Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir

In order to understand the improvement of water environment by cage-cleanup-activities in Panjiakou Reservoir,and to find out the types and characteristics of main pollutants in Panjiakou Reservoir,this paper carries out analysis and research on surface water samples in different time and space in t...

Full description

Saved in:
Bibliographic Details
Main Authors: LI Kun, ZHAO Xiaohui, LI Kelin, ZHANG Panwei, FANG Deng, FAN Yamin, LIU Xiaoru
Format: Article
Language:zho
Published: Editorial Office of Pearl River 2020-01-01
Series:Renmin Zhujiang
Subjects:
Online Access:http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.08.015
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850094017929281536
author LI Kun
ZHAO Xiaohui
LI Kelin
ZHANG Panwei
FANG Deng
FAN Yamin
LIU Xiaoru
author_facet LI Kun
ZHAO Xiaohui
LI Kelin
ZHANG Panwei
FANG Deng
FAN Yamin
LIU Xiaoru
author_sort LI Kun
collection DOAJ
description In order to understand the improvement of water environment by cage-cleanup-activities in Panjiakou Reservoir,and to find out the types and characteristics of main pollutants in Panjiakou Reservoir,this paper carries out analysis and research on surface water samples in different time and space in the study area.The water samples of Panjiakou Reservoir in 2017 and 2018 are tested by the high-throughput screening technology of full two-dimensional gas chromatography time-of-flight mass spectrometry.The results are further confirmed by the matching degrees,detection rates and other conditions.The confirmed results are classified according to the chemical properties and purposes,and the final results are used to analyze the trend of pollutant species change.Compared with the test results in 2017,there were 244 compounds reduced in 2018,including 38 ketones,27 alkanes,26 phenols,21 ethers,15 organic acids,etc.Among them,25 for industrial intermediates,14 for flavors and fragrances,12 for food additives,8 for industrial use,6 for pharmaceutical products,14 for plasticizers,and so on.Compared with the results in 2017,there were 22 compounds increased in 2018,including 10 esters,3 ketones,2 ethers,1 benzene,1 alcohol, 1 aldehyde,1 organic acid,etc.,among which 5 for flavors and fragrances,4 for plasticizers,2 for intermediates,and 1 for flame retardants,etc.The research indicates that a large number of organic pollutants decreased in the study area from 2017 to 2018,because of the cage-cleanup-activities in this reservoir.
format Article
id doaj-art-51b15f0278d64fdaae54af160c42412e
institution DOAJ
issn 1001-9235
language zho
publishDate 2020-01-01
publisher Editorial Office of Pearl River
record_format Article
series Renmin Zhujiang
spelling doaj-art-51b15f0278d64fdaae54af160c42412e2025-08-20T02:41:45ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352020-01-014147649347Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou ReservoirLI KunZHAO XiaohuiLI KelinZHANG PanweiFANG DengFAN YaminLIU XiaoruIn order to understand the improvement of water environment by cage-cleanup-activities in Panjiakou Reservoir,and to find out the types and characteristics of main pollutants in Panjiakou Reservoir,this paper carries out analysis and research on surface water samples in different time and space in the study area.The water samples of Panjiakou Reservoir in 2017 and 2018 are tested by the high-throughput screening technology of full two-dimensional gas chromatography time-of-flight mass spectrometry.The results are further confirmed by the matching degrees,detection rates and other conditions.The confirmed results are classified according to the chemical properties and purposes,and the final results are used to analyze the trend of pollutant species change.Compared with the test results in 2017,there were 244 compounds reduced in 2018,including 38 ketones,27 alkanes,26 phenols,21 ethers,15 organic acids,etc.Among them,25 for industrial intermediates,14 for flavors and fragrances,12 for food additives,8 for industrial use,6 for pharmaceutical products,14 for plasticizers,and so on.Compared with the results in 2017,there were 22 compounds increased in 2018,including 10 esters,3 ketones,2 ethers,1 benzene,1 alcohol, 1 aldehyde,1 organic acid,etc.,among which 5 for flavors and fragrances,4 for plasticizers,2 for intermediates,and 1 for flame retardants,etc.The research indicates that a large number of organic pollutants decreased in the study area from 2017 to 2018,because of the cage-cleanup-activities in this reservoir.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.08.015high-throughput screeningorganic matterchange trendPanjiakou Reservoir
spellingShingle LI Kun
ZHAO Xiaohui
LI Kelin
ZHANG Panwei
FANG Deng
FAN Yamin
LIU Xiaoru
Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
Renmin Zhujiang
high-throughput screening
organic matter
change trend
Panjiakou Reservoir
title Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
title_full Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
title_fullStr Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
title_full_unstemmed Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
title_short Analysis of Distribution Characteristics and Variation Trends of Organic Matters in Panjiakou Reservoir
title_sort analysis of distribution characteristics and variation trends of organic matters in panjiakou reservoir
topic high-throughput screening
organic matter
change trend
Panjiakou Reservoir
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2020.08.015
work_keys_str_mv AT likun analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT zhaoxiaohui analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT likelin analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT zhangpanwei analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT fangdeng analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT fanyamin analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir
AT liuxiaoru analysisofdistributioncharacteristicsandvariationtrendsoforganicmattersinpanjiakoureservoir