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2016 | 25 | 4 |

Tytuł artykułu

Effects of soil compaction and tillage practices on carbon dioxide efflux in northeast China: evidence from an incubation study

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Limited information is available for how soil compaction affects carbon dioxide (CO2) efflux under different tillage systems. To improve understanding of the effects of compaction and tillage on soil CO2 efflux, an incubation study consisting of no tillage (NT), moldboard plow (MP), and ridge tillage (RT) was conducted to explore the relationships between CO2 efflux and bulk density, as well as pore size distribution under different levels of bulk densities, and the thresholds of bulk density and the volume of pore size above which CO2 efflux were affected in northeast China. Results showed that there was a significantly negative correlation (r = -0.990, p<0.05; r = -0.986, p<0.05; and r = -0.992, p<0.01, respectively, for NT, MP, and RT) between CO2 efflux and bulk density, whereas the correlation was significantly positive (r ranges from 0.75 to 0.85, p<0.05 for each tillage practice under bulk densities of 1.0-1.6 g/cm3) for the volume of small macropores (30-100 μm). The critical value of bulk density for impeding CO2 efflux was more produced in 1.6 g/cm3 and the volume of small macropores affected CO2 efflux variation greatly. Ridge tillage is a better tillage practice for impeding soil CO2 efflux than no tillage, as evidenced by the lesser volume of small macropores.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

25

Numer

4

Opis fizyczny

p.1769-1776,fig.,ref.

Twórcy

autor
  • Key Laboratory of Mollisols Agroecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, 130102, China
autor
  • College of Resource and Environment, Jilin Agricultural University, Changchun, 130118, China
autor
  • Key Laboratory of Mollisols Agroecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, 130102, China
autor
  • Key Laboratory of Mollisols Agroecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun, 130102, China

Bibliografia

  • 1. NIU X., GAO P., LI Y., LI X. Impact of different afforestation systems on soil organic carbon distribution characteristics of Limestone Mountains. Pol. J. Environ. Stud. 24 (6), 2543, 2015.
  • 2. LU Y., XU H. Main affecting factors of soil carbon mineralization in Lake Wetland. Pol. J. Environ. Stud. 23, (4), 1255, 2014.
  • 3. NAWAZ M.F., BOURRIÉ G., TROLARD F. Soil compaction impact and modelling. A review. Agron Sustainable Dev. 33, 291, 2013.
  • 4. MORDHORST A., PETH S., HORN R. Influence of mechanical loading on static and dynamic CO2 efflux on differently textured and managed Luvisols. Geoderma 219, 1, 2014.
  • 5. ROY K.S., NEOGI S., NAYAK A.K., BHATTACHARYYA P. Effect of nitrogen fertilization on methane and carbon dioxide production potential in relation to labile carbon pools in tropical flooded rice soils in eastern India. Arch Agron Soil Sci. 60, 1329, 2014.
  • 6. DE NEVE S., HOFMAN G. Influence of soil compaction on carbon and nitrogen mineralization of soil organic matter and crop residues. Biol Fertil Soils. 30, 544, 2000.
  • 7. FEIZA V., FEIZIENE D., DEVEIKYTE I., SEIBUTIS V., ANTANAITIS S., POVILAITIS V., LAZAUSKAS S., JANUSAUSKAITE D., SUPRONIENE S. Soil pore-water environment and CO2 emission in a Luvisol as influencedby contrasting tillage. Acta Agr Scand B-S P. 64, 350, 2014.
  • 8. MARQUINA S., PÉREZ T., DONOSO L., GIULIANTE A., RASSE R., HERRERA F. NO, N2O and CO2 soil emissions from Venezuelan corn fields under tillage and no-tillage agriculture. Nutr Cycl Agroecosys. 101, 123, 2015.
  • 9. CID P., PÉREZ-PRIEGO O., ORGAZ F., GOMEZMACPHERSON H. Short- and mid-term tillage-induced soil CO2 efflux on irrigated permanent- and conventionalbed planting systems with controlled traffic in southern Spain. Soil Res. 51, 447, 2013.
  • 10. LIANG A.Z., MCLAUGHLIN N.B., ZHANG X.P., SHEN Y., SHI X.H., FAN R.Q. Short term effects of tillage practices on soil aggregate fractions in a Chinese Mollisol. Acta Agr Scand B-S P. 61, 535, 2011.
  • 11. WANG H. B., CHEN L. M., ZHAO L. P., LIU H. Q., WANG Y. Influence of present farming system of maize belt on fertility degradation in Jilin Province. Transactions of the Chinese Society of Agricultural Engineering, 25, 301, 2009 [In Chinese].
  • 12. MALLORY J.J., MOHTAR R.H., HEATHMAN G.C., SCHULZE D.G., BRAUDEAU E. Evaluating the effect of tillage on soil structural properties using the pedostructure concept. Geoderma 163, 141, 2011.
  • 13. SETIA R., MARSCHNER P., BALDOCK J., CHITTLEBOROUGH D., VERMA V. Relationships between carbon dioxide emission and soil properties in saltaffected landscapes. Soil Biol Biochem. 43, 667, 2011.
  • 14. WEI S.C., ZHANG X.P., MCLAUGHLIN N.B., LIANG A.Z., JIA S.X., CHEN X.W., CHEN X.X. Effect of soil temperature and soil moisture on CO2 flux from eroded landscape positions on black soil in Northeast China. Soil Tillage Res. 144, 119, 2014.
  • 15. SLEUTEL S., BOUCKAERT L., BUCHAN D., VAN LOO D., CORNELIS W.M., SANGA H.G. Manipulation of the soil pore and microbial community structure in soil mesocosm incubation studies. Soil Biol Biochem. 45, 40, 2012.
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  • 17. CHEN X.W., SHI X.H., LIANG A.Z., ZHANG X.P., JIA S.X., FAN R.Q., WEI S.C. Least limiting water range and soil pore size distribution related to soil organic carbon dynamics following zero and conventional tillage of a black soil in Northeast China. J Agri Sci. 153, 270, 2015.
  • 18. HAYASHI Y., KEN’ICHIROU K., MIZUYAMA T. Changes in pore size distribution and hydraulic properties of forestsoil resulting from structural development. J Hydrol. 331, 85, 2006.
  • 19. KAY B.D., VANDENBYGAART A.J. Conservation tillage and depth stratification of porosity and soil organic matter. Soil Till Res. 66, 107, 2002.
  • 20. CALEGARI A., TOURDONNET S., TESSIER D., RHEINHEIMER D.S., RALISCH R., HARGROVE W., GUIMARÃES M.F., FILHO J.T. Influence of soilmanagement and crop rotation on physical properties in a long-term experiment in Paraná, Brazil. Commun Soil Sci Plan. 44, 2019, 2013

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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