Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2024, Cilt: 52 Sayı: 3, 147 - 159, 01.07.2024
https://doi.org/10.15671/hjbc.1407438

Öz

Proje Numarası

-

Kaynakça

  • H. Mottaghi, Z. Mohammadi, M. Abbasi, N. Tahouni, M. H. Panjeshahi, Experimental investigation of crude oil removal from water using polymer adsorbent, J. Water Process. Eng., 40 (2021) 101959 2021.
  • I. A. El-Gheriany, F. A. El Saqa, A. A. E. R. Amer, M. Hussein, Oil spill sorption capacity of raw and thermally modified orange peel waste, Alex. Eng. J., 59 (2020) 925-932.
  • H. H. Sokker, N. M. El-Sawy, M. A. Hassan, B. E. El-Anadouli, Adsorption of crude oil from aqueous solution by hydrogel of chitosan-based polyacrylamide prepared by radiation induced graft polymerization, J. Hazard. Mater., 190 (2011) 359-365.
  • L. Gao, Y. Su, L. Yang, J. Li, R. Bao, L. Peng, Sorption behaviors of petroleum on micro-sized polyethylene aging for different time in seawater, Sci. Total Environ., 808 (2022) 152070.
  • R. Gurav, S. K. Bhatia, T. R. Choi, Y. K. Choi, H. J. Kim, H. S. Song, S. L. Park, H. S. Lee, S. M. Lee, K. Y. Choi, Y. H. Yang, Adsorptive removal of crude petroleum oil from water using floating pinewood biochar decorated with coconut oil-derived fatty acids, Sci. Total Environ., 781 (2021) 146636.
  • K. AlAmeri, A. Giwa, L. Yousef, A. Alraeesi, H. Taher, Sorption and removal of crude oil spills from seawater using peat-derived biochar: An optimization study, J. Environ. Manage., 250 (2019) 109465.
  • B. Zhang, S. Yu, Y. Zhu, Y. Shen, X. Gao, W. Shi, J. H. Tay, Adsorption mechanisms of crude oil onto polytetrafluoroethylene membrane: Kinetics and isotherm, and strategies for adsorption fouling control, Sep. Purif. Technol., 235 (2020) 116212.
  • F. M. O. Medina, M. B. Aguiar, M. E. Parolo, M. J. Avena, Insights of competitive adsorption on activated carbon of binary caffeine and diclofenac solutions, J. Environ. Manage., 278 (2021) 111523.
  • C. O. Asadu, E. C. Anthony, O. C. Elijah, I. S. Ike, O. E. Onoghwarite, U. E. Okwudili, Development of an adsorbent for the remediation of crude oil polluted water using stearic acid grafted coconut husk (Cocos nucifera) composite, Appl. Surf. Sci. Adv., 6 (2021) 100179.
  • C. O. Asadu, O. C. Elijah, N. O. Ogbodo, E. C. Anthony, C. T. Onyejiuwa, M. I. Onoh, I. S. Ike, O. E. Onoghwarite, A. S. Chukwuebuka, Treatment of crude oil polluted water using stearic acid grafted mango seed shell (Mangifera indica) composite, Current Research in Green and Sustainable Chemistry, 4 (2021) 100169.
  • C. O. Asadu, B. N. Ekwueme, C. E. Onu, T. O. Onah, I. S. Ike, C. A. Ezema, Modelling and optimization of crude oil removal from surface water via organic acid functionalized biomass using machine learning approach,” Arab. J. Chem., 15 (2022)104025.
  • A. K. Singh, K. Ketan, J. K. Singh, Simple and green fabrication of recyclable magnetic highly hydrophobic sorbents derived from waste orange peels for removal of oil and organic solvents from water surface, J. Environ. Chem. Eng., 5 (2017) 5250-5259.
  • B. A. Olufemi, F. Otolorin, Comparative adsorption of crude oil using mango (Mangnifera indica) shell and mango shell activated carbon, Environ. Eng. Res., 22 (2017) 384-392.
  • Y. Arslan, E. Kendüzler, B. Kabak, K. Demir, F. Tomul, Determination of adsorption characteristics of orange peel activated with potassium carbonate for chromium (III) removal, Journal of the Turkish Chemical Society Section A: Chemistry, 4 (2017) 51-64.15.
  • D. Peng, F. Ouyang, X. Liang, X. Guo, Z. Dang, L. Zheng, Sorption of crude oil by enzyme-modified corn stalk vs. chemically treated corn stalk, J. M. Liq., 255 (2018) 324-332.
  • A. G. Adeniyi, J. O. Ighalo, Biosorption of pollutants by plant leaves: an empirical review, J. Environ. Chem. Eng., 7 (2019) 103100.
