Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice

The eutrophication control of a saline park water body in the Inner Mongolia Plateau is conducted by constructing a complete aquatic ecosystem.Acid-alkali adjustment of this water body is carried out to build aquatic plant and animal communities in the lake body,and functional bacterial agents are a...

Full description

Saved in:
Bibliographic Details
Main Authors: FENG Yu, ZHANG Wenlei, XU Yufeng, ZHANG Huajun
Format: Article
Language:zho
Published: Editorial Office of Pearl River 2022-01-01
Series:Renmin Zhujiang
Subjects:
Online Access:http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2022.08.006
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841535852276088832
author FENG Yu
ZHANG Wenlei
XU Yufeng
ZHANG Huajun
author_facet FENG Yu
ZHANG Wenlei
XU Yufeng
ZHANG Huajun
author_sort FENG Yu
collection DOAJ
description The eutrophication control of a saline park water body in the Inner Mongolia Plateau is conducted by constructing a complete aquatic ecosystem.Acid-alkali adjustment of this water body is carried out to build aquatic plant and animal communities in the lake body,and functional bacterial agents are also supplemented to build and restore microbial communities.Moreover,the stable development of the ecosystem is guaranteed by on-site maintenance measures.The project effect shows that the aquatic ecosystem remains stable after its successful construction,with a clear water body that offers a favorable pollutant removal effect and main water quality indexes significantly better than those before treatment.Specifically,the pH of the water body decreases from 9.09 to 8.75,and the turbidity is lowered from 20.5 NTU to 4.0 NTU.Regarding transparency,it reaches more than 1.5 m at the deepest part of the water body,or even a clear bottom is achieved.The total phosphorus concentration decreases from 0.19 mg/L to 0.03 mg/L,and the COD<sub>Cr</sub> concentration is reduced from 109.5 mg/L to 17.0 mg/L.In addition,aquatic animal biomass and the number of species of aquatic animals increase significantly.The above results indicate that the water quality improvement target is achieved.The aquatic ecosystem after treatment with maintenance measures can resist external disturbance to a certain extent,and the implementation of this project can provide a reference for the treatment of saline lakes in plateau areas.
format Article
id doaj-art-4c688f95900c47d48af26a994034c1d9
institution Kabale University
issn 1001-9235
language zho
publishDate 2022-01-01
publisher Editorial Office of Pearl River
record_format Article
series Renmin Zhujiang
spelling doaj-art-4c688f95900c47d48af26a994034c1d92025-01-15T02:26:47ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352022-01-014347644068Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and PracticeFENG YuZHANG WenleiXU YufengZHANG HuajunThe eutrophication control of a saline park water body in the Inner Mongolia Plateau is conducted by constructing a complete aquatic ecosystem.Acid-alkali adjustment of this water body is carried out to build aquatic plant and animal communities in the lake body,and functional bacterial agents are also supplemented to build and restore microbial communities.Moreover,the stable development of the ecosystem is guaranteed by on-site maintenance measures.The project effect shows that the aquatic ecosystem remains stable after its successful construction,with a clear water body that offers a favorable pollutant removal effect and main water quality indexes significantly better than those before treatment.Specifically,the pH of the water body decreases from 9.09 to 8.75,and the turbidity is lowered from 20.5 NTU to 4.0 NTU.Regarding transparency,it reaches more than 1.5 m at the deepest part of the water body,or even a clear bottom is achieved.The total phosphorus concentration decreases from 0.19 mg/L to 0.03 mg/L,and the COD<sub>Cr</sub> concentration is reduced from 109.5 mg/L to 17.0 mg/L.In addition,aquatic animal biomass and the number of species of aquatic animals increase significantly.The above results indicate that the water quality improvement target is achieved.The aquatic ecosystem after treatment with maintenance measures can resist external disturbance to a certain extent,and the implementation of this project can provide a reference for the treatment of saline lakes in plateau areas.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2022.08.006salinizationpark water bodyaquatic ecosystem restorationregime shiftbiomanipulation
spellingShingle FENG Yu
ZHANG Wenlei
XU Yufeng
ZHANG Huajun
Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
Renmin Zhujiang
salinization
park water body
aquatic ecosystem restoration
regime shift
biomanipulation
title Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
title_full Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
title_fullStr Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
title_full_unstemmed Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
title_short Treatment Project Design for Weakly Saline Water Bodies in Desert Parks and Practice
title_sort treatment project design for weakly saline water bodies in desert parks and practice
topic salinization
park water body
aquatic ecosystem restoration
regime shift
biomanipulation
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2022.08.006
work_keys_str_mv AT fengyu treatmentprojectdesignforweaklysalinewaterbodiesindesertparksandpractice
AT zhangwenlei treatmentprojectdesignforweaklysalinewaterbodiesindesertparksandpractice
AT xuyufeng treatmentprojectdesignforweaklysalinewaterbodiesindesertparksandpractice
AT zhanghuajun treatmentprojectdesignforweaklysalinewaterbodiesindesertparksandpractice