H& a( i. f/ n
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