  • L. Zafar, A. Khan, U. Kamran, S. J. Park, H. N. Bhatti, Eucalyptus (camaldulensis) bark-based composites for efficient Basic Blue 41 dye biosorption from aqueous stream: Kinetics, isothermal, and thermodynamic studies, Surf. Interfaces, 31 (2022) 101897.
  • R. Mallampati, L. Xuanjun, A. Adin, S. Valiyaveettil, Fruit peels as efficient renewable adsorbents for removal of dissolved heavy metals and dyes from water, ACS Sustain. Chem. Eng., 3 (2015) 1117-1124.
  • O. A. Galblaub, I. G. Shaykhiev, S. V. Stepanova, G. R. Timirbaeva, Oil spill cleanup of water surface by plant-based sorbents: Russian practices, Process Saf. Environ., 101 (2016) 88-92.
  • R. Behnood, B. Anvaripour, N. Jaafarzade Haghighi Fard, M. Farasati, Application of natural sorbents in crude oil adsorption, Iran. J. Oil Gas Sci. Technol., 2 no (2013) 1-11.21.
  • M. Villen-Guzman, D. Gutierrez-Pinilla, C. Gomez-Lahoz, C. Vereda-Alonso, J. M. Rodriguez-Maroto, B.Arhoun, Optimization of Ni (II) biosorption from aqueous solution on modified lemon peel, Environ. Res., 179 (2019) 108849.
  • S. Rangabhashiyam, S. Lata, P. Balasubramanian, Biosorption characteristics of methylene blue and malachite green from simulated wastewater onto Carica papaya wood biosorbent, Surf. Interfaces, 10 (2018) 197-215.
  • B. Sarangi, S. P. Mishra, A glance at the potential of Artocarpus genus fruit peels and its derivatives as adsorbent, Bioresour. Technol. Rep., (2023) 101363.
  • I. Al Zubaidi, M. Al Zubaidi, M. Tajik, M. Al Zubaidi, M. Al Mutairi, M. Sheikh, Y. Chen, M. K. Al-Yasiri, A. Alsudays, Pomegranate peels powder for the remediation of oil polluted water from waste lubricating oil, in Conf. International Conference of Fluid Flow, Heat and Mass Transfer, Canada, 2018, 0-37.
  • Y. Arslan, E. Kendüzler, B. Kabak, K. Demir, F. Tomul, Determination of adsorption characteristics of orange peel activated with potassium carbonate for chromium (III) removal, Journal of the Turkish Chemical Society Section A: Chemistry, 4 (2017) 51-64.
  • G. A. El-Din, A. A. Amer, G. Malsh, M. Hussein, Study on the use of banana peels for oil spill removal, Alex. Eng. J., 57 (2018) 2061-2068.
  • F. K. Al-Zuhairi, R. A. Azeez, S. S. Mahdi, W. A. Kadhim, Removal oil from produced water by using adsorption method with adsorbent a Papyrus reeds, Eng. Technol., 37 (2019) 157-165.
  • M. I. Ejimofor, I. G. Ezemagu, V. I. Ugonabo, P. C. Nnaji, V. C. Anadebe, C.Diyoke, M. C. Menkiti, Adsorption kinetics, mechanistic, isotherm and thermodynamics study of petroleum produced water coagulation using novel Egeria radiate shell extract (ERSE), J. Indian Chem. Soc., 99 (2022) 100357.
  • 29. V. Saruchi Kumar, A. A. Ghfar, S.Pandey, Oil spill remediation by grafted natural polysaccharide gum tragacanth: its kinetics and isotherms studies, Biomass Convers. Biorefin., 13 (2023) 383-392.
  • N. O. Ogbodo, C. O. Asadu, C. A. Ezema, M. I. Onoh, O. C. Elijah, I. S. Ike, O. E. Onoghwarite, Preparation and Characterization of activated carbon from agricultural waste (Musa-paradisiaca peels) for the remediation of crude oil contaminated water, Journal of Hazardous Materials Advances, 2 (2021) 100010.
  • U. C. Ugochukwu, D. A. Manning, C. I. Fialips, Effect of interlayer cations of montmorillonite on the biodegradation and adsorption of crude oil polycyclic aromatic compounds, J. Environ. Manage., 142 (2014) 30-35.
  • A. Partovinia, A. A. Soorki, M. Koosha, Synergistic adsorption and biodegradation of heavy crude oil by a novel hybrid matrix containing immobilized Bacillus licheniformis: Aqueous phase and soil bioremediation, Ecotox. Environ. Safe., 222 (2021) 112505.
  • I. Ali, M. Asim, T. A. Khan, Lowcost adsorbents for the removal of organic pollutants from wastewater, J. Environ. Manage., 113 (2012) 170-183.
