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Allantoin-N concentration changes and analysis of the influencing factors on its changes during different manure composting

机译:不同肥料堆肥过程中尿囊素-N的浓度变化及其影响因素分析

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Allantoin is one of important nitrogenous compounds in manure. In this study, the simulation experiment of aerobic composting was adopted to explore concentration changes, degradation and relevant influencing factors of allantoin-N during six manure composting. The result showed that the allantoin-N concentration was markedly different among different manures. The various livestock and poultry excreted 1.92-11.14 g kg(-1) allantoin-N which accounted for 9.98-32.27% of the total excreted nitrogen. The changing trend of the allantoin-N concentration firstly increased (for 0-14 days), then decreased (for 14-70 days) during different manure composting, and the allantoin-N concentration after composting was lower than the initial allantoin-N concentration in all manure composting. During allantoin degradation for 1470 days of composting, the half-life of allantoin-N was 57.76 days in broiler manure, 46.21 days in layer-hen manure, 27.73 days in hog manure, 25.67 days in sow manure, 38.51 days in young pig manure and 15.75 days in dairy manure, and the sequence in the half-life was chicken manure > pig manure > dairy manure. Allantoin degradation conformed to first-order kinetics. Through the correlation analysis, hippuric acid, hydrolyzable nitrogen, amino acid-nitrogen, HUN fraction, NO3--N and total hydrolyzable nitrogen could be closely related to allantoin-N transforming during composting. Humification Could be the main influencing factor for reducing allantoin-N concentration during composting. (C) 2008 Elsevier Ltd. All rights reserved.
机译:尿囊素是肥料中重要的含氮化合物之一。本研究采用有氧堆肥模拟实验,探讨了六粪堆肥过程中尿囊素-N的浓度变化,降解及相关影响因素。结果表明,不同肥料中尿囊素N的含量差异显着。各种畜禽排出的尿囊素-N为1.92-11.14 g kg(-1),占排出的氮总量的9.98-32.27%。在不同肥料堆肥过程中,尿囊素N浓度的变化趋势是先升高(持续0-14天),然后下降(持续14-70天),并且堆肥后尿囊素-N的浓度低于初始尿囊素-N的浓度在所有肥料堆肥中。在尿囊素降解1470天的堆肥期间,尿囊素-N的半衰期在肉鸡粪中为57.76天,在蛋鸡粪中为46.21天,在猪粪中为27.73天,在母猪粪中为25.67天,在猪幼粪中为38.51天。在奶牛粪中为15.75天,半衰期的顺序为鸡粪>猪粪>奶牛粪。尿囊素降解符合一级动力学。通过相关性分析,堆肥过程中,马尿酸,可水解氮,氨基酸氮,HUN分数,NO3--N和总可水解氮与尿囊素-N转化密切相关。增湿可能是降低堆肥过程中尿囊素N浓度的主要影响因素。 (C)2008 Elsevier Ltd.保留所有权利。

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