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Maize Root Architecture and Biomass Productivity after Application of Organic and Inorganic Additives in Contaminated Soil Cover

Maize Root Architecture and Biomass Productivity after Application of Organic and Inorganic Additives in Contaminated Soil

Open Access
|Apr 2024

References

  1. [1] Eprikashvili L, Zautashvili M, Kordzakhia T, Pirtskhalava N, Dzagania M, Rubashvili I, et al. Annals Agrarian Sci. 2016;14(2):67-71. DOI: 10.1016/J.AASCI.2016.05.004.
  2. [2] Chatzistathis T, Papaioannou E, Giannakoula A, Papadakis IE. Agronomy. 2021;11(1):109. DOI: 10.3390/AGRONOMY11010109.
  3. [3] Tzanakakis VA, Monokrousos N, Chatzistathis T. J Soil Sci Plant Nutrition. 2021;21(4):2791-802. DOI: 10.1007/s42729-021-00566-1.
  4. [4] Zhang J, Jiang X, Miao Q, Yu B, Xu L, Cui Z. Agronomy. 2019;9(2):48. DOI: 10.3390/agronomy9020048.
  5. [5] Kosiorek M, Wyszkowski M. Soil Sci Annual. 2017;68(3):149-54. DOI: 10.1515/ssa-2017-0018.
  6. [6] Głąb T, Gondek K, Mierzwa-Hersztek M. Scientific Reports. 2021;11(1):6998. DOI: 10.1038/S41598-021-86446-1.
  7. [7] FAO-ITPS. Status of the World’s Soil Resources - Main Report. Food and Agriculture Organization of the United Nations and Intergovernmental Technical Panel on Soils. Rome, Italy: 2015. ISBN: 9789251090046. Available from: https://www.fao.org/3/i5199e/i5199e.pdf.
  8. [8] Pal DK. Organic Carbon Sequestration and Ecosystem Service of Indian Tropical Soils. Ecosystem Services and Tropical Soils of India. Cham: Springer International Publishing; 2019. DOI: 10.1007/978-3-030-22711-1_3.
  9. [9] Paramashivam D, Clough TJ, Carlton A, Gough K, Dickinson N, Horswell J, et al. Sci Total Environ. 2016;543:601-8. DOI: 10.1016/j.scitotenv.2015.11.075.
  10. [10] Król-Domańska K, Smolińska B. Biotechnol Food Sci. 2012;76(1):51-8. DOI: 10.34658/bfs.2012.76.1.51-58.
  11. [11] Rehman MZU, Khalid H, Akmal F, Ali S, Rizwan M, Qayyum MF, et al. Environ Pollut. 2017;227:560-8. DOI: 10.1016/j.envpol.2017.05.003.
  12. [12] Tahir MM, Khurshid M, Khan MZ, Abbasi MK, Kazmi MH. Pedosphere. 2011;21(1):124-31. DOI: 10.1016/S1002-0160(10)60087-2.
  13. [13] Ratanaprommanee C, Chinachanta K, Chaiwan F, Shutsrirung A. Asia-Pacific J Sci Technol. 2016;22(4). Available from: https://so01.tci-thaijo.org/index.php/APST/article/view/107637.
  14. [14] Manzoni S, Porporato A. Soil Biol Biochem. 2009;41(7):1355-79. DOI: 10.1016/j.soilbio.2009.02.031.
  15. [15] Cao X, Reichel R, Wissel H, Kummer S, Brüggemann N. J Soil Sci Plant Nutrition. 2022;22(2):1277-89. DOI: 10.1007/s42729-021-00730-7.
  16. [16] Sarıyıldız T. Turkish J Agricult - Food Sci Technol. 2020;8(8):1763-72. DOI: 10.24925/turjaf.v8i8.1763-1772.3504.
  17. [17] Jarosz R, Szerement J, Gondek K, Mierzwa-Hersztek M. Catena. 2022;213:106125. DOI: 10.1016/j.catena.2022.106125.
  18. [18] Szerement J, Szatanik-Kloc A, Jarosz R, Bajda T, Mierzwa-Hersztek M. J Cleaner Prod. 2021;311:127461. DOI: 10.1016/j.jclepro.2021.127461.
  19. [19] Lahori AH, Mierzwa-Hersztek M, Demiraj E, Sajjad RU, Ali I, Shehnaz H, et al. Chemosphere. 2020;250:126317. DOI: 10.1016/j.chemosphere.2020.126317.