  • H. P.de Sa Costa, M. G. C.da Silva, M. G. A. Vieira, Biosorption of aluminum ions from aqueous solutions using non-conventional low-cost materials: A review, J. Water Process. Eng., 40 (2021) 101925.
  • E. C. Emenike, J. Adeleke, K. O. Iwuozor, S. Ogunniyi, C. A. Adeyanju, V. T. Amusa, H. K. Okoro, A. G. Adeniyi, Adsorption of crude oil from aqueous solution: A review, J. Water Process. Eng., 50 (2022) 103330.
  • H. S. Kusuma, U. O. Aigbe, K. E. Ukhurebor, R. B. Onyancha, B. Okundaye, I. Simbi, O. M. Ama, H. Darmokoesoemo, B. A. Widyaningrum, O. A. Osibote, V. A. Balogun, Biosorption of Methylene blue using clove leaves waste modified with sodium hydroxide, Results in Chemistry, 5 (2023) 100778.
  • S. Songsaeng, P. Thamyongkit, S. Poompradub, Natural rubber/reduced-graphene oxide composite materials: Morphological and oil adsorption properties for treatment of oil spills, J. Adv. Res., 20 (2019) 79-89.
  • S. Dey, S. R. Basha, G. V. Babu, T. Nagendra, “Characteristic and biosorption capacities of orange peels biosorbents for removal of ammonia and nitrate from contaminated water, Clean. Mater., 1 (2021) 100001.
  • N. Feng, X. Guo, S. Liang, Y. Zhu, J. Liu, Biosorption of heavy metals from aqueous solutions by chemically modified orange peel, J. Hazard. Mater., 185 (2011) 49-54.
  • V. Lugo-Lugo, C. Barrera-Díaz, F. Ureña-Núñez, B. Bilyeu, I. Linares-Hernández, Biosorption of Cr (III) and Fe (III) in single and binary systems onto pretreated orange peel, J. Environ. Manage., 112 (2012) 120-127.
  • I. S. Ike, C. O. Asadu, C. A. Ezema, T. O. Onah, N. O. Ogbodo, E. U. Godwin-Nwakwasi, C. E. Onu, ANN-GA, ANFIS-GA and Thermodynamics base modeling of crude oil removal from surface water using organic acid grafted banana pseudo stem fiber, Appl. Surf. Sci. Adv., 9 (2022) 100259.
  • J. Liu, C. Zhang, B. Tao, J. Beckerman, Revealing the roles of biomass components in the biosorption of heavy metals in wastewater by various chemically treated hemp stalks, J. Taiwan Inst. Chem. E., 143 (2023) 104701.
  • K. Rouibah, H. Ferkous, A. Delimi, T. Himeur, M. Benamira, M. Zighed, A. S. Darwish, T. Lemaoui, K.K. Yadav, J. K. Bhutto, A. Ahmad, S. Chaiprapat, Y. Benguerba, Biosorption of zinc (II) from synthetic wastewater by using Inula Viscosa leaves as a low-cost biosorbent: Experimental and molecular modeling studies, J. Environ. Manage., 326 (2023) 116742.
  • F. Deniz, S. D. Saygideger, Equilibrium, kinetic and thermodynamic studies of Acid Orange 52 dye biosorption by Paulownia tomentosa Steud. leaf powder as a low-cost natural biosorbent, Bioresource Technol., 101 (2010) 5137-5143.
  • V. Kumar, P. Vikas, R. Kumar, B. Kumar, M. Kaur, Low-cost natural polysaccharide and vinyl monomer based IPN for the removal of crude oil from water, J. Petrol. Sci. Eng., 141 (2016) pp. 1-8.
  • V. Saruchi, Kumar, Separation of crude oil from water using chitosan-based hydrogel, Cellulose, 26 (2019) 6229-6239.
  • M. Puccini, D. Licursi, E. Stefanelli, S. Vitolo, R A. N. N. A. Aspollı Gallettı, H. J. Heeres, Levulinic acid from orange peel waste by hydrothermal carbonization (HTC), Chem. Eng. Trans., 50 (2016) 223-228.
  • M. Asemani, A. R. Rabbani, Detailed FTIR spectroscopy characterization of crude oil extracted asphaltenes: Curve resolve of overlapping bands, J. Petrol. Sci. Eng., 185 (2020) 106618.
  • U. Michael-Igolima, S. J. Abbey, A. O. Ifelebuegu, E. U. Eyo, Modified Orange Peel Waste as a Sustainable Material for Adsorption of Contaminants, Materials, 16 (2023) 1092.
  • N. H. Avcioglu, M. Birben, I. S. Bilkay, Optimization and physicochemical characterization of enhanced microbial cellulose production with a new Kombucha consortium, Proc. Biochem., 108 (2021) 60-68.

