TECHNICAL PAPERS
Mar 1, 2000

Animal Waste Containment in Anaerobic Lagoons Lined with Compacted Clays

Publication: Journal of Geotechnical and Geoenvironmental Engineering
Volume 126, Issue 3

Abstract

The practice of animal waste containment has recently drawn much interest from public and regulatory agencies in agriculture-oriented states such as Kansas and North Carolina. In this paper, the debate surrounding the practice is outlined, and results from a research investigation pertinent to the state of Kansas are presented. The research investigation involved two phases. In the first phase, compacted specimens of Kansas soils were tested with animal waste as the influent. The key objective of this phase of research was to assess the range of seepage quantities and the transport characteristics of nitrogen in the ammonium form (NH4-N) through the compacted soils. Results from this phase indicated a steady increase of microbial counts in the liquid effluent. However, biological clogging did not appear to be prominent during the NH4-N breakthrough time period. The results indicate significant differences in microbial uptake of NH4-N among samples of the same soil type. In the second phase, analytical and numerical solutions were used to simulate ammonium transport in the field-scale liners and to estimate upper-bound travel times and final concentrations of NH4-N in the underlying soils. Results from this phase showed drastic differences in travel times and end concentrations of NH4-N among liners prepared from the same soil type. The potential for significant retardation, decay, and saturation levels of NH4-N in clay liners suggests that liner thickness is an important parameter. It is concluded that mass transfer characteristics of liner material, cation exchange capacity and microbial uptake in particular, should be important considerations in the design of animal waste lagoon liners.

