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Isotopic Evaluations of Dynamic and Plant Uptake of N in Soil Amended with ~(15)N-Labelled Sewage Sludge

机译:〜(15)N标记污水污泥改良土壤中N的动态和植物吸收的同位素评价

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摘要

Field experiments were conducted to evaluate the use of a novel ~(15)N isotope technique for comparing the dynamics of N derived from sewage sludge applied to sorghum to the dynamics of N derived from the commercial fertilizer, urea. The treatments included a control, sludge applied at three rates (3, 6 and 9 t/ha, or 113, 226 and 338 kg N/ha) and N-urea applied at three rates (150, 250 and 350 kg N/ha). Recovery of ~(15)N-labelled sludge was similar for the different nitrogen rates applied, with a mean value of 27%. However, the recovery of ~(15)N-urea decreased as the rate of N application increased (from 38% to 27%). Approximately 22% and 19% of the ~(15)N from sludge and urea, respectively, remained in the 0-60 cm layer of soil, most of which was present in the 0-20 cm layer. Furthermore, losses of ~(15)N-labelled fertilizer were not affected by the N fertilization source, and the greatest losses, which were measured in response to the highest N application rate, were 59%.
机译:进行了野外实验,以评估使用新型〜(15)N同位素技术将高粱污水污泥中N的动态与商业肥料尿素中N的动态进行比较。处理包括对照,以三种速率(3、6和9吨/公顷或113、226和338千克氮/公顷)施用的污泥和以三种速率(150、250和350千克氮/公顷的施用)施用尿素。 )。对于不同的氮施用量,〜(15)N标记污泥的回收率相似,平均值为27%。但是,随着氮肥施用量的增加,〜(15)N-尿素的回收率下降(从38%增至27%)。来自污泥和尿素的〜(15)N分别约有22%和19%保留在0-60 cm的土壤层中,其中大部分存在于0-20 cm的土壤层中。此外,〜(15)N标记肥料的损失不受氮肥来源的影响,最大的损失是对最高氮肥施用量的响应,为59%。

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