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Long-term tillage, straw management and N fertilization effects on quantity and quality of organic C and N in a Black Chernozem soil

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Abstract

Soil, crop and fertilizer management practices may affect the amount and quality of organic C and N in soil. A long-term field experiment (growing barley, wheat, or canola) was conducted on a Black Chernozem (Albic Argicryoll) loam at Ellerslie, Alberta, Canada, to determine the influence of 19 (1980 to 1998) or 27 years (1980 to 2006) of tillage (zero tillage [ZT] and conventional tillage [CT]), straw management (straw removed [SRem]and straw retained [SRet]) and N fertilizer rate (0, 50 and 100 kg N ha−1 in SRet and 0 kg N ha−1 in SRem plots) on total organic C (TOC) and N (TON), and light fraction organic C (LFOC) and N (LFON) in the 0–7.5 and 7.5–15 cm or 0–5, 5–10 and 10–15 cm soil layers. The mass of TOC and TON in soil was usually higher in SRet than in SRem treatment (by 3.44 Mg C ha−1 for TOC and 0.248 Mg N ha−1 for TON after 27 years), but there was little effect of tillage and N fertilization on these parameters. The mass of LFOC and LFON in soil tended to increase with SRet (by 285 kg C ha−1 for LFOC and 12.6 kg N ha−1 for LFON with annual rate of 100 kg N ha−1 for 27 years), increased with N fertilizer application (by 517 kg C ha−1 for LFOC and 36.0 kg N ha−1 for LFON after 27 years), but was usually higher under CT than ZT (by 451 kg C ha−1 for LFOC and 25.3 kg N ha−1 for LFON after 27 years). Correlations between soil organic C or N fractions were highly significant in most cases. Linear regressions between crop residue C input and soil organic C or N were significant in most cases. The effects of tillage, straw management and N fertilizer on soil were more pronounced for LFOC and LFON than TOC and TON, and also in the surface layers than in the deeper layers. Tillage and straw management had little or no effect on C:N ratios, but the C:N ratios in light organic fractions significantly decreased with increasing N rate (from 20.06 at zero-N to 18.91 at 100 kg N ha−1). Compared to the 1979 results, in treatments that did not receive N fertilizer (CTSRem0, CTSRet0, ZTSRem0 and ZTSRet0), CTSRem0 resulted in a net decrease in TOC concentration (by 1.9 g C kg−1) in the 0–15 cm soil layer in 2007 (after 27 years), with little or no change in the CTSRet0 and ZTSRem0 treatments, while there was a net increase in TOC concentration (by 1.2 g C kg−1) in the ZTSRet0 treatment. Straw retention and N fertilizer application at 50 and 100 kg N ha−1 rates showed a net positive effect on TOC concentration under both ZT (ZTSRet50 by 2.3 g C kg−1 and ZTSRet100 by 3.1 g C kg−1) and CT (CTSRet50 by 3.5 g C kg−1 and CTSRet100 by 1.6 g C kg−1) treatments in 2007 compared to 1979 data. In conclusion, the findings suggest that retention of straw, application of N fertilizer and elimination of tillage would improve soil quality, and this might increase the potential for N supplying power of the soil and sustainability of crop productivity.

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References

  • Bonde TA, Christensen BT, Cerri CC (1992) Dynamics of soil organic matter as reflected by natural 13C abundance in particle size fractions of forest and cultivated oxisols. Soil Biol Biochem 24:275–277

    Article  CAS  Google Scholar 

  • Braunack MV, Dexter AR (1989) Soil aggregation in the seedbed: a review. II. Effect of aggregate sizes on plant growth. Soil Tillage Res 11:133–145

    Article  Google Scholar 

  • Bremer E, Ellert BH, Janzen HH (1995) Total and light-fraction carbon dynamics during four decades after cropping. Soil Sci Soc Am J 59:1398–1403

