دوره 10، شماره 20 - ( پاییز و زمستان 1398 )                   جلد 10 شماره 20 صفحات 48-38 | برگشت به فهرست نسخه ها


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Karimi N, Gholami L, Kavian A. (2019). The Variations of Runoff, Soil Loss and Sediment Concentration Variables Using Different Biochar Levels in Laboratory Conditions. jwmr. 10(20), 38-48. doi:10.29252/jwmr.10.20.38
URL: http://jwmr.sanru.ac.ir/article-1-888-fa.html
کریمی نبیه، غلامی لیلا، کاویان عطااله. تغییرات مولفه های رواناب، هدر رفت خاک و غلظت رسوب با استفاده از سطوح مختلف بایوچار در شرایط آزمایشگاهی پ‍‍ژوهشنامه مديريت حوزه آبخيز 1398; 10 (20) :48-38 10.29252/jwmr.10.20.38

URL: http://jwmr.sanru.ac.ir/article-1-888-fa.html


دانشگاه علوم کشاورزی و منابع طبیعی ساری
چکیده:   (2717 مشاهده)
   امروزه روش ­های کنترل رواناب و فرسایش خاک به ­عنوان یکی از  بحث­ های مهم در سراسر جهان مطرح است. از این­ رو استفاده از افزودنی­ های خاک به­ منظور حفاظت آب و خاک امری ضروری است. از سویی دیگر افزایش روز افزون لجن­ تولیدی کارخانه­ ها و تبدیل آن­ها به سایر مواد سودمند از جمله افزودنی خاک امری مهم می­ باشد. لذا پژوهش حاضر با هدف بررسی اثر بایوچار حاصل از لجن کارخانه جوجه ­کشی با مقادیر به ­ترتیب 4/0، 8/0 و 6/1 تن بر هکتار بر مولفه های زمان شروع رواناب، حجم رواناب، ضریب رواناب، هدر­رفت خاک و غلظت رسوب انجام شد. مراحل انجام پژوهش حاضر در شرایط آزمایشگاهی در شدت 50 میلی­متر بر ساعت و شیب 20 درصد با سه تکرار در مقیاس کرت انجام شد. نتایج نشان داد که بعد از کاربرد افزودنی بایوچار با مقادیر 4/0، 8/0 و 6/1 تن بر هکتار زمان شروع رواناب نسبت به شاهد به ­ترتیب 19/71، 58/91 و 54/150 درصد نسبت به تیمار شاهد افزایش، حجم رواناب به ­ترتیب با مقادیر 00/21، 40/31 و 47/36 درصد نسبت به تیمار شاهد کاهش و هم­چنین ضریب رواناب به ­ترتیب با مقادیر 57/67، 94/56 و 35/46 درصد  نسبت به تیمار شاهد کاهش یافتند. بایوچار منجر به کاهش هدر­رفت خاک به ترتیب به مقدار 04/71، 60/77 و 63/85 درصد و غلظت رسوب با مقادیر به ­ترتیب 16/63، 21/67 و 17/76 درصد نسبت به تیمار شاهد شد. نتایج آزمون آماری نشان داد که تاثیر مقادیر مختلف بایوچار بر مولفه ­های زمان شروع رواناب، حجم رواناب، ضریب رواناب، هدر­رفت خاک و غلظت رسوب در سطح اعتماد 99 درصد معنی­ دار بود.
