长期保护性耕作对黄绵土总有机碳和易氧化有机碳动态的影响

被引:26
作者
王琳 [1 ]
李玲玲 [1 ]
高立峰 [1 ]
刘杰 [1 ]
罗珠珠 [2 ]
谢军红 [1 ]
机构
[1] 甘肃省干旱生境作物学重点实验室甘肃农业大学农学院
[2] 甘肃农业大学资源与环境学院
关键词
免耕; 秸秆覆盖; 保护性耕作; 总有机碳(TOC); 易氧化有机碳(ROOC); 黄土高原;
D O I
暂无
中图分类号
S157.4 [农业技术措施];
学科分类号
摘要
长期定位试验研究了黄土高原西部旱农区不同耕作措施(传统耕作T、免耕+秸秆覆盖NTS、免耕NT、传统耕作+秸秆翻埋TS、传统耕作+地膜覆盖TP和免耕+地膜覆盖NTP)对黄绵土土壤总有机碳和易氧化有机碳的影响。结果表明,土壤有机碳含量随土壤深度的增加而降低,10~30 cm土层土壤有机碳含量的下降较为明显,并且在0~5 cm、5~10 cm和10~30 cm土层中,均表现为由研究初期各处理相对差异较小到试验中后期各处理出现显著差异的变化。不同耕作措施下0~30 cm土壤总有机碳和易氧化有机碳在2002—2012年的平均含量均为NTS>TS>NTP>NT>T>TP。与传统耕作相比,免耕各处理和传统耕作秸秆翻埋处理可增加1.2%7.2%的土壤总有机碳,5.3%16.6%的土壤易氧化有机碳含量,而传统耕作覆膜处理分别降低4.3%和2.7%。免耕和秸秆覆盖处理均有利于黄绵土土壤有机碳和易氧化有机碳的积累,免耕结合秸秆覆盖效果最佳,而多年传统耕作覆盖地膜后有机碳明显降低。免耕秸秆覆盖处理土壤总有机碳和易氧化有机碳含量平均值在2004年、2006年、2008年、2010年及2012年分别较2002年提高9.5%和42.9%、13.2%和67.6%、21.5%和71.5%、1.1%和15.9%、2.7%和12.6%。因此,在西部黄土高原黄绵土区,采用免耕结合秸秆覆盖的保护性耕作措施有利于土壤总有机碳和易氧化有机碳含量的提高,从而有利于土壤质量的持续改善。易氧化有机碳对不同耕作措施的响应比总有机碳更灵敏,可以将其作为指示黄绵土有机碳变化的早期指标。
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页码:1057 / 1063
页数:7
相关论文
共 25 条
[1]   Changes in soil organic carbon fractions in a tropical Acrisol as influenced by the addition of different residue materials [J].
Gaiser, Thomas ;
Stahr, Karl ;
Bernard, Marc ;
Kang, Biau T. .
AGROFORESTRY SYSTEMS, 2012, 86 (02) :185-195
[2]  
Long term effects of topsoil depth and amendments on particulate and non particulate carbon fractions in a Miamian soil of Central Ohio.[J].V. Srinivasan;H.P. Maheswarappa;R. Lal.Soil & Tillage Research.2012,
[3]   Soil Organic Matter Fractions as Indices of Soil Quality Changes [J].
Sequeira, Cleiton H. ;
Alley, Marcus M. .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2011, 75 (05) :1766-1773
[4]   Soil physical qualities in an Oxic Paleustalf under different tillage and stubble management practices and application of S theory [J].
Li, Lingling ;
Chan, K. Yin ;
Niu, Yining ;
Li, Guangdi ;
Oates, Albert ;
Dexter, Anthony ;
Huang, Gaobao .
SOIL & TILLAGE RESEARCH, 2011, 113 (02) :82-88
[5]   Organic-Matter Pools of Soil under Pines and Annual Cultures [J].
Wendling, B. ;
Jucksch, I. ;
Mendonca, E. S. ;
Alvarenga, R. C. .
COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2010, 41 (14) :1707-1722
[6]   Microbial Biomass, N Mineralization and Nitrification, Enzyme Activities, and Microbial Community Diversity in Tea Orchard Soils [J].
Dong Xue ;
Huaiying Yao ;
Changyong Huang .
Plant and Soil, 2006, 288 :319-331
[7]  
Labile Organic Matter Fractions as Central Components of the Quality of Agricultural Soils: An Overview.[J].R.J. Haynes.Advances in Agronomy.2004,
[8]  
Soil carbon fractions and relationship to soil quality under different tillage and stubble management.[J].K.Y. Chan;D.P. Heenan;A. Oates.Soil & Tillage Research.2002, 3
[9]  
The potential of world cropland soils to sequester C and mitigate the greenhouse effect.[J].R. Lal;J.P. Bruce.Environmental Science and Policy.1999, 2
[10]   Conservation tillage for carbon sequestration [J].
Lal, R ;
Kimble, JM .
NUTRIENT CYCLING IN AGROECOSYSTEMS, 1997, 49 (1-3) :243-253