Cover crop effects on soil temperature in a clay loam soil in southwestern Ontario

X. M. Yang,W. D. Reynolds,C. F. Drury, M. D. Reeb

CANADIAN JOURNAL OF SOIL SCIENCE(2021)

引用 7|浏览2
暂无评分
摘要
Although it is well established that soil temperature has substantial effects on the agri-environmental performance of crop production, little is known of soil temperatures under living cover crops. Consequently, soil temperatures under a crimson clover and white clover mix, hairy vetch, and red clover were measured for a cool, humid Brookston clay loam under a corn-soybean-winter wheat/ cover crop rotation. Measurements were collected from August (after cover crop seeding) to the following May (before cover crop termination) at 15, 30, 45, and 60 cm depths during 2018-2019 and 2019-2020. Average soil temperatures (August-May) were not affected by cover crop species at any depth, or by air temperature at 60 cm depth. During winter, soil temperatures at 15, 30, and 45 cm depths were greater under cover crops than under a no cover crop control (CK), with maximum increase occurring at 15 cm on 31 January 2019 (2.5-5.7 degrees C) and on 23 January 2020 (0.8-1.9 degrees C). In spring, soil temperatures under standing cover crops were cooler than the CK by 0.1-3.0 degrees C at 15 cm depth, by 0-2.4 degrees C at the 30 and 45 cm depths, and by 0-1.8 degrees C at 60 cm depth. In addition, springtime soil temperature at 15 cm depth decreased by about 0.24 degrees C for every 1 Mg.ha(-1) increase in live cover crop biomass. Relative to bare soil, cover crops increased near-surface soil temperature during winter but decreased near-surface soil temperature during spring. These temperature changes may have both positive and negative effects on the agri-environmental performance of crop production.
更多
查看译文
关键词
cover crops, crop residues, biomass, soil temperature, crop rotation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要