متن کامل [PDF 1028 kb]   (1098 دریافت)    
نوع مطالعه: پژوهشي | موضوع مقاله: حفاظت آب و خاک
دریافت: 1396/9/28 | ویرایش نهایی: 1399/3/27 | پذیرش: 1397/3/2 | انتشار: 1398/10/24

فهرست منابع
1. Abel, S., A. Peters, S. Trinks, H. Schonsky, M. Facklam and G. Wessolek. 2013. Impact of biochar and hydrochar addition on water retention and water repellency of sandy soil.Geoderma, 202: 183-191.‌ [DOI:10.1016/j.geoderma.2013.03.003]
2. Abrol, V., M. Ben-Hur, F.G. Verheijen, J.J. Keizer, M.A. Martins, H. Tenaw and E.R. Graber. 2016. Biochar effects on soil water infiltration and erosion under seal formation conditions: rainfall simulation experiment. Journal of Soils and Sediments, 1-11. [DOI:10.1007/s11368-016-1448-8]
3. Abujabhah, I.S., S.A. Bound, R. Doyle and J.P. Bowman. 2015. Effects of biochar and compost amendments on soil physico-chemical properties and the total community within a temperate agricultural soil. Applied Soil Ecology, 1-11. [DOI:10.1016/j.apsoil.2015.10.021]
4. Asai H., B.K. Samson, H.M. Stephan, K. Songyikhan, K. Hommaa, Y. Kiyono, Y. Inoue T. Shiraiwa and T. Horie. 2009. Biochar amendment techniques for upland rice production in Northern Laos. Field Crops Research, 111: 81-84. [DOI:10.1016/j.fcr.2008.10.008]
5. Baronti, S., F.P. Vaccari, F. Miglietta, C. Calzolari, E. Lugato, S. Orlandini, R. Pini, C. Zulian and L. Genesio. 2014. Impact of biochar application on plant water relations in Vitis vinifera (L.). Eur. J. Agron, 53: 38-44. [DOI:10.1016/j.eja.2013.11.003]
6. 6-Bayabil H.K., C.R. Stoof, J.C. Lehmann, B. Yitaferu and T.S. Steenhuis. 2015. Assessing the potential of biochar and charcoal to improve soil hydraulic properties in the humid Ethiopian Highlands: The Anjeni watershed. Geoderma, 244: 115-123. [DOI:10.1016/j.geoderma.2014.12.015]
7. Briggs, C.M., J. Breiner, R.C. Graham. 2005. Contributions of Pinus Ponderosa charcoal to soil chemical andphysical properties. In the ASACSSA-SSSA International Annual Meetings. Salt Lake City, USa.
8. Chan, K.Y., L. Van Zwieten, I. Meszaros, A. Dowie and S. Joseph. 2008. Using poultry litter biochars as soil amendments. Australian Journal of Soil Research, 46: 437-444. [DOI:10.1071/SR08036]
9. Darboux, F., Ph. Davy, G. Odoux and C. Hung. 2001. Evolution of soil surface roughness and flow path connectivity in overland flow experiments. Catena, 46(3): 125-139. [DOI:10.1016/S0341-8162(01)00162-X]
10. Defersha, M.B., S. Quraishi and A. Melesse. 2011. The effect of slope steepness and antecedent moisture content oninterrill erosion, runoff and sediment size distribution in the highlands of Ethiopia. Hydrology and Earth System Science, 15: 2367-2375. [DOI:10.5194/hess-15-2367-2011]
11. Doan, T.T., T.H. Tureaux, C. Rumpel, J. Janeau and P. Jouquet. 2015. Impact of compost, vermin compost and biochar on soil fertility, maize yield and soil erosion in Northern Vietnam: A three year mesocosm experiment. Science of the Total Environment, 514: 147-154. [DOI:10.1016/j.scitotenv.2015.02.005]
12. Feller, C. and M.H. Beare. 1997. Physical control of soil organic matter dynamics in the tropics. Geoderma, 79(1): 69-116. [DOI:10.1016/S0016-7061(97)00039-6]
13. Fletcher, D. 2007. Soil Erosion Control on Banks Peninsula: A Bioengineering Approach, 62 pp.
14. Gessesse, B., W. Bewket and A. Bräuning. 2015. Model-based characterization and monitoring of runoff and soil erosion in response to land use/land cover changes in the Modjo watershed, Ethiopia. Land Degrad. Dev. http://dx.doi.org/10.1002/ldr.2276. [DOI:10.1002/ldr.2276]
15. Gholami, L., S.H.R. Sadeghi and M. Homaee. 2013. Straw mulching effect on splash erosion, runoff and sediment yield from eroded plots. Soil Science Society of America Journal, 77: 268-278. [DOI:10.2136/sssaj2012.0271]
16. Gholami, L., K. Banasik, S.H.R. Sadeghi, A.V. Khaledi Darvishan and L. Hejduk. 2014. Effectiveness of straw mulch on infiltration, splash erosion, runoff and sediment in laboratory conditions. Journal of Water and Land Development, 22(7): 51-60. [DOI:10.2478/jwld-2014-0022]
17. Gholami, L., S.H.R. Sadeghi and M. Homaee. 2015. The effect of straw rice on time to runoff and runoff coefficient. Iranian Water Researches Journal, 8(15): 33-40 (In Persian).
