Freshwater lake ecosystem health assessment and its response to pollution stresses based on planktonic index of biotic integrity.

Huayong Zhang, Zhengda Duan, Zhongyu Wang, Meifang Zhong, Wang Tian, Hualin Wang, Hai Huang
Author Information
  1. Huayong Zhang: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China. rceens@ncepu.edu.cn. ORCID
  2. Zhengda Duan: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.
  3. Zhongyu Wang: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.
  4. Meifang Zhong: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.
  5. Wang Tian: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.
  6. Hualin Wang: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.
  7. Hai Huang: Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing, 102206, China.

Abstract

Based on the planktonic data monitored in Lake Balihe, an ecosystem health assessment system referring to planktonic index of biotic integrity (P-IBI) was constructed to evaluate the lake health status and study the response mechanism of P-IBI to environmental factors. The results showed that a total of 7 phylum 59 species of phytoplankton and 3 phylum 28 species of zooplankton were identified in the lake, and both the plankton density and biomass varied significantly in time and space scales. The significant variation of Protozoa density should be responsible to the inconsistency between the distributions of zooplankton density and biomass, as well as the lowest value of P-IBI in summer. The P-IBI values and therefore the health levels can be seasonally ranked as winter > autumn > spring > summer and found spatially increased along the flow direction. Based on the relationships between P-IBI and the environmental factors, ammonia nitrogen = 0.46 mg/L and Secchi depth = 63 cm were found as the environmental protection thresholds of planktonic biotic integrity for this freshwater lake ecosystem. The findings of the research may provide some guidance to the ecological monitoring and protection of freshwater lake.

Keywords

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Grants

  1. 2015ZX07204-007, 2015ZX07203-011/Major Science and Technology Program for Water Pollution Control and Treatment
  2. 2017ZX07101-002/Major Science and Technology Program for Water Pollution Control and Treatment
  3. 2017MS055/Chinese Fundamental Research Funds for the Central Universities

MeSH Term

Animals
Biomass
Ecology
Ecosystem
Environmental Monitoring
Lakes
Nitrogen
Phytoplankton
Plankton
Seasons
Water Quality
Zooplankton

Chemicals

Nitrogen

Word Cloud

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