[The effect of biocides on the microflora of soils and their degradation. 4. The influence of substances inhibiting the straw decomposition on the nitrogen transformation (author's transl)].

G Höflich
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Abstract

1. Active ingredients retarding the carbon-transformation of straw (TCP, Thiuram, TBTO) also retard the nitrification. Their active period depends on the concentration and on the presence of organic matter. High doses of urea can inhibit the nitrification as well. 2. The activity of urease and the ammonification could not be influenced by adequate doses of the tested active ingredients. 3. The species of bacterium Azotobacter fixing the nitrogen from the air were inhibited by TCP, urea and D-chloramphenicol and promoted by Thiuram and WTZ II 277 after a short period of inhibition. 4. The fungi are very important in the biological nitrogen fixation after manuring straw and in prevention of nitrogen leaching in the autumn. 5. The sufficient concentration of the active ingredients to inhibit the nitrification are lower than the fungicidal concentrations. The soil bacteria could even not be restrained by doses of 5000 ppm. The bacilli were more retarded in presence of organic matters than in a not manured soil.

杀菌剂对土壤微生物区系的影响及其降解。4. 抑制秸秆分解的物质对氮转化的影响[作者译]。
1. 阻滞秸秆碳转化的活性成分(TCP、thuram、TBTO)也阻滞了硝化作用。它们的活跃期取决于浓度和有机物的存在。高剂量的尿素也能抑制硝化作用。2. 脲酶活性和氨化作用不受适当剂量的活性成分的影响。3.固氮细菌被TCP、尿素和d -氯霉素抑制,thuram和WTZ II 277在短时间抑制后促进固氮细菌的生长。4. 真菌在秸秆施肥后的生物固氮和防止秋季氮素淋失中起着重要作用。5. 抑制硝化作用的活性成分的浓度低于杀真菌浓度。土壤细菌甚至不能被5000 ppm的剂量所抑制。细菌在有有机质的土壤中比在未施肥的土壤中发育迟缓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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