18. Gholami, L., S.H.R. Sadeghi and M. Homaee. 2017. Effect of Soil Amendments on Hydrograph and Sediment Graph Changes in the Laboratory Conditions. Journal of Watershed Management Research, 8(16): 100-112 (In Persian).
19. Githinji, L. 2013. Effect of biochar application rate on soil physical and hydraulic properties of a sandy loam. Archives of Agronomy and Soil Science, 1-14. [DOI:10.1080/03650340.2013.821698]
20. Glaser, B., J. Lehmann and W. Zech. 2002. Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal- a review. Biol Fertil Soils, 35: 219-230. [DOI:10.1007/s00374-002-0466-4]
21. Hann, M.J. and R.P.C. Morgan. 2006. Evaluating erosion control measures for biorestoration between the time of soil reinstatement and vegetation establishment. Earth Surface Processes and Landforms, 31: 589-597. [DOI:10.1002/esp.1353]
22. Herath, H.M.S.K., M.C. Arbestain and M. Hedley. 2013. Effect of biochar on soil physical properties in two contrasting soils: An Alfisol and an Andisol. Geoderma, 209: 188-197. [DOI:10.1016/j.geoderma.2013.06.016]
23. Hseu, Z., S.H. Hao Jien, W.H. Chien and R.C. Liou. 2014. Impacts of biochar on physical properties and erosion potential of a mudstone slope land soil. The Scientific World Journal, ID 602197, 10 pp. [DOI:10.1155/2014/602197]
24. Husk, B. and J. Major. 2010. Commercial scale agricultural biochar field trial in Québec, Canada over two years:effects of biochar on soil fertility, biology and crop productivity and quality. Dynamotive Energy Systems. Blue Leaf Inc, 39pp.
25. Jien, S.H. and C.S. Wang. 2013. Effects of biochar on soil properties and erosion potential in a highly weathered soil. Catena, 110: 225-233. [DOI:10.1016/j.catena.2013.06.021]
26. Kavian, A., M. Mohammadi, M. Fallah and L. Gholami. 2016. Effect of wheat straw on changing time to runoff and runoff coefficient in laboratory plots under rainfall simulation. Journal of Soil and Water Resources Conservation, 5(2): 72-80 (In Persian).
27. Khaledi Darvishan, A., S.H.R. Sadeghi, M. Homaee and M. Arabkhedri. 2014. Measuring Sheet Erosion using Synthetic Color-Contrast Aggregates. Hydrological Processes, 28(15): 4463-4471. [DOI:10.1002/hyp.9956]
28. Kimetu, J.M. and J. Lehmann. 2010. Stability and stabilisation of biochar and green manure in soil with different organic carbon contents. Australian Journal of Soil Research, 48: 577-585. [DOI:10.1071/SR10036]
29. Laird, D.A., P. Fleming, D.D. Davis, R. Horton, B. Wang and D.L. Karlen. 2010. Impact of biochar amendments on the quality of a typical Midwesternagricultural soil. Geoderma, 158: 443-449. [DOI:10.1016/j.geoderma.2010.05.013]
30. Lehmann J., M.C. Rillig, J. Thies, C.A. Masiello, W.C. Hockaday and D. Crowley. 2003. Biochar effects on soil biota- a review. Soil Biology Biochemstry, 43: 1812-1836. [DOI:10.1016/j.soilbio.2011.04.022]
31. Liang, B., J. Lehmann, D. Solomon, J. Kinyangi, J. Grossman, B. O'Neill, J.O. Skjemstad, J. Thies, F. Luiza, J. Petersen and E.G. Neves. 2006. Black carbon increases cation exchange capacity in soils. Soil Science Society of America Journal, 70: 1719-1730. [DOI:10.2136/sssaj2005.0383]
32. Luk, S.H. 1985. Effect of antecedent soil moisture content on rainwash erosion. Catena, 12: 129-139. [DOI:10.1016/S0341-8162(85)80012-6]
33. Major, J. 2010. Guidelines on practical aspects of biochar application to field soil in various soil management systems IBI, 23 pp.
