跳转到主要内容
首页

Dedicated to discovery

  • 关于 ELGA
    • 关于 ELGA
    • 招贤纳士
    • 活动
  • 支持
    • 实验室规划
  • 联系信息
  • EN
  • DE
  • ES
  • FR
  • IT
  • PT
  • JA
  • EN-US
首页
  • 产品
    • PURELAB
      • PURELAB® Flex
      • PURELAB® Quest
      • PURELAB® Pharma Compliance
      • PURELAB® Chorus 1 Complete
      • PURELAB® Chorus 1
      • PURELAB® Chorus 2
      • PURELAB® Chorus 3
      • PURELAB® Chorus 2 +
    • CENTRA
      • CENTRA® R60/120
      • CENTRA® R200
      • CENTRA® RDS
    • MEDICA
      • MEDICA® 7/15
      • MEDICA® Pro-R & Pro-RE
      • MEDICA® R200
      • MEDICA® EDI 15/30
      • MEDICA® Pro-LPS
      • MEDICA® Pro EDI 60/120
      • MEDICA® BIOX
      • Hubgrade
    • BIOPURE
      • BIOPURE® 300/600
    • PURENERGY 30
    • ELGA 全产品系列
  • 应用
    • 一般实验室用水要求
    • 临床生物化学
    • 免疫化学
    • 分光光度测定法:
    • 原子光谱分析法
    • 微生物分析
    • 气相色谱分析法
    • 液相色谱
      • High Performance Liquid Chromatography
    • 电化学
    • 细胞培养
    • 质谱分析法
    • 遗传学
    • 高效液相色谱 (HPLC)
  • 水纯化技术
    • PureSure
    • 反渗透法
    • 活性碳
    • 电去离子法
    • 离子交换法
    • 紫外线照射法
    • 过滤
  • 水中杂质
    • 微生物和细菌
    • 微粒
    • 无机化合物
    • 有机化合物
    • 溶解气体
  • 知识
    • BROSCHÜREN
    • 博客
    • 案例分析
    • 超纯水
    • 白皮书
  • 如何购买?
  • 联系信息
Home
  • 联系信息
  • 产品
    • PURELAB
      • PURELAB® Flex
      • PURELAB® Quest
      • PURELAB® Pharma Compliance
      • PURELAB® Chorus 1 Complete
      • PURELAB® Chorus 1
      • PURELAB® Chorus 2
      • PURELAB® Chorus 3
      • PURELAB® Chorus 2 +
    • CENTRA
      • CENTRA® R60/120
      • CENTRA® R200
      • CENTRA® RDS
    • MEDICA
      • MEDICA® 7/15
      • MEDICA® Pro-R & Pro-RE
      • MEDICA® R200
      • MEDICA® EDI 15/30
      • MEDICA® Pro-LPS
      • MEDICA® Pro EDI 60/120
      • MEDICA® BIOX
      • Hubgrade
    • BIOPURE
      • BIOPURE® 300/600
    • PURENERGY 30
    • ELGA 全产品系列
  • 应用
    • 一般实验室用水要求
    • 临床生物化学
    • 免疫化学
    • 分光光度测定法:
    • 原子光谱分析法
    • 微生物分析
    • 气相色谱分析法
    • 液相色谱
      • High Performance Liquid Chromatography
    • 电化学
    • 细胞培养
    • 质谱分析法
    • 遗传学
    • 高效液相色谱 (HPLC)
  • 水纯化技术
    • PureSure
    • 反渗透法
    • 活性碳
    • 电去离子法
    • 离子交换法
    • 紫外线照射法
    • 过滤
  • 水中杂质
    • 微生物和细菌
    • 微粒
    • 无机化合物
    • 有机化合物
    • 溶解气体
  • 知识
    • BROSCHÜREN
    • 博客
    • 案例分析
    • 超纯水
    • 白皮书
  • 如何购买?
  • 联系信息
  • 关于 ELGA
    • 关于 ELGA
    • 招贤纳士
    • 活动
  • 支持
    • 实验室规划
  • 联系信息
  • EN
  • DE
  • ES
  • FR
  • IT
  • PT
  • JA
  • EN-US
  • 隐私政策
  • 条款和条件
  • 全球法律合规
  • 专利
  • Trademarks
  • 页面操作员
  • Pesticides in Dutch drinking water
Environment & Sustainability

Pesticides in Dutch drinking water

5 8月 2022
- by ELGA Editorial Team

Pesticides in Dutch drinking water

Using pesticides to protect crop yields is a common agricultural practice. However, these chemicals contain active substances that can pose risks for the ecosystem and human health if they leach into the surrounding environment. This led Dutch researchers to develop a new method to determine the occurrence of recently authorised pesticides in groundwater and surface water used for the production of drinking water in the Netherlands.