Crude Oil Biosorption with Citrus sinensis Peels

Yıl 2024, Cilt: 52 Sayı: 3, 147 - 159, 01.07.2024
https://doi.org/10.15671/hjbc.1407438

Öz

Kurutulmuş Cydonia oblonga, Persea americana, Malus domestica ve Citrus sinensis kabukları, ham petrolün uzaklaştırılmasında düşük maliyetli biyosorbanlar olarak kullanıldı. Bunlardan Citrus sinensis, %83.81'lik giderim oranı ile en etkili biyosorban olarak seçildi ve pH (4.0-10.0), adsorbent dozu (0.1-0.5 g/100 mL), ham petrol konsantrasyonu (0.25-2.5%) gibi adsorpsiyon parametrelerinin etkisi de araştırıldı. Kurutulmuş C. sinensis kabukları kullanılarak ham petrol uzaklaştırma için en yüksek uzaklaştırma oranı (%94.37, qe=1.81), pH=7.0, 0.25g/50 mL adsorbent dozu ve %1 ham petrol konsantrasyonu olarak bulundu. Ve kullanılmış kabuklar ile 6. döngünün sonunda %25.91 uzaklaştırma oranı (qe=0.49) gözlendi. Bu adsorpsiyonun kinetiği, Pseudo-ikinci derece modeli ile açıklandı (R2=0.8167) ve denge modelleme, Langmuir izotermi ile uyumlu bulundu (R2=0.9403). FTIR ile belirlenen ham petrol adsorpsiyonuna ve kurutulmuş kabukların lignoselülozik yapısındaki selüloz ve hemiselulozun karakteristik bantları belirlendi. Termogravimetrik profil, 1000˚C'de bile %17.5'lik bir kalıntı ağırlığı ile yüksek sıcaklığa karşı direnç gösterdi. Sonuç olarak, yaygın bir evsel ve endüstriyel gıda atığı olan C. sinensis kabukları, ham petrol uzaklaştırmada düşük maliyetli, kolayca bulunabilir, biyobozunur ve çevre dostu bir adsorban olarak kullanılabilirliği gösterildi.

