WATER-QUALITY CONTROL IN THE PRODUCTION OF DRINKING-WATER FROM RIVER WATER - THE APPLICATION OF IMMUNOLOGICAL TECHNIQUES FOR THE DETECTION OF CHLOROPHENOXY ACID HERBICIDES (2,4-D)

被引:28
|
作者
MEULENBERG, EP [1 ]
STOKS, PG [1 ]
机构
[1] WRK,DIV WATER QUAL,NIEUWEGEIN,NETHERLANDS
关键词
IMMUNOASSAY; BIOSENSORS; GAS CHROMATOGRAPHY; ENVIRONMENTAL ANALYSIS; WATER QUALITY CONTROL; HERBICIDES; WATERS;
D O I
10.1016/0003-2670(95)00123-H
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In the production of drinking water from river water, the quality of the raw water is extremely important. For this reason the Water Transport Company Rhine-Kennemerland (WRK) operates, among others, an early warning system. This system was found to be inappropriate for the detection of certain chlorophenoxy herbicides (e.g., 2,4-D, MCPP, MCPA and 2,4-DP) that are occasionally found in the Rhine in increased levels (above the drinking water norm of 0.1 mu g l(-1)). Commercially available immunoassay kits were evaluated for use in pre-screening. With some modifications to adapt the working range and to enhance the sensitivity of the kits, they were found to be applicable in the early warning. Comparison with a gas chromatography-mass spectrometry reference analysis revealed no false negative results and a rate of false positive results of about 10%. However, it should be taken into account that matrix effects may affect the results. A daily sampling frequency combined with an analysis frequency based on the actual flow in the river allowed for a periodic batchwise analysis. This permitted a timely availability of the results as well as a cost-effective use of the (modified) kits.
引用
收藏
页码:407 / 413
页数:7
相关论文
共 50 条
  • [21] DEGRADATION OF THE HERBICIDE 2,4-D IN RIVER WATER .2. THE ROLE OF SUSPENDED SEDIMENT, NUTRIENTS AND WATER TEMPERATURE
    NESBITT, HJ
    WATSON, JR
    WATER RESEARCH, 1980, 14 (12) : 1689 - 1694
  • [23] Ultrafiltration membranes for drinking-water production from low-quality surface water: A case study in Spain
    Rojas-Serrano, Fatima
    Alvarez-Arroyo, Rocio
    Perez, Jorge I.
    Plaza, Fidel
    Garralon, Gloria
    Gomez, Miguel A.
    MEMBRANE AND WATER TREATMENT, 2015, 6 (01): : 77 - 94
  • [24] REMOVING 2,4-D FROM WATER BY ORGANO-CLAYS
    HERMOSIN, MC
    CORNEJO, J
    CHEMOSPHERE, 1992, 24 (10) : 1493 - 1503
  • [25] Measurement and Correlation for solubilities of 2,4-D acid in Ethanol-water
    Wang, Yanfei
    Hu, Linshan
    APPLIED MECHANICS AND MATERIALS II, PTS 1 AND 2, 2014, 477-478 : 1452 - 1456
  • [26] SYNERGISTIC EFFECT OF GIBBERELLIC-ACID AND CHLORFLURENOL ON 2,4-D WITH REGARD TO WATER HYACINTH CONTROL
    PIETERSE, AH
    ROORDA, FA
    AQUATIC BOTANY, 1982, 13 (01) : 69 - 72
  • [27] RECOVERY AND VIABILITY OF MESQUITE SEEDS FED TO SHEEP RECEIVING 2,4-D IN DRINKING WATER
    GLENDENING, GE
    PAULSEN, HA
    BOTANICAL GAZETTE, 1950, 111 (04): : 486 - 491
  • [28] Adsorptive removal of 2,4-dichlorophenoxyacetic acid (2,4-D) from water with a metal-organic framework
    Jung, Beom K.
    Hasan, Zubair
    Jhung, Sung Hwa
    CHEMICAL ENGINEERING JOURNAL, 2013, 234 : 99 - 105
  • [29] Removing 2,4-Dichlorophenoxyacetic Acid (2,4-D) from Polluted Water using Zinc Ferrite Nanoparticles
    Zaghloul, Emad Eldin
    Amin, Alaa S.
    Diab, Mostafa Amin
    Elsonbati, Adel
    Ibrahim, Mahmoud S.
    EGYPTIAN JOURNAL OF CHEMISTRY, 2020, 63 (04): : 1411 - 1428
  • [30] Photooxidative purification of water to remove organochlorine pesticide 2,4-D (2,4-dichlorophenoxyacetic acid)
    Arkhipova, MB
    Tereshchenko, LY
    Arkhipov, YM
    RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 1997, 70 (12) : 1930 - 1935