Research Article
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Year 2021, Volume: 27 Issue: 1, 9 - 15, 04.03.2021
https://doi.org/10.15832/ankutbd.570801

Abstract

References

  • Amerikhah H, Chorom M, Landi, A, & Jafari, S. (2010). Application of DNDC model for estimating greenhouse carbon gases emission as effect of changing landuse in south of Ahwaz. J. Agric. Engin. Crop, Soil Agric. Machin. 33 (1): 1-14.
  • Barzegar A R, Koochekzadeh A, Xing B & Herbert S J.( 2005). Concentration changes of Cd, Ni and Zn in sugarcane cultivated soils. Water, air, and soil pollution, 161(1-4): 97-112.
  • Behnke G D, Zuber S M, Pittelkow C M, Nafziger E D & Villamil, M B. (2018). Long-term crop rotation and tillage effects on soil greenhouse gas emissions and crop production in Illinois, USA. Agriculture, Ecosystems & Environment, 261, 62-70.
  • Bigott A F, Hoy J W & Fultz L M. (2019). Soil properties, microbial communities, and sugarcane yield in paired fields with short-or long-term sugarcane cultivation histories. Applied Soil Ecology.
  • Bostani A & Savaghebi Gh. (2011). Study of potassium fixation capacity in some undercultivation sugarcane soils in Khuzestan. Journal Of Water Anad Soil(Agricultural Sciences And Technology). 25: 5. 982-993. (In Persian).
  • Blanco-Canqui H, & Lal, R (2007). Soil structure and organic carbon relationships following 10 years of wheat straw management in no-till. Soil and Tillage Research, 95(1-2), 240-254.
  • Bünemann E K, Bongiorno G, Bai Z, Creamer R E, De Deyn G, de Goede R & Pulleman M. (2018). Soil quality–A critical review. Soil Biology and Biochemistry, 120, 105-125.
  • Chi L, Mendoza-Vega J, Huerta E & Álvarez-Solís J D. (2017). Effect of Long-Term Sugarcane (Saccharum Spp.) Cultivation on Chemical and Physical Properties of Soils in Belize. Communications in soil science and plant analysis, 48(7), 741-755.
  • Dengia A, & Lantinga E. (2016). EImpact of Long-Term Conventional Cropping Practices on Some Soil Quality Indicators at Ethiopian Wonji Sugarcane Plantation. Advances in Crop Science and Technology. 4(3).
  • Ghorbani Z, Jafari S & Khalil Moghaddam B.(2013). The effect of soil physicochemical properties under different land use on aggregate stability in some part of Khuzestan province. journal of soil management and sustainable production.3(2) 29-51. (In Persian).
  • Gol C. (2009). The effects of land use change on soil properties and organic carbon at Dagdami river catchment in Turkey. Journal of Environmental Biology, 30(5), 825.
  • Jafari S & Nadian H. (2014). The Study of a Toposequence Soil Series and Clay Mineral Assemblage in some Soils of Khozestan Province. JWSS- Isfahan University of Technology. 18(69): 151-164.
  • Jafari S, Golchin A & Toolabifard A. (2016). Effect of land use changes on physical fractionation properties of organic matter, clay dispersion and aggregate stability in some Khuzestan soils province. Iranian Journal of Soil and Water Research. 47: 3. 593-603. (In Persian).
