HR: 0800h
AN: H11C-0668 [Abstracts]
TI: Assessment of Filter Materials for Removal of Contaminants From Agricultural Drainage Waters
AU: * Allred, B J
EM: allred.13@osu.edu
AF: USDA/ARS - Soil Drainage Research Unit, 590 Woody Hayes Drive, Room 234, Columbus,
OH 43210, United States
AB:
Fertilizer nutrients and pesticides applied on farm fields, especially in the Midwest U.S., are commonly
intercepted by buried agricultural drainage pipes and then discharged into local streams and lakes, oftentimes
resulting in an adverse environmental impact on these surface water bodies. Low cost filter materials have the
potential to remove nutrient and pesticide contaminants from agricultural drainage waters before these waters
are released from the farm site. Batch tests were conducted to find filter materials potentially capable of removing
nutrient (nitrate and phosphate) and pesticide (atrazine) contaminants from subsurface drainage waters. For
each batch test, stock solution (40 g) and filter material (5 g) were combined in 50 mL Teflon centrifuge tubes and
mixed with a rotator for 24 hours. The stock solution contained 50 mg/L nitrate-N, 0.25 mg/L phosphate-P, 0.4
mg/L atrazine, 570 mg/L calcium sulfate, and 140 mg/L potassium chloride. Calcium sulfate and potassium
chloride were added so that the stock solution would contain anions and cations normally found in agricultural
drainage waters. There were six replicate batch tests for each filter material. At the completion of each test,
solution was removed from the centrifuge tube and analyzed for nitrate-N, phosphate-P, and atrazine. A total of 38
filter materials were tested, which were divided into five classes; high carbon content substances, high iron
content substances, high aluminum content substances, surfactant modified clay/zeolite, and coal combustion
products.
Batch test results generally indicate, that with regard to the five classes of filter materials; high carbon content
substances adsorbed atrazine very effectively; high iron content substances worked especially well removing
almost all of the phosphate present; high aluminum content substances lowered phosphate levels; surfactant
modified clay/zeolite substantially reduced both nitrate and atrazine; and coal combustion products significantly
decreased phosphate amounts. For the 38 specific filter materials evaluated, based on a 60 percent
contaminant reduction level, 12 materials removed nitrate, 26 materials removed phosphate, and 21 materials
removed atrazine. Furthermore, 2 materials removed zero contaminants, 16 materials removed one contaminant,
17 materials removed two contaminants, and 3 of the materials removed all three contaminants. The most
effective filter materials proved to be a steam activated carbon, a zero valent iron and sulfer modified iron mixture,
and a surfactant modified clay. The findings of this study indicate that there are a variety of filter materials, either
separately or in combination, which have the potential to treat agricultural drainage waters.
DE: 1806 Chemistry of fresh water
DE: 1865 Soils (0486)
DE: 1871 Surface water quality
SC: Hydrology [H]
MN: 2007 Fall Meeting