Etik Beyan

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Destekleyen Kurum

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Proje Numarası

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Teşekkür

The authors would like to thank all staff in the Hacettepe University Biotechnology Laboratory for supporting and contributing to this work.

Kaynakça

  • H. Mottaghi, Z. Mohammadi, M. Abbasi, N. Tahouni, M. H. Panjeshahi, Experimental investigation of crude oil removal from water using polymer adsorbent, J. Water Process. Eng., 40 (2021) 101959 2021.
  • I. A. El-Gheriany, F. A. El Saqa, A. A. E. R. Amer, M. Hussein, Oil spill sorption capacity of raw and thermally modified orange peel waste, Alex. Eng. J., 59 (2020) 925-932.
  • H. H. Sokker, N. M. El-Sawy, M. A. Hassan, B. E. El-Anadouli, Adsorption of crude oil from aqueous solution by hydrogel of chitosan-based polyacrylamide prepared by radiation induced graft polymerization, J. Hazard. Mater., 190 (2011) 359-365.
  • L. Gao, Y. Su, L. Yang, J. Li, R. Bao, L. Peng, Sorption behaviors of petroleum on micro-sized polyethylene aging for different time in seawater, Sci. Total Environ., 808 (2022) 152070.
  • R. Gurav, S. K. Bhatia, T. R. Choi, Y. K. Choi, H. J. Kim, H. S. Song, S. L. Park, H. S. Lee, S. M. Lee, K. Y. Choi, Y. H. Yang, Adsorptive removal of crude petroleum oil from water using floating pinewood biochar decorated with coconut oil-derived fatty acids, Sci. Total Environ., 781 (2021) 146636.
  • K. AlAmeri, A. Giwa, L. Yousef, A. Alraeesi, H. Taher, Sorption and removal of crude oil spills from seawater using peat-derived biochar: An optimization study, J. Environ. Manage., 250 (2019) 109465.
  • B. Zhang, S. Yu, Y. Zhu, Y. Shen, X. Gao, W. Shi, J. H. Tay, Adsorption mechanisms of crude oil onto polytetrafluoroethylene membrane: Kinetics and isotherm, and strategies for adsorption fouling control, Sep. Purif. Technol., 235 (2020) 116212.
  • F. M. O. Medina, M. B. Aguiar, M. E. Parolo, M. J. Avena, Insights of competitive adsorption on activated carbon of binary caffeine and diclofenac solutions, J. Environ. Manage., 278 (2021) 111523.
  • C. O. Asadu, E. C. Anthony, O. C. Elijah, I. S. Ike, O. E. Onoghwarite, U. E. Okwudili, Development of an adsorbent for the remediation of crude oil polluted water using stearic acid grafted coconut husk (Cocos nucifera) composite, Appl. Surf. Sci. Adv., 6 (2021) 100179.
  • C. O. Asadu, O. C. Elijah, N. O. Ogbodo, E. C. Anthony, C. T. Onyejiuwa, M. I. Onoh, I. S. Ike, O. E. Onoghwarite, A. S. Chukwuebuka, Treatment of crude oil polluted water using stearic acid grafted mango seed shell (Mangifera indica) composite, Current Research in Green and Sustainable Chemistry, 4 (2021) 100169.
  • C. O. Asadu, B. N. Ekwueme, C. E. Onu, T. O. Onah, I. S. Ike, C. A. Ezema, Modelling and optimization of crude oil removal from surface water via organic acid functionalized biomass using machine learning approach,” Arab. J. Chem., 15 (2022)104025.
  • A. K. Singh, K. Ketan, J. K. Singh, Simple and green fabrication of recyclable magnetic highly hydrophobic sorbents derived from waste orange peels for removal of oil and organic solvents from water surface, J. Environ. Chem. Eng., 5 (2017) 5250-5259.
  • B. A. Olufemi, F. Otolorin, Comparative adsorption of crude oil using mango (Mangnifera indica) shell and mango shell activated carbon, Environ. Eng. Res., 22 (2017) 384-392.
  • Y. Arslan, E. Kendüzler, B. Kabak, K. Demir, F. Tomul, Determination of adsorption characteristics of orange peel activated with potassium carbonate for chromium (III) removal, Journal of the Turkish Chemical Society Section A: Chemistry, 4 (2017) 51-64.15.
  • D. Peng, F. Ouyang, X. Liang, X. Guo, Z. Dang, L. Zheng, Sorption of crude oil by enzyme-modified corn stalk vs. chemically treated corn stalk, J. M. Liq., 255 (2018) 324-332.