    Article  CAS  Google Scholar 

  • Campbell CA, Lafond G, Zentner RP, Biederbeck VO (1991) Influence of fertilizer and straw baling on soil organic matter in a thin Black Chernozem in western Canada. Soil Biol Biochem 23:443–446

    Article  CAS  Google Scholar 

  • Campbell CA, Selles F, Lafond GP, McConkey BG, Hahn D (1998) Effect of crop management on C and N in long-term crop rotations after adopting no-tillage management: comparison of soil sampling strategies. Can J Soil Sci 78:155–162

    Article  Google Scholar 

  • Campbell CA, Selles F, Lafond GP, Biederbeck VO, Zentner RP (2001) Tillage-fertilizer changes: effect on some soil quality attributes under long-term crop rotations in a thin Black Chernozem. Can J Soil Sci 81:157–165

    Article  Google Scholar 

  • Carter MR, Angers DA, Gregorich EG (1994) Approaches to evaluate organic matter quality in soil management and tillage studies. In: Proceedings 13th international soil tillage research organisation (ISTRO) conference, vol 1, Aalborg, Denmark, pp 111–116

  • Culley JLB (1993) Density and compressibility. In: Carter MR (ed) Soil sampling and methods of analysis. Lewis Publishers, Boca Raton

    Google Scholar 

  • Dalal RC (1992) Long-term trends in total nitrogen of a vertisol subjected to zero-tillage, nitrogen application and stubble retention. Aust J Soil Res 30:223–231

    Article  CAS  Google Scholar 

  • Dalal RC, Mayer RJ (1986) Long-term trends in fertility of soils under continuous cultivation and cereal cropping in Southern Queensland. IV. Loss of organic carbon from different density fractions. Aust J Soil Res 25:83–93

    Article  Google Scholar 

  • Doran JW (1980) Soil microbial and biochemical changes associated with reduced tillage. Soil Sci Soc Am J 44:765–771

    Article  CAS  Google Scholar 

  • Doran JW, Parkin TB (1994) Defining and assessing soil quality. In: Doran JW, Coleman DC, Bezdicek DF, Stewart BA (eds) Defining soil quality for a sustainable environment. Special Pub. 35. Soil Science Society of America Inc., Madison, pp 3–21

    Google Scholar 

  • Doran JW, Scott-Smith M (1987) Organic matter management and utilization of soil and fertilizer nutrients. In: Follett RF, Stewart JWB, Cole CV (eds) Soil fertility and organic matter as critical components of production systems. American Society of Agronomy, Madison, pp 53–72

    Google Scholar 

  • Ellert BH, Bettany JR (1995) Calculation of organic matter and nutrients stored in soils under contrasting management regimes. Can J Soil Sci 75:29–538

    Article  Google Scholar 

  • Ellert BH, Janzen HH (1996) Soil sampling procedure to estimate changes in carbon storage. Project No. 1113–9301 (MII #34), Agriculture and Agri-Food Canada, Lethbridge pp 51

  • Gregorich EG, Janzen HH (1995) Storage of soil carbon in the light fraction and macroorganic. In: Carter MR, Stewart BA (eds) Structure and organic matter storage in agricultural soils. Adv. Soil Science. Lewis Publishers, CRC Press, Boca Raton, pp 167–190

    Google Scholar 

  • Gregorich EG, Carter MR, Angers DA, Monreal CM, Ellert BH (1994) Towards a minimum data set to assess soil organic matter quality in agricultural soils. Can J Soil Sci 74:367–385

    Article  CAS  Google Scholar 

  • Gulde S, Chung H, Amelung W, Chang C, Six J (2008) Soil carbon saturation controls labile and stable carbon pool dynamics. Soil Sci Soc Am J 72:605–612

    Article  CAS  Google Scholar 

  • Halvorson AD, Wienhold BJ, Black AL (2002) Tillage, nitrogen and cropping system effects on soil carbon sequestration. Soil Sci Soc Am J 66:906–912

