Decomposition of wheat straw and rye residues as affected by particle size

被引:196
作者
Angers, DA [1 ]
Recous, S [1 ]
机构
[1] INRA,UNITE AGRON LAON PERONNE,F-02007 LAON,FRANCE
关键词
decomposition; particle size; residue; rye; straw;
D O I
10.1023/A:1004207219678
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Effects of contact between the soil and crop residues on the processes of residue decomposition are still poorly understood. The objective of this study was to investigate the effects of residue particle size on the decomposition of wheat (Triticum aestivum L.) straw (C/N=270) and green rye (Secale cereale) residues (C/N=9). Residue particle size was used as a means to vary the contact between crop residues and the soil. Carbon mineralization was measured during 102 d for straw and 65 d for rye, on residues ranging in sizes from laboratory model (0.03 cm) to field-scale (10 cm). The soil was a silt (Typic Hapludalf) and the incubation was performed at 15 degrees C. The effects of particle size on C mineralization varied for the two residues. In the first two days of incubation, decomposition rate of rye increased with decreasing particle size but thereafter, the trend was reversed. In 65 days, 8% more C was decomposed in the 7-cm residues than in the 0.03-cm ones. For wheat straw, early decomposition (3-17 days) was faster for the small-sized particles (0.06 and 0.1 cm). Thereafter, the largest size classes (5 and 10 cm) decomposed faster. After 102 days, the very fine particles (less than or equal to 0.1 cm) showed the greatest and the intermediate size classes (0.5 and 1 cm), the lowest amount of C mineralized. We hypothesized that greater availability and accessibility of N was responsible for the higher rates of decomposition observed for finely-ground wheat straw while a physical protection of finely ground residues was probably involved in the observed reverse effect for rye.
引用
收藏
页码:197 / 203
页数:7
相关论文
共 15 条
[1]   ENHANCED MINERALIZATION AND DENITRIFICATION AS A RESULT OF HETEROGENEOUS DISTRIBUTION OF CLOVER RESIDUES IN SOIL [J].
BRELAND, TA .
PLANT AND SOIL, 1994, 166 (01) :1-12
[2]   CARBON-DIOXIDE EVOLUTION FROM WHEAT AND LENTIL RESIDUES AS AFFECTED BY GRINDING, ADDED NITROGEN, AND THE ABSENCE OF SOIL [J].
BREMER, E ;
VANHOUTUM, W ;
VANKESSEL, C .
BIOLOGY AND FERTILITY OF SOILS, 1991, 11 (03) :221-227
[3]   WHEAT STRAW DECOMPOSITION IN SUBTROPICAL AUSTRALIA .1. A COMPARISON OF C-14 LABELING AND 2 WEIGHT-LOSS METHODS FOR MEASURING DECOMPOSITION [J].
COGLE, AL ;
SAFFIGNA, PG ;
STRONG, WM ;
LADD, JN ;
AMATO, M .
AUSTRALIAN JOURNAL OF SOIL RESEARCH, 1987, 25 (04) :473-479
[4]  
DARWIS D, 1994, P 13 ISTRO C, P201
[5]  
Jarvis S. C., 1989, Management systems to reduce impact of nitrates., P110
[6]  
Jenkinson D., 1985, STRAW SOILS SCI, P14
[7]   MINERALIZATION IMMOBILIZATION OF NITROGEN IN SOIL AMENDED WITH LOW C-N RATIO PLANT RESIDUES WITH DIFFERENT PARTICLE SIZES [J].
JENSEN, ES .
SOIL BIOLOGY & BIOCHEMISTRY, 1994, 26 (04) :519-521
[8]  
McCalla T. M., 1943, JOUR AMER SOC AGRON, V35, P306
[9]   DECOMPOSITION OF C-14-LABELED PLANT MATERIALS IN A GRASSLAND SOIL UNDER FIELD CONDITIONS [J].
NYHAN, JW .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1975, 39 (04) :643-648
[10]   ANALYSIS OF FACTORS CONTROLLING SOIL ORGANIC-MATTER LEVELS IN GREAT-PLAINS GRASSLANDS [J].
PARTON, WJ ;
SCHIMEL, DS ;
COLE, CV ;
OJIMA, DS .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1987, 51 (05) :1173-1179