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Soil compaction and poultry litter effects on factors affecting nitrogen availability in a claypan soil

机译:土壤压实和家禽凋落物影响陶土土壤氮素利用率的因素

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摘要

Soil compaction may affect N mineralization and the subsequent fate of N in agroecosystems. Laboratory incubation and field experiments were conducted to determine the effects of surface soil compaction on soil N mineralization in a claypan soil amended with poultry litter (i.e., Turkey excrement mixed with pine shavings as bedding). In a laboratory study, soil from the surface horizon of a Mexico silt loam soil was compacted to four bulk density levels (1.2, 1.4, 1.6 and 1.8 Mg m~(-3)) with and without poultry litter and incubated at 25 [degree sign]C for 42 days. A field trial planted to corn (Zea mays L.) was also conducted in 2002 on a Mexico silt loam claypan soil in North Central Missouri. Soil was amended with litter (0 and 19 Mg ha-1) and left uncompacted or uniformly compacted. Soil compaction decreased soil inorganic N by a maximum of 1.8 times in the laboratory study; this effect was also observed at all depths of the field trial. Compacted soil with a litter amendment accumulated NH_4~+-N up to 7.2 times higher than the noncompacted, litter-amended soil until Day 28 of the laboratory incubation and in the beginning of the growing season of the field study. Ammonium accumulation may have been due to decreased soil aeration under compacted conditions. Application of litter increased soil N mineralization throughout the growing season. In the laboratory study, soil inorganic N in unamended soil was negatively correlated with soil bulk density and the proportion of soil micropores, but was positively related with soil total porosity and the proportion of soil macropores. These results indicate that soil compaction, litter application and climate are interrelated in their influences on soil N mineralization in agroecosystems.
机译:土壤压实可能影响氮的矿化作用以及随后在农业生态系统中氮的命运。进行了实验室孵化和现场实验,以确定表土压实对用家禽垫料(即火鸡排泄物和松木屑作为垫料)改良的粘土锅土壤中氮素矿化的影响。在一项实验室研究中,将墨西哥粉质壤土表层的土壤压实成四个堆积密度水平(1.2、1.4、1.6和1.8 Mg m〜(-3)),带或不带家禽垫料,并在25 [签署] C 42天。还于2002年在密苏里州中北部的墨西哥粉砂壤土粘土盘土壤上进行了玉米(Zea mays L.)的田间试验。用猫砂(0和19 Mg ha-1)修正土壤,使其不致密实或均匀压实。在实验室研究中,土壤压实使土壤无机氮最多减少了1.8倍。在实地试验的所有深度也观察到了这种效果。在实验室孵化的第28天和实地研究的生长季节开始之前,经过垫料改良的压实土壤累积的NH_4〜+ -N比未垫料的改良土壤高7.2倍。铵积累可能是由于压实条件下土壤通气量减少所致。垫料的施用在整个生长期增加了土壤氮的矿化作用。在实验室研究中,未改良土壤中的土壤无机氮与土壤容重和土壤微孔比例呈负相关,而与土壤总孔隙率和土壤大孔比例呈正相关。这些结果表明,土壤密实度,垫料施用和气候对农业生态系统中土壤氮矿化的影响相互关联。

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