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Influences of Nitrogen Application Levels on Properties of Humic Acids in Chernozem Amended with Different Types of Organic Materials

机译:用不同类型的有机材料修正Chernozem腐殖酸性能对培养水平的影响

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摘要

The objective of this study was to examine the structure changes in humic acids (HAs) in Chernozem after the application of different types of organic materials (OMs) under an indoor simulation condition for plastic mulched drip irrigation, measured with Fourier transform infrared (FTIR) spectroscopy. The biotechnological extract of fulvic acid (BFA), decomposed sheep manure (M), corn straw pellets (Ps) and corn straw powder (Pr) were used as the four OMs for testing, and they were applied to Chernozem at the same amount of actual material; three nitrogen (N) levels (no N, low N, and high N supply) were applied to each type of (OMs), separately. The total culture period was set to 90 days and soil sampling was taken at 0, 30, 60 and 90 days, respectively. The results showed that different types of OMs exerted different effects on Chernozem based on the FTIR spectra of HAs. The application of M combined with high N supply was the best way to fertilize Chernozem, under which the H-bonded OH groups and aromatic compounds were enhanced, resulting in increased soil carbon (C) sequestration; while the carbohydrates in HAs was easily consumed as microbial energy substance. The HAs from the Chernozem amended with BFA became more aliphatic, simpler and younger. High N supply was beneficial for increasing the complexity of HAs from Chernozem amended with Ps, but was not conducive to soil cation retention. Within a short time of incubation, the application of Pr combined with high N was detrimental to the C sequestration in Chernozem, and inhibited the consumption of carbohydrates by microorganisms.
机译:本研究的目的是在室内仿真条件下在塑料覆盖滴灌的室内仿真条件下施用不同类型的有机材料(OMS)后,检查Chernozem中腐殖酸(具有)的结构变化。用傅里叶变换红外线(FTIR)测量光谱学。使用富甲酸(BFA),分解绵羊粪便(M),玉米秸秆粒子(PS)和玉米秸秆粉(PR)的生物技术提取物用作四个OMS进行测试,它们以相同量的CHERNOZEM应用于CHERNOZEM实际材料;将三种氮(N)水平(NO N,N NO,N和HIGH N NOW供应)分开施加到每种类型(OMS)上。总培养期设定为90天,分别以0,30,60和90天进行土壤采样。结果表明,基于FTIR光谱,不同类型的OMS对CHERNOZEM的不同影响。 M结合高NO供应的应用是施肥切屑的最佳方法,在该施肥下,提高H键合的OH基团和芳族化合物,导致土壤碳(C)螯合增加;虽然碳水化合物易于作为微生物能量物质消耗。来自BFA的Chernozem的已经变得更加漫长,更简单,更年轻。高N供应有利于提高CHERNOZEM的复杂性,然后用PS修正,但不利于土壤阳离子潴留。在孵育的短时间内,Pr组合高N的施用对Chernozem中的C螯合有害,并抑制微生物消耗碳水化合物的消耗。

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