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首页> 外文期刊>生物工学会誌 >Effect of long-term combined nitrogen and phosphorus fertilizer application on p#pdC CPMAS NMR spectra of humin in a Typic Hapludoll of northeast China
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Effect of long-term combined nitrogen and phosphorus fertilizer application on p#pdC CPMAS NMR spectra of humin in a Typic Hapludoll of northeast China

机译:长期施用氮磷复合肥对中国东北典型哈普多尔中人的p#pdC CPMAS NMR谱的影响

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摘要

Because of its insolubility, heterogeneity and structural complexity, humin is the least understood among the three fractions of soil humic substances. This research aimed to evaluate the long-term effect of combined nitrogen and phosphorus (NP) fertilizer addition on the chemical structure of humin under maize (Zea mays L.) monoculture in a Typic Hapludoll of northeast China. Soil samples were collected 12 and 25 years after the initiation of the fertilizer treatment. Soil humin was isolated using NaOH-Na4P2O7 extraction to remove humic and fulvic acids, which was followed by HF-HCl treatment to remove most of the inorganic minerals. Solid-state 13C cross-polarization magic angle spinning nuclear magnetic resonance (13C CPMAS NMR) spectroscopy was used to characterize the chemical structure of the humin isolates. Results showed that the organic carbon (C) content of humin increased after NP fertilizer addition, compared with a no-fertilizer (CK) treatment. 13C CPMAS NMR indicated that O-alkyl C and aromatic C of humin decreased, while alkyl C and the ratios of alkyl C/O-alkyl C, aliphatic C/aromatic C and hydrophobic C/hydrophilic C all increased in the NP fertilizer treatment. The long-term application of NP fertilizer changed the molecular structure of soil humin to be more alkyl and hydrophobic, and was thus beneficial to the sequestration and stability of organic C in soil.
机译:由于其不溶性,异质性和结构复杂性,在土壤腐殖质的三部分中,对腐殖质的了解最少。这项研究的目的是评估氮和磷(NP)混合肥对中国东北典型的Hapludoll玉米(Zea mays L.)单培养下腐殖质化学结构的长期影响。肥料处理开始后12年和25年收集土壤样品。用NaOH-Na 4 P 2 O 7 萃取分离土壤腐殖质,去除腐殖酸和富里酸,然后进行HF-HCl处理去除大多数无机矿物。固态 13 C交叉极化魔角旋转核磁共振( 13 C CPMAS NMR)光谱用于表征腐殖质分离物的化学结构。结果表明,与不施肥(CK)处理相比,添加NP施肥后的腐殖质有机碳(C)含量增加。 13 C CPMAS NMR表明,腐殖质的O-烷基C和芳族C降低,而烷基C和烷基C / O-烷基C,脂肪族C /芳族C和疏水性C /亲水性C的比例降低在NP肥料处理中均增加。长期施用氮磷肥,改变了土壤中人腐殖质的分子结构,使其更具烷基和疏水性,有利于土壤中有机碳的固存和稳定。

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