  • A. G. Adeniyi, J. O. Ighalo, Biosorption of pollutants by plant leaves: an empirical review, J. Environ. Chem. Eng., 7 (2019) 103100.
  • L. Zafar, A. Khan, U. Kamran, S. J. Park, H. N. Bhatti, Eucalyptus (camaldulensis) bark-based composites for efficient Basic Blue 41 dye biosorption from aqueous stream: Kinetics, isothermal, and thermodynamic studies, Surf. Interfaces, 31 (2022) 101897.
  • R. Mallampati, L. Xuanjun, A. Adin, S. Valiyaveettil, Fruit peels as efficient renewable adsorbents for removal of dissolved heavy metals and dyes from water, ACS Sustain. Chem. Eng., 3 (2015) 1117-1124.
  • O. A. Galblaub, I. G. Shaykhiev, S. V. Stepanova, G. R. Timirbaeva, Oil spill cleanup of water surface by plant-based sorbents: Russian practices, Process Saf. Environ., 101 (2016) 88-92.
  • R. Behnood, B. Anvaripour, N. Jaafarzade Haghighi Fard, M. Farasati, Application of natural sorbents in crude oil adsorption, Iran. J. Oil Gas Sci. Technol., 2 no (2013) 1-11.21.
  • M. Villen-Guzman, D. Gutierrez-Pinilla, C. Gomez-Lahoz, C. Vereda-Alonso, J. M. Rodriguez-Maroto, B.Arhoun, Optimization of Ni (II) biosorption from aqueous solution on modified lemon peel, Environ. Res., 179 (2019) 108849.
  • S. Rangabhashiyam, S. Lata, P. Balasubramanian, Biosorption characteristics of methylene blue and malachite green from simulated wastewater onto Carica papaya wood biosorbent, Surf. Interfaces, 10 (2018) 197-215.
  • B. Sarangi, S. P. Mishra, A glance at the potential of Artocarpus genus fruit peels and its derivatives as adsorbent, Bioresour. Technol. Rep., (2023) 101363.
  • I. Al Zubaidi, M. Al Zubaidi, M. Tajik, M. Al Zubaidi, M. Al Mutairi, M. Sheikh, Y. Chen, M. K. Al-Yasiri, A. Alsudays, Pomegranate peels powder for the remediation of oil polluted water from waste lubricating oil, in Conf. International Conference of Fluid Flow, Heat and Mass Transfer, Canada, 2018, 0-37.
  • Y. Arslan, E. Kendüzler, B. Kabak, K. Demir, F. Tomul, Determination of adsorption characteristics of orange peel activated with potassium carbonate for chromium (III) removal, Journal of the Turkish Chemical Society Section A: Chemistry, 4 (2017) 51-64.
  • G. A. El-Din, A. A. Amer, G. Malsh, M. Hussein, Study on the use of banana peels for oil spill removal, Alex. Eng. J., 57 (2018) 2061-2068.
  • F. K. Al-Zuhairi, R. A. Azeez, S. S. Mahdi, W. A. Kadhim, Removal oil from produced water by using adsorption method with adsorbent a Papyrus reeds, Eng. Technol., 37 (2019) 157-165.
  • M. I. Ejimofor, I. G. Ezemagu, V. I. Ugonabo, P. C. Nnaji, V. C. Anadebe, C.Diyoke, M. C. Menkiti, Adsorption kinetics, mechanistic, isotherm and thermodynamics study of petroleum produced water coagulation using novel Egeria radiate shell extract (ERSE), J. Indian Chem. Soc., 99 (2022) 100357.
  • 29. V. Saruchi Kumar, A. A. Ghfar, S.Pandey, Oil spill remediation by grafted natural polysaccharide gum tragacanth: its kinetics and isotherms studies, Biomass Convers. Biorefin., 13 (2023) 383-392.
  • N. O. Ogbodo, C. O. Asadu, C. A. Ezema, M. I. Onoh, O. C. Elijah, I. S. Ike, O. E. Onoghwarite, Preparation and Characterization of activated carbon from agricultural waste (Musa-paradisiaca peels) for the remediation of crude oil contaminated water, Journal of Hazardous Materials Advances, 2 (2021) 100010.
  • U. C. Ugochukwu, D. A. Manning, C. I. Fialips, Effect of interlayer cations of montmorillonite on the biodegradation and adsorption of crude oil polycyclic aromatic compounds, J. Environ. Manage., 142 (2014) 30-35.
  • A. Partovinia, A. A. Soorki, M. Koosha, Synergistic adsorption and biodegradation of heavy crude oil by a novel hybrid matrix containing immobilized Bacillus licheniformis: Aqueous phase and soil bioremediation, Ecotox. Environ. Safe., 222 (2021) 112505.
  • I. Ali, M. Asim, T. A. Khan, Lowcost adsorbents for the removal of organic pollutants from wastewater, J. Environ. Manage., 113 (2012) 170-183.