Pesticide use is increasing because it is closely coupled with the intensification of food production and the expanding human global population. These chemicals can have negative impacts on human and ecological health, because of their ability to leach into groundwater or surface water through drift and agricultural runoff. For this reason, pesticides in Europe are regulated and authorised according to the Plant Protection Products Regulation 1107/2009. Groundwater, surface water and drinking water sources are also regularly assessed and monitored for the occurrence of pesticides and their metabolites, as proactive surveillance allows the early detection of potential risks. The quality standards set by the EU Drinking Water Directive are ≤ 0.1 µg/l for the active substances within pesticide products and their human toxicological relevant metabolites, ≤ 1 µg/l non-relevant metabolites and ≤ 0.5 µg/l for the summed concentrations of both.

Some recently authorised pesticides are classed as persistent and mobile organic compounds (PMOCs). There are gaps in terms of analysis, monitoring, treatment, and regulation of these substances, which have been found to evade different water treatment and environmental removal processes, and enter sources of drinking water. Researchers at the KWR Watercycle Research Institute, Oasen and the Institute for Biodiversity and Ecosystem Dynamics at the University of Amsterdam therefore developed a new LC-MS/MS method for the simultaneous detection and quantification of some of these pesticides, to assess their occurrence in drinking water sources.1

Sample preparation, processing and analysis

Water samples were taken from 127 sources of drinking water across the Netherlands and Flanders in May, June and August 2016. Pesticides were chosen for analysis based on a range of factors, including being authorised on the Dutch market between 2005 and 2015, and having a persistence in soil of more than seven days and a mobility – the ability to transfer through the environment – of less than four.

Researchers developed and validated a novel quantitative LC-MS/MS method for the analysis and identification of pesticides. Firstly, 45 ml of each water sample was treated with 50 µl of an internal standard solution at a concentration of 0.50 mg/l, before being mixed. Analytes were identified and quantified by LC-MS/MS analysis, using gradient elution with mobile phases comprising 0.05 % (v/v) acetic acid in water and 0.05 % (v/v) acetic acid in acetonitrile. The method was validated using drinking and surface water samples ‘spiked’ with pesticides at concentrations of 0.01, 0.10 and 1.0 mg/l, to determine the relative standard deviation, recovery, and limit of quantification. Ultrapure water from an ELGA LabWater PURELAB® Chorus system was used throughout the experimental process.

The results

In total, 15 out of the 24 recently authorised pesticides were detected in the sampled surface water locations – including seven compounds that exceeded the concentration permitted by the water quality standard. Interestingly, two substances were identified as neonicotinoids, detected in the river Meuse and a Belgian surface water reservoir at concentrations of 1.1 mg/l and 0.4 mg/l, respectively, even though the use of all except one of these chemicals is banned in the EU due to their extremely harmful impacts to human health. A human health evaluation was completed for all other pesticides found to be above 0.1 mg/l in drinking water sources, which suggested that while these levels were above the specifications in the quality guidelines, no adverse human health effects were to be expected.

Summary

This study shows that the presence pesticides in drinking water sources is a major concern across the Netherlands. Pesticides and/or their metabolites were detected in two thirds of the abstraction areas, and exceeded the permitted water quality standards level in one third of abstraction areas. Furthermore, the occurrence of the two neonicotinoids in drinking water sources, along with the other pesticides authorised within the last 10 years, emphasises the importance of keeping routine monitoring methods up to date. 

Why Choose ELGA LabWater?

