Greenhouse Gas Emissions and Growth of Wheat Cultivated in Soil Amended with Digestate from Biogas Production

被引:1
|
作者
Liliana PAMPILLóN-GONZLEZ [1 ]
Marco LUNA-GUIDO [2 ]
Victor Manuel RUíZ-VALDIVIEZO [2 ]
Olivia FRANCO-HERNNDEZ [3 ]
Fabián FERNNDEZ-LUQUEO [4 ]
Octavio PAREDES-LóPEZ [5 ]
Gerardo HERNNDEZ [1 ]
Luc DENDOOVEN [2 ]
机构
[1] PhD Program on Science, Technology and Society
[2] Laboratory of Soil Ecology, Laboratorio de Matemáticas Aplicadas y Cómputo de Alto Rendimiento, Cinvestav-Edomex (ABACUS)
[3] Department of Chemistry, Unidad Profesional Interdisciplinaria de Biotecnología-Instituto Politécnico Nacional (UPIBI-IPN)
[4] Sustainability of Natural Resources and Energy Program
[5] Department of Biotechnology and Biochemistry
关键词
biodigester; C and N mineralization potential; faecal coliform; heavy metal; pathogen; pig slurry;
D O I
暂无
中图分类号
S512.1 [小麦];
学科分类号
0901 ;
摘要
Digestate, the product obtained after anaerobic digestion of organic waste for biogas production, is rich in plant nutrients and might be used to fertilize crops. Wheat(Triticum spp. L.) was fertilized with digestate, urea, or left unfertilized and cultivated in the greenhouse for 120 d. Emissions of greenhouse gasses(carbon dioxide(CO2), methane(CH4), and nitrous oxide(N2O)) were monitored and plant growth characteristics were determined at harvest. The digestate was characterized for heavy metals, pathogens, and C and N mineralization potential in an aerobic incubation experiment. No Salmonella spp., Shigella spp., or viable eggs of helminths were detected in the digested pig slurry, but the number of faecal coliforms was as high as 3.6 × 104colony-forming units(CFU) g-1dry digestate. The concentrations of heavy metals did not surpass the upper limits established by US Environmental Protection Agency(EPA). After 28 d, 17% of the organic C(436 g kg-1dry digestate) and 8% of the organic N(6.92 g kg-1dry digestate)were mineralized. Emissions of CO2and CH4were not significantly affected by fertilization in the wheat-cultivated soil, but digestate significantly increased the cumulative N2O emission by 5 times compared to the urea-amended soil and 63 times compared to the uncultivated unfertilized soil. It could be concluded that digestate was nutrient rich and low in heavy metals and pathogens, and did not affect emissions of CH4and CO2when applied to a soil cultivated with wheat, but increased emission of N2O.
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收藏
页码:318 / 327
页数:10
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