    Article  CAS  Google Scholar 

  • Hassink J, Whitmore AP (1997) A model of the physical protection of organic matter in soils. Soil Sci Soc Am J 61:131–139

    Article  CAS  Google Scholar 

  • Izaurralde RC, Nyborg M, Solberg ED, Janzen HH, Arshad MA, Malhi SS, Molina-Ayala M (1997) Carbon storage in eroded soils after five years of reclamation techniques. In: Lal R, Kimble JM, Follett RF, Stewart BA (eds) Management of carbon sequestration in soil, Advances in Soil Science. CRC Press, Boca Raton, pp 369–385

    Google Scholar 

  • Izaurralde RC, McGill WB, Robertson JA, Juma NG, Thurston JJ (2001) Carbon balance of the Breton classical plots over half a century. Soil Sci Soc Am J 65:431–441

    Article  CAS  Google Scholar 

  • IPCC (Integovernmental Panel on Climate Change) (2006) N2O emissions from managed soils, and CO2 emissions from lime and urea application. Chapter 11. In: IPCC guidelines for national greenhouse gas inventories: Agriculture, forestry and other land use, vol 4. Institute for Global Environment Strategies, Hayama

  • Janzen HH (2006) The soil carbon dilemma: shall we hoard it or use it? Soil Biol Biochem 38:419–424

    Article  CAS  Google Scholar 

  • Janzen HH, Campbell CA, Brandt SA, Lafond GP, Townley-Smith L (1992) Light-fraction organic matter in soil from long term rotations. Soil Sci Soc Am J 56:1799–1806

    Article  Google Scholar 

  • Janzen HH, Campbell CA, Izaurralde RC, Ellert BH, Juma N, McGill WB, Zentner RP (1998) Management effects on soil C storage on the Canadian prairies. In: Paustian K, Elliott ET, Carter MR (eds), Special issue: tillage and crop management impacts on soil carbon storage. Soil Tillage Research 47:181–195

  • Kanazawa S, Philip Z (1986) Distribution of microorganisms, total biomass and enzyme activities in different particles of brown soil. Microb Ecol 12:205–215

    Article  CAS  Google Scholar 

  • Liang BC, McConkey BG, Campbell CA, Johnston AM, Moulin AP (2002) Short-term crop rotation and tillage effects on soil organic carbon on the Canadian prairies. In: Kimble JM, Lal R, Follett RE (eds) Agricultural practices and policies for carbon sequestration in soil. Lewis Publishers, CRC Press, Boca Raton, pp 287–293

    Google Scholar 

  • Liang BC, McConkey BG, Schoenau J, Curtin D, Campbell CA, Moulin A, Lafond GP, Brandt SA, Wang H (2003) Effect of tillage and crop rotation on light fraction organic carbon and carbon mineralization in Chernozemic soils of Saskatchewan. Can J Soil Sci 83:65–72

    Article  CAS  Google Scholar 

  • Liang BC, McConkey BG, Campbell CA, Curtin D, Lafond GP, Brandt SA, Moulin A (2004) Total and labile soil organic nitrogen as influenced by crop rotations and tillage in Canadian prairie soils. Biol Fertil Soils 39:249–257

    Article  CAS  Google Scholar 

  • Lorenz RJ (1977) Changes in root weight and distribution in response to fertilization and harvest treatment of mixed prairie. In: Marshall JK (ed) The belowground ecosystem. Range Science Department, Science Series, Colorado State University, Fort Collins, no 26, pp 63–71

  • Lupwayi NZ, Clayton GW, O’Donovan JT, Harker KN, Turkington TK, Soon YK (2007) Phosphorus release during decomposition of crop residues under conventional and zero tillage. Soil Tillage Res 95:231–239

    Article  Google Scholar 

  • Malhi SS, Gill KS (2002) Fertilizer N and P effects on root mass of bromegrass, alfalfa and barley. J Sustain Agric 19:51–63