The presence of impurities in laboratory water can be a major problem in research experiments, and can seriously compromise results. ELGA LabWater has been a trusted name in pure and ultrapure water since 1937. We believe in providing you with water purification solutions that can meet a wide range of needs and applications, backed by excellent service and support. For more information on our Type I ultrapure water systems, check out our PURELAB Quest, PURELAB Chorus 1 Complete and our PURELAB flex models.
 

Reference:

  1. Davani L, et al. Aβ1-42 peptide toxicity on neuronal cells: A lipidomic study. J Pharm Biomed Anal. 2022;219:114876 doi: 10.1016/j.jpba.2022.114876.


     
  • 留言咨询
  • 获取报价
  • 预订演示
  • 联系获认证的合作伙伴

留言咨询

在 ELGA LABWATER,我们希望能够为您提供有关我们实验室水纯化产品的精彩优惠和新闻动态。 我们将使用您提供的信息来预测您可能会感兴趣的内容。 我们会慎重处理您的数据,您可在此查阅我们的隐私政策。

ELGA LABWATER 的所有合作伙伴均已通过我们的审慎审核和认证。 为了对您的问题或查询进行回复,我们可能将您的联系详情转发给获认证的合作伙伴,由他们直接与您联系。 您可在此查看我们的获认证业务合作伙伴名单。

如果您希望接收来自 ELGA 及我们获认证合作伙伴的最新动态,请勾选下框: 在此.

是,我希望 ELGA LabWater 及其获认证合作伙伴基于我的联系详情为我发送其最新动态

获取报价

At ELGA LabWater, we have exciting offers and news about our products and services that we hope you’d like to hear about. We will use your information to predict what you might be interested in. We will treat your data with respect and you can find the details in our Privacy Policy.

ELGA LabWater works with a network of Approved Partners. In order to answer your questions or enquiries, we may pass your contact details to an Approved Partner, who may contact you directly. 

I'd like to receive updates from ELGA LabWater & ELGA Approved Partners based on my details.

预订演示

At ELGA LabWater, we have exciting offers and news about our products and services that we hope you’d like to hear about. We will use your information to predict what you might be interested in. We will treat your data with respect and you can find the details in our Privacy Policy.

ELGA LabWater works with a network of Approved Partners. In order to answer your questions or enquiries, we may pass your contact details to an Approved Partner, who may contact you directly. 

I'd like to receive updates from ELGA LabWater & ELGA Approved Partners based on my details.

Call us

Can't find what you are looking for?

Support Number
+44 (0)20 3567 7300
United Kingdom Sales
+44 (0)1628 879 704
United States of America Sales
+1 877-315-3542
France Sales
+33 1 40 83 65 00
China Sales
+86 400-616-8882

 

Elga LabWater 总部

ELGA Labwater英国总部

VWS(UK)Ltd.

Lane End Business Park,Lane End,High Wycombe

HP14 3BY,United Kingdom

ELGA Labwater中国总部

威立雅水处理技术(上海)有限公司

地址 : 上海市浦东新区张东路1761号5号楼
电话 : 021 - 38172288
传真 : 021 - 38172289
邮编 : 201210

案例研究

  • 雅培诊断
  • DASA 医学诊断
  • NeoDIN 医学研究所
  • 北斯塔福德郡 NHS 信托大学医院
  • Olsberg 职业技术学院

学习资源

  • 了解超纯水
  • 白皮书
  • 水纯化技术
  • 实验室应用
  • 水中杂质
  • Latest Blog
  • Water Purity - Different Types of Pure Water
  • What is Clinical Laboratory Reagent Water (CLSI)?
  • What is Total Organic Carbon (TOC)?

© VWS (UK) Ltd. 以 ELGA®LabWater 的名义经营业务。2025- 保留所有权利
ELGA 是 Veolia 旗下全球实验室用水品牌。

备案号:沪ICP备20001142号-1

  • 隐私政策
  • 条款和条件
  • 全球法律合规
  • 专利
  • Trademarks
  • 页面操作员
  • 语言
    • Deutsch
    • English
    • Español
    • Français
    • Italiano
    • Português
    • 日本語
    • 中文
  • Veolia 其他站点
    • Veolia
    • Veolia Foundation
    • Veolia Water Technologies
Elga Veolia
TOP

© 2017 ELGA Veolia