The effect of two different thermal units (flame and hot steam) and three types of mulch on the percentage of weeds killed was studied in a series of experiments over 2 years. The factors studied were driving speed (2, 3, 4 km/h), flame treatment (first, second, third), growth stage (<6, 68, >8 true leaves), hot steam treatment (single, double), mulch type (none, coarse bark, sawdust, hay), and chemical application. The results suggest that a driving speed of 2 km/h kills the highest percentage of weeds, and for weed species with unprotected growth points and thin leaves, the first flame application can completely kill weeds with <6 leaves. However, a second or third flame application is required for those with 6 or more leaves. The hot steam method is effective when it is applied twice, with the second application 1 week after the first. However, there is room for improving its technology to make it cost effective for large-scale applications. Mulches after chemical herbicide application are effective for controlling weeds. However, mulching cannot be recommended with flaming because of fire hazard. The effectiveness of herbicide depends on the weed species and on whether the same herbicide was used in the preceding years. Compared to using herbicide with mulching, herbicide alone was less effective in controlling weeds and more costly in terms of cost per hectare and the environment. Key words: thermal weed control, flame, hot steam, mulching, herbicides, apple orchard, logit models.
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1 September 2002
Research Article|
September 01 2002
Effect of two different thermal units and three types of mulch on weeds in apple orchards Available to Purchase
Publisher: Emerald Publishing
Online ISSN: 1496-256X
Print ISSN: 1496-2551
Journal of Environmental Engineering and Science (2002) 1 (5): 331–338.
Citation
Rifai MN, Astatkie T, Lacko-Bartosova M, Gadus J (2002), "Effect of two different thermal units and three types of mulch on weeds in apple orchards". Journal of Environmental Engineering and Science, Vol. 1 No. 5 pp. 331–338, doi: https://doi.org/10.1139/s02-027
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