    Article  Google Scholar 

  • Malhi SS, Lemke R (2007) Tillage, crop residue and N fertilizer effects on crop yield, nutrient uptake, soil quality and greenhouse gas emissions in the second 4-year rotation cycle. Soil Tillage Res 96:269–283

    Article  Google Scholar 

  • Malhi SS, O’Sullivan PA (1990) Soil temperature, moisture and compaction under zero and conventional tillage in central Alberta. Soil Tillage Res 17:167–172

    Article  Google Scholar 

  • Malhi SS, Brandt S, Gill KS (2003a) Cultivation and grassland type effects on light fraction and total organic C and N in a dark brown Chernozemic soil. Can J Soil Sci 83:145–153

    Article  Google Scholar 

  • Malhi SS, Harapiak JT, Nyborg M, Gill KS, Monreal CM, Gregorich EG (2003b) Light fraction organic N, ammonium, nitrate and total N in a thin Black Chernozemic soil under bromegrass after 27 annual applications of different N rates. Nutr Cycl Agroecosyst 65:201–210

    Article  CAS  Google Scholar 

  • Malhi SS, Harapiak JT, Nyborg M, Gill KS, Monreal CM, Gregorich EG (2003c) Total and light fraction organic C in a thin Black Chernozemic grassland soil as affected by 27 annual applications of six rates of fertilizer N. Nutr Cycl Agroecosyst 66:33–41

    Article  CAS  Google Scholar 

  • Malhi SS, Lemke R, Wang ZH, Chhabra BS (2006) Influence of tillage and crop residue management on crop yield, greenhouse gas emissions and soil quality. Soil Tillage Res 90:171–183

    Article  Google Scholar 

  • Malhi SS, Moulin AP, Johnston AM, Kutcher RH (2008) Short-term and long-term effects of tillage and crop rotation on some soil physical and biological properties in a Black Chernozem soil in northeastern Saskatchewan. Can J Soil Sci 88:273–282

    Article  CAS  Google Scholar 

  • Malhi SS, Brandt SA, Lemke R, Moulin AP, Zentner RP (2009) Effects of input level and crop diversity on soil nitrate-N, extractable P, aggregation, organic C and N, and N and P balance in the Canadian Prairie. Nutr Cycl Agroecosyst Online. doi 10.1007/s10705-008-9220-0

  • Malhi SS, Nyborg M, Goddard T, Puurveen D (2010) Long-term tillage, straw and N rate effects on quantity and quality of organic C and N in a gray Luvisol soil. Nutr Cycl Agroecosyst Online: 16 Sep 2010. doi 10.1007/s10705-010-9399-8

  • McGill WB, Campbell CA, Dormaar JF, Paul EA, Anderson DW (1981) Soil organic matter losses. In: Agricultural land, our disappearing heritage. Proceedings from 18th Annual Alberta Soil Science Workshop, Edmonton, pp 30–48

  • McGill WB, Dormaar JF, Reinl-Dwyer E (1988) New perspectives on soil organic matter quality, quantity, and dynamics on the Canadian Prairies. In: Proceedings Canadian society of soil science and Canadian society of extension joint symposium, land degradation: assessment and insight into a western Canadian problem. 23 Aug 1988, Agricultural Institute of Canada, Calgary, pp 30–48

  • Ndayegamiye A, Goulet M, Laverdiere MR (1997) Long-term mineral fertilizers and manure application on soil C and N distribution. Can J Soil Sci 77:351–358

    Article  Google Scholar 

  • Nuttall WF, Bowren KE, Campbell CA (1986) Crop residue management practices, and N and P fertilizer effects on crop response and on some soil physical and chemical properties of a Black Chernozem over 25 years in a continuous wheat rotation. Can J Soil Sci 66:159–171

    Article  Google Scholar 

  • Nyborg M, Malhi SS (1989) Effect of zero and conventional tillage on barley yield and nitrate-N content, moisture and temperature of soil in north-central Alberta. Soil Tillage Res 15:1–9