  20. [20] Yi N, Wu Y, Fan L, Hu S. Polish J Environ Stud. 2019;28(3):1461-8. DOI: 10.15244/pjoes/89577.
  21. [21] Franus M, Wdowin M, Bandura L, Franus W. Fresenius Environ Bull. 2015;24(3A):854-66. Available from: https://www.researchgate.net/publication/273482441_Removal_of_environmental_pollutions_using_zeolites_from_fly_ash_A_review#fullTextFileContent.
  22. [22] Belviso C. Processes. 2020;8(7):820. DOI: 10.3390/pr8070820.
  23. [23] Yamaguchi N, Hikono A, Saito T. J Environ Radioactiv. 2019;203:18-24. DOI: 10.1016/j.jenvrad.2019.02.011.
  24. [24] Bansiwal AK, Rayalu SS, Labhasetwar NK, Juwarkar AA, Devotta S. J Agricult Food Chem. 2006;54(13):4773-9. DOI: 10.1021/jf060034b.
  25. [25] Sun Q, Ruan Y, Chen P, Wang S, Liu X, Lian B. Acta Geochim. 2019;38(3):430-9. DOI: 10.1007/s11631-019-00320-6.
  26. [26] Najafi-Ghiri M. Soil Water Res. 2014;9(1):31-7. DOI: 10.17221/72/2012-swr.
  27. [27] Johnson CD, Worrall F. Water Res. 2007;41(10):2229-35. DOI: 10.1016/j.watres.2007.01.047.
  28. [28] Wolny-Koładka K, Jarosz R, Marcińska-Mazur L, Lošák T, Mierzwa-Hersztek M. Int Agrophys. 2022;36(2):131-8. DOI: 10.31545/intagr/148101.
  29. [29] Wolny-Koładka K, Jarosz R, Juda M, Mierzwa-Hersztek M. Sustainability. 2022;14(22):15004. DOI: 10.3390/su142215004.
  30. [30] Amlinger F, Pollak M, Favoino E. Heavy metals and organic compounds from wastes used as organic fertilisers - Final Report. 2004. Available from: https://ec.europa.eu/environment/pdf/waste/compost/hm_annex2.pdf (accessed 18.09.2023).
  31. [31] Council Directive 86/278/EEC. Off J Europ Union. 1986;15(1):265-74. Available from: https://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:01986L0278-20220101.
  32. [32] Finland Ministry of the Environment. Government Decree on the Assessment of Soil Contamination and Remediation Needs. 2007:6. Available from: https://www.finlex.fi/en/laki/kaannokset/2007/en20070214.pdf.
  33. [33] Mandiringana OT, Mnkeni PNS, Mkile Z, Van Averbeke W, Van Ranst E, Verplancke H. Communications Soil Sci Plant Anal. 2005;36(17-18):2431-46. DOI: 10.1080/00103620500253514.
  34. [34] Ravikumar P, Somashekar RK. Proc Int Acad Ecol Environ Sci. 2013;3(4):330-43. Available from: http://www.iaees.org/publications/journals/piaees/articles/2013-3(4)/evaluation-of-nutrient-index-using-carbon-P-K.pdf.
  35. [35] Arrouays D, Antoni V, Bardy M, Bispo A, Brossard M, Jolivet C, et al. Innovations Agronomiques. 2012;21:1-11. Available from: https://hal.inrae.fr/hal-02650568/document.
  36. [36] Patil PL, Kuligod VB, Gundlur SS, Katti J, Nagaral IN, Shikrashetti P, et al. J Indian Soc Soil Sci. 2016;64(4):381-90. DOI: 10.5958/0974-0228.2016.00050.5.
  37. [37] Kabata-Pendias A, Motowicka-Terelak T, Piotrowska M, Terelak H, Witek T. Puławy, IUNG-PIB, 1993;(53):1-20. Available from: http://karnet.up.wroc.pl/~kabala/Wytyczne_IUNG.pdf.
  38. [38] WRB IWG. World Reference Base for Soil Resources. International soil classification system for naming soils and creating legends for soil maps. 4th ed. Vienna, Austria: International Union of Soil Sciences; 2022. Available from: https://www.isric.org/sites/default/files/WRB_fourth_edition_2022-12-18.pdf.
  39. [39] IUNG. 2020. Available from: https://www.gios.gov.pl/images/dokumenty/pms/monitoring_jakosci_gleb/raport_chemizm_gleb_2022.pdf.