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References

1.
Barrington, S. F., and Broughton, R. S. (1988). “Designing earthen storage facilities for manure.” Can. Agric. Eng., 30, 289–292.
2.
Barrington, S. F., Jutras, P. J., and Broughton, R. S. (1987a). “The sealing of soils by manure. I: Preliminary investigations.” Can. Agric. Eng., 29, 99–103.
3.
Barrington, S. F., Jutras, P. J., and Broughton, R. S. (1987b). “The sealing of soils by manure. II: Sealing mechanisms.” Can. Agric. Eng., 29, 105–108.
4.
Barrington, S. F., and Madramootoo, C. A. (1989). “Investigating seal formation from manure infiltration into soils.” Trans. ASAE, 32, 851–856.
5.
Campbell, A. J., MacLeod, J. A., and Stewart, C. (1997). “Nutrient characterization of stored liquid hog manure.” Can. Agric. Eng., 39, 43–48.
6.
Ciravolo, T. G., Martens, D. C., Hallock, D. L., Jr. Collins, E. R., Kornegay, E. T., and Thomas, H. R. (1979). “Pollutant movement to shallow ground water tables from anaerobic swine waste lagoons.” J. Envir. Quality, 8, 126–130.
7.
Collins, E. R., Ciravolo, T. G., Hallock, D. L., Thomas, H. R., and Kimegay, E. T. (1975). “Effect of anaerobic swine lagoons on groundwater quality in high water table soils.” Proc., 3rd Int. Symp. on Livestock Wastes, Managing Livestock Wastes, ASAE, St. Joseph, Mich., 303–305.
8.
Culley, J. L. B., and Phillips, P. A. (1989). “Retention and loss of nitrogen and solids from unlined earthen manure storage.” Trans. ASAE, 32, 677–683.
9.
Daniel, D. E. ( 1994). “State-of-the-art: Laboratory hydraulic conductivity tests for saturated soils.” Hydraulic conductivity and waste contaminant transport in soil, ASTM STP 1142, D. E. Daniel and S. J. Trautwein, eds., ASTM, West Conshohocken, Pa., 30–78.
10.
Ham, J. M., Reddi, L. N., Rice, C. W., and Murphy, J. P. (1998). “Evaluation of lagoons for containment of animal waste.” Res. Rep. Submitted to the Kansas Department of Health and Environment.
11.
Hobson, L. ( 1991). “Impact on groundwater from livestock waste lagoons,” MS thesis, Kansas State University, Manhattan, Kans.
12.
Holloway, M. P., Bottcher, A. B., Nordstedt, R. A., and Campbell, K. L. (1996). “Best management practices for reducing nitrate contamination of the groundwater on dairy farms.” Appl. Eng. Agric., 12, 197–202.
13.
Miller, M. H., Robinson, J. B., and Gallagher, D. W. (1976). “Accumulation of nutrients in soil beneath hog manure lagoons.” J. Envir. Quality, 5, 279–282.
14.
Ogata, A., and Banks, R. B. ( 1961). “A solution of the differential equation of longitudinal dispersion in porous media.” Profl. Paper 411-A, USGS.
15.
Paul, E. A., and Clark, F. E. ( 1996). Soil microbiology and biochemistry, 2nd Ed., Academic, San Diego, 209.
16.
Rowsell, J. G., Miller, M. H., and Groenevelt, P. H. (1985). “Self-sealing of earthen liquid manure storage ponds: II. Rate and mechanism of sealing.” J. Envir. Quality, 14, 539–542.
17.
Sewell, J. I. (1978). “Dairy lagoon effects on groundwater quality.” Trans. ASAE, 21, 948–952.
18.
Shackelford, C. D. ( 1993). “Contaminant transport.” Chapter 3, Geotechnical practice for waste disposal, D. E. Daniel, ed., Chapman & Hall, London, 33–65.
19.
Shackelford, C. D., and Daniel, D. E. (1991a). “Diffusion in saturated soil. I: Background.”J. Geotech. Engrg., ASCE, 117(3), 467–484.
20.
Shackelford, C. D., and Daniel, D. E. (1991b). “Diffusion in saturated soil. II: Results for compacted clay.”J. Geotech. Engrg., ASCE, 117(3), 485–506.
21.
Simunek, J., Vogel, T., and van Genuchten, M. Th (1994). “The SWMS-2D code for simulating water flow and solute transport in two-dimensional variably saturated media, Version 1.21.” Res. Rep. No. 132, U.S. Salinity Lab. Agric. Res. Service, U.S. Department of Agriculture, Riverside, Calif.
22.
Sweeten, J. M., Marek, T. H., and McReynolds, D. ( 1992). “Groundwater quality beneath cattle feedlots in Texas.” ASAE, St. Joseph, Mich.
23.
Sweeten, J. M., Safley, L. M., and Melvin, S. W. (1980). “Sludge removal from lagoons and holding ponds: Case studies.” Proc., 4th Int. Symp. on Livestock Wastes, Livestock Waste: A Renewable Resour., ASAE, St. Joseph, Mich., 204–210.
24.
USDA (1997). “Geotechnical design and construction guidelines, 651.0703.” Draft Rep., Natural Resources Conservative Service.
25.
U.S. EPA ( 1995). “Drinking water regulations and health advisories.” Office of Water, Washington, D.C.
26.
van Genuchten, M. Th. (1981). “Analytical solutions for chemical transport with simultaneous adsorption, zero-order production, and first-order decay.” J. Hydro., Amsterdam, 49, 213–233.
27.
Westerman, P. W., Huffman, R. L., and Feng, J. S. (1995). “Swine-lagoon seepage in sand soil.” Trans. ASAE, 38, 1749–1760.

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Published In

Go to Journal of Geotechnical and Geoenvironmental Engineering
Journal of Geotechnical and Geoenvironmental Engineering
Volume 126Issue 3March 2000
Pages: 257 - 264

History

Received: Jan 26, 1999
Published online: Mar 1, 2000
Published in print: Mar 2000

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Authors

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Member, ASCE
Prof., Dept. of Civ. Engrg., Seaton Hall, Kansas State Univ., Manhattan, KS 66506. E-mail: [email protected]
Grad. Res. Asst., Dept. of Civ. Engrg., Seaton Hall, Kansas State Univ., Manhattan, KS.

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