  • H. P.de Sa Costa, M. G. C.da Silva, M. G. A. Vieira, Biosorption of aluminum ions from aqueous solutions using non-conventional low-cost materials: A review, J. Water Process. Eng., 40 (2021) 101925.
  • E. C. Emenike, J. Adeleke, K. O. Iwuozor, S. Ogunniyi, C. A. Adeyanju, V. T. Amusa, H. K. Okoro, A. G. Adeniyi, Adsorption of crude oil from aqueous solution: A review, J. Water Process. Eng., 50 (2022) 103330.
  • H. S. Kusuma, U. O. Aigbe, K. E. Ukhurebor, R. B. Onyancha, B. Okundaye, I. Simbi, O. M. Ama, H. Darmokoesoemo, B. A. Widyaningrum, O. A. Osibote, V. A. Balogun, Biosorption of Methylene blue using clove leaves waste modified with sodium hydroxide, Results in Chemistry, 5 (2023) 100778.
  • S. Songsaeng, P. Thamyongkit, S. Poompradub, Natural rubber/reduced-graphene oxide composite materials: Morphological and oil adsorption properties for treatment of oil spills, J. Adv. Res., 20 (2019) 79-89.
  • S. Dey, S. R. Basha, G. V. Babu, T. Nagendra, “Characteristic and biosorption capacities of orange peels biosorbents for removal of ammonia and nitrate from contaminated water, Clean. Mater., 1 (2021) 100001.
  • N. Feng, X. Guo, S. Liang, Y. Zhu, J. Liu, Biosorption of heavy metals from aqueous solutions by chemically modified orange peel, J. Hazard. Mater., 185 (2011) 49-54.
  • V. Lugo-Lugo, C. Barrera-Díaz, F. Ureña-Núñez, B. Bilyeu, I. Linares-Hernández, Biosorption of Cr (III) and Fe (III) in single and binary systems onto pretreated orange peel, J. Environ. Manage., 112 (2012) 120-127.
  • I. S. Ike, C. O. Asadu, C. A. Ezema, T. O. Onah, N. O. Ogbodo, E. U. Godwin-Nwakwasi, C. E. Onu, ANN-GA, ANFIS-GA and Thermodynamics base modeling of crude oil removal from surface water using organic acid grafted banana pseudo stem fiber, Appl. Surf. Sci. Adv., 9 (2022) 100259.
  • J. Liu, C. Zhang, B. Tao, J. Beckerman, Revealing the roles of biomass components in the biosorption of heavy metals in wastewater by various chemically treated hemp stalks, J. Taiwan Inst. Chem. E., 143 (2023) 104701.
  • K. Rouibah, H. Ferkous, A. Delimi, T. Himeur, M. Benamira, M. Zighed, A. S. Darwish, T. Lemaoui, K.K. Yadav, J. K. Bhutto, A. Ahmad, S. Chaiprapat, Y. Benguerba, Biosorption of zinc (II) from synthetic wastewater by using Inula Viscosa leaves as a low-cost biosorbent: Experimental and molecular modeling studies, J. Environ. Manage., 326 (2023) 116742.
  • F. Deniz, S. D. Saygideger, Equilibrium, kinetic and thermodynamic studies of Acid Orange 52 dye biosorption by Paulownia tomentosa Steud. leaf powder as a low-cost natural biosorbent, Bioresource Technol., 101 (2010) 5137-5143.
  • V. Kumar, P. Vikas, R. Kumar, B. Kumar, M. Kaur, Low-cost natural polysaccharide and vinyl monomer based IPN for the removal of crude oil from water, J. Petrol. Sci. Eng., 141 (2016) pp. 1-8.
  • V. Saruchi, Kumar, Separation of crude oil from water using chitosan-based hydrogel, Cellulose, 26 (2019) 6229-6239.
  • M. Puccini, D. Licursi, E. Stefanelli, S. Vitolo, R A. N. N. A. Aspollı Gallettı, H. J. Heeres, Levulinic acid from orange peel waste by hydrothermal carbonization (HTC), Chem. Eng. Trans., 50 (2016) 223-228.
  • M. Asemani, A. R. Rabbani, Detailed FTIR spectroscopy characterization of crude oil extracted asphaltenes: Curve resolve of overlapping bands, J. Petrol. Sci. Eng., 185 (2020) 106618.
  • U. Michael-Igolima, S. J. Abbey, A. O. Ifelebuegu, E. U. Eyo, Modified Orange Peel Waste as a Sustainable Material for Adsorption of Contaminants, Materials, 16 (2023) 1092.
  • N. H. Avcioglu, M. Birben, I. S. Bilkay, Optimization and physicochemical characterization of enhanced microbial cellulose production with a new Kombucha consortium, Proc. Biochem., 108 (2021) 60-68.
Toplam 50 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Biyokimya ve Hücre Biyolojisi (Diğer)
Bölüm Articles
Yazarlar