  • Jafari S & Bagher Nejad M. (2007). Effects of wetting and drying and cultivation systems on potassium fixation in some Khouzestan soils and clays. Journal Of Science And Technology Of Agriculture And Natural Resources. 41: 75-90. (In Persian).
  • Landi A, Pourkeihan S, Chorom M, Hojati S & Jafari S. (2018). Study of the effects of land use change and construction of sugarcane fields on physicochemical, mineralogical and micromorphological characteristics of soil in southern Khuzestan province. journal of soil management and sustainable production. 8: 2. 53-62. (In Persian).
  • Moradi F, Khalili Moghadam B, Jafari S & Ghorbani Dashtaki S. (2014). Long-Term Effects of Mechanized Cultivation on Some Soil Physical Properties in Some Khozestan Sugarcane Agro-Industries. Journal Of Water And Soil(Agricultural Sciences And Technology). 27(6): 1153-1165.
  • Masto R E, Chhonkar, P K, Purakayastha T J, Patra, A K & Singh D. (2008). Soil quality indices for evaluation of long‐term land use and soil management practices in semi‐arid sub‐tropical India. Land degradation & development, 19(5), 516-529.
  • Naranjo de la F J, Salgado-Garcı´a S, Lagunes-Espinoza L C, Carrillo-Avila E & Plama-Lopez, D J. (2006). Change in the properties of a Mexican Fluvisol fllowing 30 years of sugarcane cultivation. Soil & Tillage Research. (88): 160-167.
  • Nelson R E & Sommers L E. (1982). Total carbon. Organic carbon and organic matter 1. Methods of soil analysis. Part 2. Chemical and microbiological properties, (methodsofsoilan2), 539-579.
  • L. Page et al. (ed). Methods of soil analysis. Part 2. 2nd. Agron. Monogr. 9. ASA and SSSA, Madison, WI, pp: 539-579.
  • Olsen S R, Cole C V, Watanabe F S & Dean C A. (1954). Estimation of available phosphorous in soils by extraction with sodium bicarbonate. U. S. Department of Agricultur Circular. No. 939.
  • Otto R, Silva A P, Franco H C J& Oliveira E C A. (2011). High soil penetration resistance reduces sugarcane root system development. Soil And Tillage Research. 1-10.
  • Rezapour S, Taghipour A & Samadi A.(2013). Modifications in selected soil attributes as influenced by long-term continuous cropping in a calcareous semiarid environment. Natural Hazards. 69: 3. 1951–1966.
  • Silva A J N, Ribeiro M R, Carvalho F G, Silva V N & Silva L E S F. (2007). Impact of sugarcane cultivation on soil carbon fractions, consistence limits and aggregate stability of Yellow Latosol in Northeast Brazil. Soil And Tillage Research. 94: 420-424.
  • Staff S. (2014). Keys to soil taxonomy. Washington (DC): United States Department of Agriculture, Natural Resources Conservation Service.
  • Szilassi P, Jordan G, Rompaey A & Csillag, G.(2006). Impacts of historical land use change on erosion and agricultural soil properties in the Kali Basin at Lake Balaton, Hungary. Catena, 68: 96-108.
  • Veisitabar A, Hemmat A, Mosaddeghi M R. (2015). Soil Compaction Assessment in Sugarcane Fields under Different Planting Conditions Using Soil Bulk Density, Relative Bulk Density and Cone Index. JWSS -Isfahan University of Technology. 19 (72): 93-106.

