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What artificial urine composition is adequate for simulating soil N2O fluxes and mineral N dynamics?

机译:哪种人工尿液成分足以模拟土壤N2O通量和矿物质N的动态变化?

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Artificial urine, an aqueous solution of various nitrogenous compounds and salts, is routinely used in soil incubation studies on nitrous oxide (N2O) emissions and related nitrogen (N) and pH dynamics. There is, however, no consensus on artificial urine composition, and a wide variety of compositions are used. The aim of this study was to test which artificial urine composition is adequate for simulating N2O fluxes, respiration, soil mineral N and pH dynamics of real cattle urine in both short- and long-term incubation studies. Urine solutions of differing compositions were applied to a sandy soil and incubated for 65 days, and results of measurements on N2O fluxes and soil mineral N were analyzed over the first 5 days as well as over the whole incubation period. Results from two real cattle urines with known nitrogenous composition (R1 and R2) were compared with three artificial urine types: (i) urea+glycine (AG), (ii) urea+hippuric acid (AH) and (iii) an artificial urine identical to the nitrogenous composition of real urine R1 (AR). During the first 5 days, only cumulative N2O emissions for AG deviated significantly (P=0.02) from the N2O emissions for real urines, with 0.4% of applied N emitted compared with 0.0% and 0.1% for R1 and R2, respectively. Respiration from R1 was significantly (P&0.001) higher than from R2 and all artificial urines. Over the whole incubation period, no significant differences could be detected for N2O emissions or respiration with urine type. From all artificial urine types, AH yielded N2O emissions closest to those from real urine. AG deviated most from real urine, both in short- and long-term incubations. Over the whole period, soil NH4+ was higher for all artificial urines (P&0.001) and pH-KCl was lower for AG and AR (P=0.004) than for the real urines. AH was not significantly different from real urine R2 with respect to all measured properties except soil NH4+. We conclude that only AG did not adequately simulate N2O emissions, and that glycine is therefore not an appropriate substitution for hippuric acid in artificial urine. For future studies using artificial urine we recommend therefore a mixture containing at least urea and hippuric acid as sources of N. As no artificial urine composition resembled real urine with respect to all measured variables, even when nitrogenous composition was identical (AR), we recommend the use of real urines whenever possible..
机译:人造尿液是各种含氮化合物和盐的水溶液,通常用于土壤培养研究中的一氧化二氮(N2O)排放以及相关的氮(N)和pH动态。然而,关于人造尿液的组成还没有共识,并且使用了各种各样的组成。这项研究的目的是在短期和长期孵育研究中,测试哪种人工尿液成分足以模拟真实牛尿液中的N2O通量,呼吸作用,土壤矿质氮和pH动态。将不同成分的尿液溶液施加到沙质土壤上,孵育65天,并在前5天以及整个孵育期间分析N2O通量和土壤矿质N的测量结果。将两种具有已知含氮成分的真实牛尿(R1和R2)的结果与三种人工尿液类型进行比较:(i)尿素+甘氨酸(AG),(ii)尿素+马尿酸(AH)和(iii)人工尿液与真实尿液R1(AR)的含氮成分相同。在最初的5天中,仅AG的累积N2O排放量与实际尿液的N2O排放量有显着差异(P = 0.02),其中施用的N排放量为0.4%,而R1和R2分别为0.0%和0.1%。来自R1的呼吸显着(P <0.001)高于来自R2和所有人工尿的呼吸。在整个潜伏期中,N2O排放量或与尿液类型的呼吸均无显着差异。在所有人造尿液类型中,AH产生的N2O排放量与真实尿液中的排放量最接近。在短期和长期孵育中,AG与实际尿液的偏差最大。在整个时期内,所有人造尿液的土壤NH4 +均高于真实尿液(P <0.001),而AG和AR的pH-KCl较低(P = 0.004)。就所有测得的特性而言,除了土壤NH4 +之外,AH与真实尿液R2并无显着差异。我们得出的结论是,只有AG不能充分模拟N2O排放,因此甘氨酸不是人工尿中马尿酸的适当替代品。因此,对于将来使用人造尿液的研究,我们建议使用至少包含尿素和马尿酸作为氮源的混合物。因为就所有测量变量而言,即使在含氮成分相同(AR)的情况下,人造尿素的组成均不像真实尿液,因此我们建议尽可能使用真实的尿液。

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