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Journal of Multidisciplinary Applied Natural Science

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Scopus CiteScore 2024

4.8

Calculated on 05 May, 2025

SJR 2024

0.31

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Journal of Multidisciplinary Applied Natural Science

##plugins.themes.gdThemes.general.eIssn##: 2774-3047


Vol. 5 Nr. 2 (2025) Articles https://doi.org/10.47352/jmans.2774-3047.265

Bioremediation of Profenofos-Contaminated Soil using Bio-Slurry, Exogenous, and Indigenous Microorganism Formulation from Puntukdoro Farmland, Indonesia

Pujiati Pujiati Oktaviariesta Habibatus Sholikhah Sri Utami Fatimah Fatimah Rico Ramadhan Ni'matuzahroh Ni'matuzahroh

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Pujiati Pujiati

https://orcid.org/0000-0002-5839-1214
  • nimatuzahroh@fst.unair.ac.id
  • Doctoral Program of Mathematics and Natural Sciences, Universitas Airlangga, Surabaya-60115 (Indonesia); Department of Biology Education, Universitas PGRI Madiun, Madiun-63118 (Indonesia)
  • ##plugins.themes.gdThemes.author.noBiography##

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Oktaviariesta Habibatus Sholikhah

https://orcid.org/0009-0000-1632-6513
  • nimatuzahroh@fst.unair.ac.id
  • Department of Biology Education, Universitas PGRI Madiun, Madiun-63118 (Indonesia)
  • ##plugins.themes.gdThemes.author.noBiography##

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Sri Utami

https://orcid.org/0000-0003-3905-8560
  • nimatuzahroh@fst.unair.ac.id
  • Department of Biology Education, Universitas PGRI Madiun, Madiun-63118 (Indonesia)
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Fatimah Fatimah

https://orcid.org/0000-0002-0056-2690
  • nimatuzahroh@fst.unair.ac.id
  • Department of Biology, Universitas Airlangga, Surabaya-60115 (Indonesia); Division of Applied Microbiology And Bioresource Technology (AMBT), Universitas Airlangga, Surabaya-60115 (Indonesia)
  • ##plugins.themes.gdThemes.author.noBiography##

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Rico Ramadhan

https://orcid.org/0000-0002-2565-7944
  • nimatuzahroh@fst.unair.ac.id
  • Department of Chemistry, Universitas Airlangga, Surabaya-60115 (Indonesia); Division of Exploration and Synthesis of Bioactive Compounds (ESBC), Universitas Airlangga, Surabaya-60115 (Indonesia)
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Ni'matuzahroh Ni'matuzahroh

https://orcid.org/0000-0002-4631-1096
  • nimatuzahroh@fst.unair.ac.id
  • Department of Biology, Universitas Airlangga, Surabaya-60115 (Indonesia); Faculty of Advance Technology and Multidiscipline, Universitas Airlangga, Surabaya-60115 (Indonesia); Division of Applied Microbiology And Bioresource Technology (AMBT), Universitas Airlangga, Surabaya-60115 (Indonesia)
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##plugins.themes.gdThemes.publishedIn##: mai 28, 2025

[1]
P. Pujiati, O. H. Sholikhah, S. Utami, F. Fatimah, R. Ramadhan, și N. Ni’matuzahroh, „Bioremediation of Profenofos-Contaminated Soil using Bio-Slurry, Exogenous, and Indigenous Microorganism Formulation from Puntukdoro Farmland, Indonesia ”, J. Multidiscip. Appl. Nat. Sci., vol. 5, nr. 2, pp. 584–602, mai 2025.

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Rezumat

Pesticide residues in soil present significant environmental and health risks, especially in regions with heavy organophosphate used in vegetable farming. This study examines bioaugmentation, an eco-friendly method for degrading soil pesticide residues, utilizing both indigenous and exogenous microorganisms, as well as bio-slurry from biogas production. Puntukdoro Village, Magetan, Indonesia, generates a substantial quantity of bio-slurry waste, which presents a promising solution to local agricultural challenges, including low crop yields and soil degradation. Puntukdoro Village produces a significant amount of bio-slurry waste, which offers a promising solution to local agricultural issues, including poor crop yield and soil degradation. The study aims to identify and formulate microorganisms from Puntukdoro using bio-slurry and exogenous cellulolytic mold formulations. This involves extracting and characterizing indigenous bacteria, preparing external supplements, and conducting ex situ bioaugmentation with seven different treatments. Ten mold isolates, including Penicillium, Monilia, Aspergillus, and Trichoderma, and eight bacterial isolates, including Micrococcus, Pseudomonas, and Bacillus, were identified. Bioremediation assays showed that both indigenous and exogenous microorganisms improved soil quality and reduced pesticide levels. The most effective treatment, P7, with 10% bio-slurry, 10% biofostik, and 10% indigenous microorganisms applied for 28 d (W4), reduced profenofos from 4.718 to 0.000 mg/kg. In contrast, treatment P2W1, with 30% biofostik for 7 d, reduced profenofos by 0.293 mg/kg. These findings indicate that exogenous and indigenous microorganisms can effectively enhance profenofos bioremediation.

Referințe

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