  40. [40] Smucker AJM, McBurney SL, Srivastava AK. Agron J. 1982;74(3):500-3. DOI: 10.2134/agronj1982.00021962007400030023x.
  41. [41] Bauhus J, Messier C. Agron J. 1999;91(1):142-7. DOI: 10.2134/agronj1999.00021962009100010022x.
  42. [42] Głąb T, Gondek K, Mierzwa-Hersztek M. Agronomy. 2020;10(10):1455. DOI: 10.3390/agronomy10101455.
  43. [43] Oleszczuk N, Castro JT, da Silva MM, Korn M das GA, Welz B, Vale MGR. Talanta. 2007;73(5):862-9. DOI: 10.1016/J.TALANTA.2007.05.005.
  44. [44] Szatanik-Kloc A, Szerement J, Adamczuk A, Józefaciuk G. Materials. 2021;14(10):1-18. DOI: 10.3390/ma14102617.
  45. [45] Li Y, Xia G, Wu Q, Chen W, Lin W, Zhang Z, et al. Geoderma. 2022;405:115397. DOI: 10.1016/j.geoderma.2021.115397.
  46. [46] Mondal M, Biswas B, Garai S, Sarkar S, Banerjee H, Brahmachari K, et al. Agronomy. 2021;11(3):448. DOI: 10.3390/agronomy11030448.
  47. [47] Sepaskhah AR, Barzegar M. Agricult Water Manage. 2010;98(1):38-44. DOI: 10.1016/j.agwat.2010.07.013.
  48. [48] Chen T, Xia G, Wu Q, Zheng J, Jin Y, Sun D, et al. Crop Sci. 2017;57(5):2777-87. DOI: 10.2135/cropsci2016.04.0228.
  49. [49] Malekian R, Abedi-Koupai J, Eslamian SS. J Hazard Materials. 2011;185(2-3):970-6. DOI: 10.1016/j.jhazmat.2010.09.114.
  50. [50] Tsintskaladze G, Eprikashvili L, Mumladze N, Gabunia V, Sharashenidze T, Zautashvili M, et al. Annals Agrarian Sci. 2017;15(3):365-9. DOI: 10.1016/j.aasci.2017.07.006.
  51. [51] Ozbahce A, Tari AF, Gönülal E, Simsekli N, Padem H. Archives Agronomy Soil Sci. 2015;61(5):615-26. DOI: 10.1080/03650340.2014.946021.
  52. [52] Głąb T, Gondek K, Marcińska-Mazur L, Jarosz R, Mierzwa-Hersztek M. J Environ Manage. 2023;344:118628. DOI: 10.1016/j.jenvman.2023.118628.
  53. [53] Cairo PC, de Armas JM, Artiles PT, Martin BD, Carrazana RJ, Lopez OR. Australian J Crop Sci. 2017;11(6):733-8. DOI: 10.21475/ajcs.17.11.06.p501.
  54. [54] Wu Q, Xia G, Chen T, Zheng J, Bu F, Chi D. Communications Soil Sci Plant Anal. 2016;47(18):2103-14. DOI: 10.1080/00103624.2016.1228943.
  55. [55] Méndez Argüello B, Vera Reyes I, Cárdenas Flores A, De los Santos Villarreal G, Ibarra Jiménez L, Lira Saldivar R. Nova Scientia. 2018;10(21):45-60. DOI: 10.21640/ns.v10i21.1413.
  56. [56] Prisa D. Int J Eng Sci. 2019;8:10-4. DOI: 10.9790/1813-0805013841.
  57. [57] Fageria NK, Moreira A. Adv Agronomy. 2011;111:251-331. DOI: 10.1016/B978-0-12-385531-2.00004-9.
  58. [58] Głąb T. Soil Tillage Res. 2013;134:163-71. DOI: 10.1016/j.still.2013.08.004.
  59. [59] McCarthy MC, Enquist BJ. Functional Ecol. 2007;21(4):713-20. DOI: 10.1111/j.1365-2435.2007.01276.x.
DOI: https://doi.org/10.2478/eces-2024-0006 | Journal eISSN: 2084-4549 | Journal ISSN: 1898-6196
Language: English
Page range: 75 - 87
Published on: Apr 10, 2024
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2024 Tomasz Głąb, Renata Jarosz, Krzysztof Gondek, Monika Mierzwa-Hersztek, published by Society of Ecological Chemistry and Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.