Fate of atrazine in sandy soil cropped with sorghum

被引:15
作者
Mbuya, OS [1 ]
Nkedi-Kizza, P
Boote, KJ
机构
[1] Florida A&M Univ, Ctr Water Qual, Tallahassee, FL 32307 USA
[2] Univ Florida, Dept Soil & Water Sci, Gainesville, FL 32611 USA
[3] Univ Florida, Dept Agron, Gainesville, FL 32611 USA
关键词
D O I
10.2134/jeq2001.30171x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A field study was conducted to determine the fate of atrazine (6-chloro-N-2-ethyl-N-4-isopropyl-1,3,5-triazine-2,4-diamine) within the root zone (0 to 90 cm) of a sandy soil cropped with sorghum [Sorghum bicolor (L.) Moench] in Gainesville, Florida. Atrazine was uniformly applied at a rate of 1.12 kg a.i. ha(-1) to a sorghum crop ender moderate irrigation, optimum irrigation, and no irrigation (rainfed), 2 d after crop emergence. Bromide as a tracer for water movement was applied to the soil as NaBr at a rate of 45 kg Br- ha(-1), 3 d before atrazine application, Soil water content, atrazine, and Br- concentrations were determined as a function of time using soil samples taken from the root zone. Atrazine sorption coefficients and degradation rates were determined by depth for the entire root zone in the laboratory. Atrazine was strongly adsorbed within the upper 30 cm of soil and most of the atrazine recovered from the soil during the growing season was in that depth. The estimated half-life for atrazine was 32 d in topsoil to 83 d in subsoil, Atrazine concentration within the root zone decreased from 0.44 kg a.i. ha(-1) 2 days after application (DAA) to 0.1 kg a.i. ha(-1) 26 DAA. Negligible amounts of atrazine (approximate to5 mug kg(-1)) were detected below the 60-cm soil depth by 64 DAA, Most of the decrease in atrazine concentration in the root zone over time was attributed to degradation. In contrast, all applied bromide had leached past the 60-cm soil depth during the same time interval.
引用
收藏
页码:71 / 77
页数:7
相关论文
共 29 条
[1]   LEACHING POTENTIAL AND DECOMPOSITION OF CLOPYRALID IN SWEDISH SOILS UNDER FIELD CONDITIONS [J].
BERGSTROM, L ;
MCGIBBON, A ;
DAY, S ;
SNEL, M .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 1991, 10 (05) :563-571
[2]  
CALHOUN FG, 1974, 741 SLS U FLOR
[3]  
COHEN SZ, 1984, ACS SYM SER, V259, P297
[4]   NONEQUILIBRIUM TRANSPORT OF ATRAZINE THROUGH LARGE INTACT SOIL CORES [J].
GABER, HM ;
INSKEEP, WP ;
COMFORT, SD ;
WRAITH, JM .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1995, 59 (01) :60-67
[5]   RATE OF DEGRADATION OF METRIBUZIN AND 2 ANALOGS IN SOIL [J].
HYZAK, DL ;
ZIMDAHL, RL .
WEED SCIENCE, 1974, 22 (01) :75-79
[6]  
NASH RG, 1988, ENV CHEM HERBICIDES, V1, P131
[7]   ADSORPTION OF DIURON AND 2,4,5-T ON SOIL PARTICLE-SIZE SEPARATES [J].
NKEDIKIZZA, P ;
RAO, PSC ;
JOHNSON, JW .
JOURNAL OF ENVIRONMENTAL QUALITY, 1983, 12 (02) :195-197
[8]   INFLUENCE OF ORGANIC COSOLVENTS ON SORPTION OF HYDROPHOBIC ORGANIC-CHEMICALS BY SOILS [J].
NKEDIKIZZA, P ;
RAO, PSC ;
HORNSBY, AG .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1985, 19 (10) :975-979
[9]   SIMULTANEOUS HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHIC DETERMINATION OF NITRATE, NITRITE, AND ORGANIC PESTICIDES IN SOIL SOLUTION USING A MULTIDIMENSIONAL COLUMN WITH ULTRAVIOLET DETECTION [J].
NKEDIKIZZA, P ;
OWUSUYAW, J .
JOURNAL OF ENVIRONMENTAL SCIENCE AND HEALTH PART A-ENVIRONMENTAL SCIENCE AND ENGINEERING & TOXIC AND HAZARDOUS SUBSTANCE CONTROL, 1992, A27 (01) :245-259
[10]  
OHM CORP, 1993, OHM RAPID ASS KIT MA