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- W163577147 abstract "In the agricultural fields application of pig slurry composting biofiltraton amending smell and nutrient unevenness, it is important for the appropriate nitrogen nutrient management to promote the availability of the crops and to minimize the risk of adversely environmental effects. The objective of this study was to determine the application rates of pig slurry composting biofiltration as basal fertilizer for Chinese cabbage (Brassica campestis L.) by considering the yield response, N use efficiency indexes, soluble sugar and nitrate contents. Chinese cabbages were grown on plastic film ground under non-fertilizer with six different application rates of pig slurry (PS) and a control treatment of chemical fertilizer (CF). The effects of a single application of six different doses of PS: 0 N (no Mg.ha), 1/2 N (7.4 Mg.ha), 3/4N (11.1 Mg.ha), 1N (14.7 Mg.ha), 1N (18.6 Mg.ha) and 1N (22.3 Mg.ha) were compared with 1N chemical fertilizer (110 kg N ha) in the pre-planting. The sidedressing N application (210 kg N ha) was applied to the mineral fertilizer in all treatments except no fertilization plot. The yields were increased according to the increase in the N application rates from non-fertilizer to 1N PS. The highest yield was obtained in 1N PS by 138,480 kg.ha, but there were no significant difference in yield among 1N, 1N PS and CF. N-use efficiency indexes of CF are the most similar to that of 1N PS among the PS treatments. In addition, statistical analysis showed that soluble sugar and nitrate contents of Chinese cabbage were not affected by treatments except non-fertilizer. The preplant PS application rate as basal fertilizer to obtain the same yield of CF from relation between different PS rates and Chinese cabbage yields was determined as 1N PS (15.4 Mg.ha)." @default.
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- W163577147 date "2009-01-01" @default.
- W163577147 modified "2023-09-25" @default.
- W163577147 title "Evaluation of the Preplant Optimum Application Rates of Pig Slurry Composting Biofiltration for Chinese Cabbage" @default.
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