An assessment of factors controlling N2O and CO2 emissions from crop residues using different measurement approaches

被引:36
作者
Badagliacca, Giuseppe [1 ]
Ruisi, Paolo [1 ]
Rees, Robert M. [2 ]
Saia, Sergio [1 ,3 ]
机构
[1] Univ Palermo, Dipartimento Sci Agr & Forestali, Viale Sci, I-90128 Palermo, Italy
[2] Scotlands Rural Coll SRUC, West Mains Rd, Edinburgh EH9 3JG, Midlothian, Scotland
[3] Cereal Res Ctr CREA CER, CREA, SS 673,Km 25,200, I-71122 Foggia, Italy
基金
英国生物技术与生命科学研究理事会;
关键词
Crop residues; Carbon dioxide; Greenhouse gas; Nitrous oxide; Residue decomposition; NITROUS-OXIDE EMISSIONS; CARBON-DIOXIDE EMISSION; SOIL CARBON; PLANT RESIDUES; WHEAT-STRAW; N MINERALIZATION; ORGANIC-MATTER; FERTILIZER-N; DENITRIFICATION; GAS;
D O I
10.1007/s00374-017-1195-z
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Management of plant residues plays an important role in maintaining soil quality and nutrient availability for plants and microbes. However, there is considerable uncertainty regarding the factors controlling residue decomposition and their effects on greenhouse gas (GHG) emissions from the soil. This uncertainty is created both by the complexity of the processes involved and limitations in the methodologies commonly used to quantify GHG emissions. We therefore investigated the addition of two soil residues (durum wheat and faba bean) with similar C/N ratios but contrasting fibres, lignin and cellulose contents on nutrient dynamics and GHG emission from two contrasting soils: a low-soil organic carbon (SOC), high pH clay soil (Chromic Haploxerert) and a high-SOC, low pH sandy-loam soil (Eutric Cambisol). In addition, we compared the effectiveness of the use of an infrared gas analyser (IRGA) and a photoacoustic gas analyser (PGA) to measure GHG emissions with more conventional gas chromatography (GC). There was a strong correlation between the different measurement techniques which strengthens the case for the use of continuous measurement approaches involving IRGA and PGA analyses in studies of this type. The unamended Cambisol released 286% more CO2 and 30% more N2O than the Haploxerert. Addition of plant residues increased CO2 emissions more in the Haploxerert than Cambisol and N2O emission more in the Cambisol than in the Haploxerert. This may have been a consequence of the high N stabilization efficiency of the Haploxerert resulting from its high pH and the effect of the clay on mineralization of native organic matter. These results have implication management of plant residues in different soil types.
引用
收藏
页码:547 / 561
页数:15
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