个人信息Personal Information
副教授
硕士生导师
性别:女
毕业院校:同济大学
学位:博士
所在单位:生物工程学院
学科:生物工程与技术. 微生物学
办公地点:生命学院362室
电子邮箱:WangJinghan@dlut.edu.cn
Meteorological factors and water quality changes of Plateau Lake Dianchi in China (1990-2015) and their joint influences on cyanobacterial blooms
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论文类型:期刊论文
发表时间:2019-02-02
发表刊物:The Science of the total environment
收录刊物:PubMed
卷号:665
页面范围:406-418
ISSN号:1879-1026
关键字:Cyanobacterial bloom,Lake Dianchi,Meteorological factors,Multivariate linear stepwise regression,Principal component analysis,Water quality
摘要:Cyanobacterial blooms (CBs) in eutrophic lakes can cause various harmful issues to both humans and animals, disturb drinking water supply, and devastate lake ecosystems. Although great progresses have been made in many lakes from China and abroad on CBs prevention, mitigation and control, systematic research on the influencing factors of CBs in hypereutrophic plateau Lake Dianchi over a long time span is so far unavailable. This study comprehensively generalized both meteorological and water quality changes in Lake Dianchi during 1990-2015 on both yearly and monthly basis, separated Caohai from Waihai of Lake Dianchi regarding water quality variations, and investigated the individual and joint influencing meteorological and water quality factors on CBs using Spearman correlation, principal component analysis, and multivariate linear stepwise regression. Four specific lake regions, i.e. Caohai, northern Waihai, central Waihai, and southern Waihai, were respectively analyzed due to significant water quality heterogeneity. Results indicated that mild temperatures, low wind velocities, and hypereutrophic water conditions all favor CBs in Lake Dianchi, and the significant temperature rising trend may exacerbate severer CBs in the future. Despite configuration differences, the first principal components on CBs in the four sub-regions of Lake Dianchi were all consisted of meteorological factors, while water quality parameters especially total phosphorus concentrations contributed to the second principal component. Quantification of joint meteorological and water quality influencing factors on CBs needs further improvement, and largely relies on the accuracy of future weather forecasts, in order to set the goal of water quality improvement in each specific lake region for effective CBs management.Copyright © 2019. Published by Elsevier B.V.