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A Washer for Removing Thickened Roots from Soil1,2

Published online by Cambridge University Press:  12 June 2017

Steven J. Carlson
Affiliation:
North Dakota State Univ., U.S. Dep. Agric., Agric. Res. Serv., Metabolism and Radiation Res. Lab./Dep. Agron., Fargo, ND 58105
William W. Donald
Affiliation:
North Dakota State Univ., U.S. Dep. Agric., Agric. Res. Serv., Metabolism and Radiation Res. Lab./Dep. Agron., Fargo, ND 58105

Abstract

A root washer was constructed which rapidly separated Canada thistle [Cirsium arvense (L.) Scop. # CIRAR] roots larger than 1.3-mm diam with 96% or greater efficiency from cohesive clay soil. The washer removed 93 ± 15% of 43 200 cm clay soil from Canada thistle roots in 2 h. Small residual soil clods and organic debris were removed by hand after washing. The washing action did not damage the root system. From 4 to 6 h were required to wash the large Canada thistle roots from an equivalent volume of clay soil by hand, without using the washer. Rhizomes, seeds, and tubers also may be separated from soil with the washer. The tank and frame of this washer are durable, and moving parts such as bearings can be replaced easily.

Type
Special Topics
Copyright
Copyright © 1986 by the Weed Science Society of America 

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References

Literatur Cited

1. Amor, R. L. and Harris, R. V. 1975. Seedling establishment and vegetative spread of Cirsium arvense (L.) Scop. in Victoria, Australia. Weed Res. 15:407411.Google Scholar
2. Brown, G. R. and Thilenius, J. F. 1976. A low-cost machine for separation of roots from soil material. J. Range Manage. 29:506507.CrossRefGoogle Scholar
3. Cahoon, G. A. and Morton, E. S. 1961. An apparatus for the quantitative separation of plant roots from soil. Proc. Am. Soc. Hortic. Sci. 78:593596.Google Scholar
4. Fay, P. K. and Olson, W. A. 1978. Technique for separating weed seed from soil. Weed Sci. 26:530533.CrossRefGoogle Scholar
5. Fehrenbacher, J. B. and Alexander, J. D. 1955. A method for studying corn root distribution using a soil-core sampling machine and shaker-type washer. Agron. J. 47:468472.CrossRefGoogle Scholar
6. Fribourg, H. A. 1953. A rapid method for washing roots. Agron. J. 45:334335.CrossRefGoogle Scholar
7. Hamdoun, A. M. 1972. Regenerative capacity of root fragments of Cirsium arvense (L.) Scop. Weed Res. 12:128136.CrossRefGoogle Scholar
8. Hayden, A. 1934. Distribution and reproduction of Canada thistle in Iowa. Am. J. Bot. 21:355373.CrossRefGoogle Scholar
9. Lauenroth, W. K. and Whitman, W. C. 1971. A rapid method for washing roots. J. Range Manage. 24:308309.CrossRefGoogle Scholar
10. Malzev, A. I. 1931. Weeds of the cotton plant. Bull. Appl. Bot., Genetics, and Plant Breeding, Part 2, 26:287330.Google Scholar
11. McKell, C. M., Wilson, A. M., and Jones, M. B. 1961. A flotation method for easy separation of roots from soil samples. Agron. J. 53:5657.CrossRefGoogle Scholar
12. Nadeau, L. B. and Vanden Born, W. H. 1985. The root system of an established Canada thistle [Cirsium arvense (L.) Scop.] stand. Weed Sci. Soc. Am., Abstr. 25:64.Google Scholar
13. Rogers, C. F. 1928. Canada thistle and Russian knapweed and their control. Colo. Agric. Coll. Exp. Stn. Bull. 348.Google Scholar
14. Smucker, A.J.M., McBurney, S. L., and Srivastava, A. K. 1982. Quantitative separation of roots from compacted soil profiles by the hydropneumatic elutriation system. Agron. J. 74:500503.CrossRefGoogle Scholar
15. Ward, K. J., Klepper, B., Rickman, R. W., and Allmaras, R. R. 1978. Quantitative estimation of living wheat-root lengths in soil cores. Agron. J. 70:675677.CrossRefGoogle Scholar
16. Williams, T. E. and Baker, H. K. 1957. Studies on the root development of herbage plants. I. Techniques of herbage root investigations. J. Br. Grass. Soc. 12:4955.CrossRefGoogle Scholar