    Article  Google Scholar 

  • Nyborg M, Solberg ED, Malhi SS, Izaurralde RC (1995) Fertilizer N, crop residue, and tillage after soil C and N content in a decade. In: Lal R, Kimble J, Levine E, Stewart BA (eds) Soil management and greenhouse effect. Advances in Soil Science. Lewis Publishers, CRC Press, Boca Raton, pp 93–99

    Google Scholar 

  • Robertson GP, Swinton SM (2005) Reconciling agricultural productivity and environment integrity: a grand challenge for agriculture. Front Ecol Environ 3:38–46

    Article  Google Scholar 

  • SAS Institute (2004) SAS product documentation. Version 8. Available at http://support.sas.com/documentation/onlinedoc/index.html (verified 17 July 2009). SAS Institute, Cary

  • Singh B, Malhi SS (2006) Response of soil physical properties to tillage and straw management on two contrasting soils in a cryoboreal environment. Soil Tillage Res 85:143–153

    Article  Google Scholar 

  • Singh B, Chanasyk DS, McGill WB, Nyborg MPK (1994) Residue and tillage management effects on soil properties of a typic Cryoboroll under continuous barley. Soil Tillage Res 32:117–133

    Article  Google Scholar 

  • Singh B, Chanasyk DS, McGill WB (1996) Soil hydraulic properties of an Orthic Black Chernozem under long-term tillage and residue management. Can J Soil Sci 76:63–71

    Article  Google Scholar 

  • Sleutel S, De Neve S, Nemeth T, Toth T, Hofman G (2006) effect of manure and fertilizer application on the distribution of organic C in different soil fractions in long-term field experiments. Europ J Agron 25:280–288

    Article  Google Scholar 

  • Solberg ED, Nyborg M, Izaurralde RC, Malhi SS, Janzen HH, Molina-Ayala M (1997) Carbon storage in soils under continuous cereal grain cropping: N fertilizer and straw. In: Lal R, Kimble JM, Follett RF, Stewart BA (eds) Management of carbon sequestration in soil. Advances in Soil Science. Lewis Publishers, CRC Press, Boca Raton, pp 235–254

    Google Scholar 

  • Sollins P, Spycher G, Glassman CA (1984) Net mineralization from light- and heavy-fraction forest soil organic matter. Soil Biol Biochem 16:31–37

    Article  CAS  Google Scholar 

  • Soon YK, Arshad MA (1996) Effects of cropping on nitrogen, phosphorus and potassium forms, and soil organic carbon in a Grey Luvisol. Bio Fertil Soils 22:184–190

    Article  Google Scholar 

  • Technicon Industrial Systems (1977) Industrial/simultaneous determination of nitrogen and/or phosphorus in BD acid digests. Industrial method no. 334–74 W/Bt. Tarrytown, NY

    Google Scholar 

  • Thomson AM, Izaurralde RC, Rosenberg NJ, He X (2006) Climate change impacts on agriculture and soil carbon sequestration potential in the Huang-Hai Plain of China. Agri Ecosyst Environ 114:195–209

    Article  Google Scholar 

  • Tisdall JM, Oades JM (1980) The effect of crop rotation on aggregation in a red brown earth. Aust J Soil Res 18:423–433

    Article  CAS  Google Scholar 

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Acknowledgments

The authors thank Z. Zhang, D. Leach, K. Strukoff, G. Lohstraeter, G. McGregor and J. Busan for technical help. Project coordination was provided by K. Haugen-Kozyra, Dr. J. Keng and C. Sprout. Funding contributions from the Alberta Agriculture Research Institute made the sampling possible.

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Malhi, S.S., Nyborg, M., Goddard, T. et al. Long-term tillage, straw management and N fertilization effects on quantity and quality of organic C and N in a Black Chernozem soil. Nutr Cycl Agroecosyst 90, 227–241 (2011). https://doi.org/10.1007/s10705-011-9424-6

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  • DOI: https://doi.org/10.1007/s10705-011-9424-6

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