Investigating the Effect of Long-Term Sugarcane Cultivation on Some Soil Properties of Soils in Karoun Agro-industry Unit, Khuzestan Province, Iran

Year 2021, Volume: 27 Issue: 1, 9 - 15, 04.03.2021
https://doi.org/10.15832/ankutbd.570801

Abstract

The principal aim of the present research was investigation of the effect of long-term sugarcane cultivation on some chemical and physical properties of soil in Karoun Agro-industry Unit in Shoushtar city, Iran. The study was conducted in a factorial arrangement based on randomized complete block design with two field factors at 8 levels and three depths in three replications. Soil samples were collected and some of their physical (e.g., bulk density) and chemical (e.g., pH, EC, soil available phosphorus, organic carbon, soluble sodium and available potassium)
Features9 were measured. Results revealed that land use change and long-term sugarcane cultivation reduced electrical conductivity, the amount of soluble sodium and available potassium contents of soil in different depths, while caused increasing the percentage of organic matter and available soil phosphorous. However, at similar experimental conditions, no significant changes were observed in soil pH. The soil bulk density contents in farms under continuous cultivation of sugarcane, was more than the control field and HARZA. Moreover, soil exchangeable potassium was identified as a sensitive indicator of long-term sugarcane cultivation.

References

  • Amerikhah H, Chorom M, Landi, A, & Jafari, S. (2010). Application of DNDC model for estimating greenhouse carbon gases emission as effect of changing landuse in south of Ahwaz. J. Agric. Engin. Crop, Soil Agric. Machin. 33 (1): 1-14.
  • Barzegar A R, Koochekzadeh A, Xing B & Herbert S J.( 2005). Concentration changes of Cd, Ni and Zn in sugarcane cultivated soils. Water, air, and soil pollution, 161(1-4): 97-112.
  • Behnke G D, Zuber S M, Pittelkow C M, Nafziger E D & Villamil, M B. (2018). Long-term crop rotation and tillage effects on soil greenhouse gas emissions and crop production in Illinois, USA. Agriculture, Ecosystems & Environment, 261, 62-70.
  • Bigott A F, Hoy J W & Fultz L M. (2019). Soil properties, microbial communities, and sugarcane yield in paired fields with short-or long-term sugarcane cultivation histories. Applied Soil Ecology.
  • Bostani A & Savaghebi Gh. (2011). Study of potassium fixation capacity in some undercultivation sugarcane soils in Khuzestan. Journal Of Water Anad Soil(Agricultural Sciences And Technology). 25: 5. 982-993. (In Persian).
  • Blanco-Canqui H, & Lal, R (2007). Soil structure and organic carbon relationships following 10 years of wheat straw management in no-till. Soil and Tillage Research, 95(1-2), 240-254.
  • Bünemann E K, Bongiorno G, Bai Z, Creamer R E, De Deyn G, de Goede R & Pulleman M. (2018). Soil quality–A critical review. Soil Biology and Biochemistry, 120, 105-125.
  • Chi L, Mendoza-Vega J, Huerta E & Álvarez-Solís J D. (2017). Effect of Long-Term Sugarcane (Saccharum Spp.) Cultivation on Chemical and Physical Properties of Soils in Belize. Communications in soil science and plant analysis, 48(7), 741-755.
  • Dengia A, & Lantinga E. (2016). EImpact of Long-Term Conventional Cropping Practices on Some Soil Quality Indicators at Ethiopian Wonji Sugarcane Plantation. Advances in Crop Science and Technology. 4(3).
  • Ghorbani Z, Jafari S & Khalil Moghaddam B.(2013). The effect of soil physicochemical properties under different land use on aggregate stability in some part of Khuzestan province. journal of soil management and sustainable production.3(2) 29-51. (In Persian).
  • Gol C. (2009). The effects of land use change on soil properties and organic carbon at Dagdami river catchment in Turkey. Journal of Environmental Biology, 30(5), 825.
  • Jafari S & Nadian H. (2014). The Study of a Toposequence Soil Series and Clay Mineral Assemblage in some Soils of Khozestan Province. JWSS- Isfahan University of Technology. 18(69): 151-164.
