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嗜热堆肥通过抑制氨化菌和增强含氮腐殖质的形成来减少氮素损失。

Hyperthermophilic composting reduces nitrogen loss via inhibiting ammonifiers and enhancing nitrogenous humic substance formation.

机构信息

Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, China.

Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, China.

出版信息

Sci Total Environ. 2019 Nov 20;692:98-106. doi: 10.1016/j.scitotenv.2019.07.239. Epub 2019 Jul 16.

Abstract

Composting is an efficient and economic approach used to convert organic waste into organic fertilizers. However, the substantial nitrogen loss during the composting process is one of the major disadvantages of conventional thermophilic composting (cTC). Here, we demonstrated for the first time that hyperthermophilic composting (hTC) was able to mitigate nitrogen loss by 40.9% compared to cTC after 44 days of composting in a full-scale plant. Results demonstrate a decrease in NH volatilization (52.4%), together with an inhibitory effect on protease (19.4-87.5%) and urease (9.1-75.2%) enzyme activities and the ammonification rate (5.2-80.1%) for hTC. Additionally, this study found that hTC could accelerate the humification process, thereby enhancing the formation of the recalcitrant nitrogen reservoir (mainly in the form of nitrogenous humic substances) and reducing the substrate for ammonification reactions. These findings suggest that hTC can significantly reduce nitrogen loss and provide insights into the role of humic substances in nitrogen retention in composting systems.

摘要

堆肥是一种将有机废物转化为有机肥料的有效且经济的方法。然而,在传统的高温好氧堆肥(cTC)过程中,大量的氮损失是其主要缺点之一。在这里,我们首次证明,在一个大规模的工厂中,经过 44 天的堆肥后,超高温堆肥(hTC)能够将氮损失减少 40.9%,与 cTC 相比。结果表明,hTC 降低了氨挥发(52.4%),同时对蛋白酶(19.4-87.5%)和脲酶(9.1-75.2%)酶活性和氨化率(5.2-80.1%)产生抑制作用。此外,本研究发现,hTC 可以加速腐殖化过程,从而增强难降解氮库的形成(主要以含氮腐殖质的形式),减少氨化反应的底物。这些发现表明,hTC 可以显著减少氮损失,并深入了解腐殖质在堆肥系统中氮素保留中的作用。

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