34. Morán A., X. Gómez and A. Aller. 2004. Management of sludge from waste water treatment plant. Current approaches and perspectives. Tecnología delAgua, 245: 34-38.
35. Peng. X., Q.H. Zhu, Z.B. Xie, F. Darboux and N.M. Holden. 2016. The impact of manure, straw and biochar amendments on aggregation and erosion in a hillslope Ultisol. Catena, 138: 30-39. [DOI:10.1016/j.catena.2015.11.008]
36. Petter, F.A. and B.E. Madari. 2012. Biochar: agronomic and environmental potential in Brazilian savannah soils. Revista Brasileira de Engenharia Agrícola e Ambiental, 16(7): 761-768. [DOI:10.1590/S1415-43662012000700009]
37. Sadeghi, S.H.R., Z. Hazbavi and H. Younesi. 2015. Sustainable watershed management through applying appropriate level of soil amendments. Sustainable Watershed Management-Gonenc, Wolflin & Russo. Taylor and Francis Group, London, 978: 1-13. [DOI:10.1201/b17433-40]
38. Sadeghi, S.H.R., Z. Hazbavi and M. Kiani Harchegani. 2016. Controllability of runoff and soil loss from small plots treated by vinasse-produced biochar. Science of the Total Environment, 541: 483-490. [DOI:10.1016/j.scitotenv.2015.09.068]
39. Schiechtl, H.M., N. Trans and K. Horstmann. 1980. Bioengineering for land reclamation and conservation. University of Alberta Press. Edmonton, Alberta, 404 pp.
40. Schjønning, P., L.J. Munkholm and S. Elmholt. 2004. Soil quality in organic farming-effects of crop rotation, animal manure and soil compaction. EUROSOIL 2004, Freiburg, Germany, 6-10.
41. Smets T., J. Poesen, M.A. Fullen and C.A. Booth. 2007. Effectiveness of palm and simulated geotextiles in reducing run-off and interrill erosion on medium and steep slopes. Soil Use and Management, 306-316. [DOI:10.1111/j.1475-2743.2007.00098.x]
42. Tejada, M. and J.L. Gonzalez. 2007. Effects of application of a byproduct of the two-step olive oil mill process on maize yield. Agronomy Journal, 69: 692-699.
43. Uzoma, K.C., M. Inoue, H. Andry, A. Zahoor and E. Nishihara. 2011. Influence of biochar application on sandy soil hydraulicproperties and nutrient retention. Food, Agriculture and Environment, 9: 1137-1143.
44. Werther, J. and T. Ogada. 1999. Sewage sludge combustion. Progress in Energyand Combustion Science, 25: 55-116. [DOI:10.1016/S0360-1285(98)00020-3]
45. Yue, Y., L. Cui, Q. Lin, G. Li and X. Zhao. 2017. Efficiency of sewage sludge biochar in improving urban soil properties and promoting grass growth. Chemosphere, 173: 551-556. [DOI:10.1016/j.chemosphere.2017.01.096]
46. Zhang A., R. Bian, G. Pan, L. Cui, Q. Hussaina, L. Li, J. Zheng, X. Zhang, V. Han and X. Yu. 2012. Effects of biochar amendment on soil quality, crop yield and greenhouse gasemission in a Chinese rice paddy: A field study of 2 consecutive rice growingcycles. Field Crops Research, 127: 153-160. [DOI:10.1016/j.fcr.2011.11.020]
47. Zhi-guoa, L., G. Chi-minga, Z. Run-huab, I. Mohameda, Z. Guo-shia, W. Li, Z. Run-qina, C. Fanga, and L. Yia. 2017. The benefic effect induced by biochar on soil erosion and nutrient lossof slopping land under natural rainfall conditions in central China. Agricultural Water Management, 185: 145-150. [DOI:10.1016/j.agwat.2017.02.018]

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