  • Jafari S, Golchin A & Toolabifard A. (2016). Effect of land use changes on physical fractionation properties of organic matter, clay dispersion and aggregate stability in some Khuzestan soils province. Iranian Journal of Soil and Water Research. 47: 3. 593-603. (In Persian).
  • Jafari S & Bagher Nejad M. (2007). Effects of wetting and drying and cultivation systems on potassium fixation in some Khouzestan soils and clays. Journal Of Science And Technology Of Agriculture And Natural Resources. 41: 75-90. (In Persian).
  • Landi A, Pourkeihan S, Chorom M, Hojati S & Jafari S. (2018). Study of the effects of land use change and construction of sugarcane fields on physicochemical, mineralogical and micromorphological characteristics of soil in southern Khuzestan province. journal of soil management and sustainable production. 8: 2. 53-62. (In Persian).
  • Moradi F, Khalili Moghadam B, Jafari S & Ghorbani Dashtaki S. (2014). Long-Term Effects of Mechanized Cultivation on Some Soil Physical Properties in Some Khozestan Sugarcane Agro-Industries. Journal Of Water And Soil(Agricultural Sciences And Technology). 27(6): 1153-1165.
  • Masto R E, Chhonkar, P K, Purakayastha T J, Patra, A K & Singh D. (2008). Soil quality indices for evaluation of long‐term land use and soil management practices in semi‐arid sub‐tropical India. Land degradation & development, 19(5), 516-529.
  • Naranjo de la F J, Salgado-Garcı´a S, Lagunes-Espinoza L C, Carrillo-Avila E & Plama-Lopez, D J. (2006). Change in the properties of a Mexican Fluvisol fllowing 30 years of sugarcane cultivation. Soil & Tillage Research. (88): 160-167.
  • Nelson R E & Sommers L E. (1982). Total carbon. Organic carbon and organic matter 1. Methods of soil analysis. Part 2. Chemical and microbiological properties, (methodsofsoilan2), 539-579.
  • L. Page et al. (ed). Methods of soil analysis. Part 2. 2nd. Agron. Monogr. 9. ASA and SSSA, Madison, WI, pp: 539-579.
  • Olsen S R, Cole C V, Watanabe F S & Dean C A. (1954). Estimation of available phosphorous in soils by extraction with sodium bicarbonate. U. S. Department of Agricultur Circular. No. 939.
  • Otto R, Silva A P, Franco H C J& Oliveira E C A. (2011). High soil penetration resistance reduces sugarcane root system development. Soil And Tillage Research. 1-10.
  • Rezapour S, Taghipour A & Samadi A.(2013). Modifications in selected soil attributes as influenced by long-term continuous cropping in a calcareous semiarid environment. Natural Hazards. 69: 3. 1951–1966.
  • Silva A J N, Ribeiro M R, Carvalho F G, Silva V N & Silva L E S F. (2007). Impact of sugarcane cultivation on soil carbon fractions, consistence limits and aggregate stability of Yellow Latosol in Northeast Brazil. Soil And Tillage Research. 94: 420-424.
  • Staff S. (2014). Keys to soil taxonomy. Washington (DC): United States Department of Agriculture, Natural Resources Conservation Service.
  • Szilassi P, Jordan G, Rompaey A & Csillag, G.(2006). Impacts of historical land use change on erosion and agricultural soil properties in the Kali Basin at Lake Balaton, Hungary. Catena, 68: 96-108.
  • Veisitabar A, Hemmat A, Mosaddeghi M R. (2015). Soil Compaction Assessment in Sugarcane Fields under Different Planting Conditions Using Soil Bulk Density, Relative Bulk Density and Cone Index. JWSS -Isfahan University of Technology. 19 (72): 93-106.
There are 27 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Makaleler
Authors

Masoud Sadeghi 0000-0003-3649-3209

Abdolamir Moezzi 0000-0003-1738-8825

Ali Gholami This is me 0000-0002-0392-2786

Teimour Babaeinejad This is me 0000-0001-9398-1167

Ebrahim Panahpour 0000-0002-2299-2026

Publication Date March 4, 2021
Submission Date May 27, 2019
Acceptance Date September 16, 2019
Published in Issue Year 2021 Volume: 27 Issue: 1

Cite

APA Sadeghi, M., Moezzi, A., Gholami, A., Babaeinejad, T., et al. (2021). Investigating the Effect of Long-Term Sugarcane Cultivation on Some Soil Properties of Soils in Karoun Agro-industry Unit, Khuzestan Province, Iran. Journal of Agricultural Sciences, 27(1), 9-15. https://doi.org/10.15832/ankutbd.570801

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