Nermin Hande Avcioglu 0000-0003-2243-5817

Sezen Bılen Ozyurek 0000-0002-5056-7051

Proje Numarası -
Yayımlanma Tarihi 1 Temmuz 2024
Gönderilme Tarihi 20 Aralık 2023
Kabul Tarihi 23 Ocak 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 52 Sayı: 3

Kaynak Göster

APA Avcioglu, N. H., & Bılen Ozyurek, S. (2024). Crude Oil Biosorption with Citrus sinensis Peels. Hacettepe Journal of Biology and Chemistry, 52(3), 147-159. https://doi.org/10.15671/hjbc.1407438
AMA Avcioglu NH, Bılen Ozyurek S. Crude Oil Biosorption with Citrus sinensis Peels. HJBC. Temmuz 2024;52(3):147-159. doi:10.15671/hjbc.1407438
Chicago Avcioglu, Nermin Hande, ve Sezen Bılen Ozyurek. “Crude Oil Biosorption With Citrus Sinensis Peels”. Hacettepe Journal of Biology and Chemistry 52, sy. 3 (Temmuz 2024): 147-59. https://doi.org/10.15671/hjbc.1407438.
EndNote Avcioglu NH, Bılen Ozyurek S (01 Temmuz 2024) Crude Oil Biosorption with Citrus sinensis Peels. Hacettepe Journal of Biology and Chemistry 52 3 147–159.
IEEE N. H. Avcioglu ve S. Bılen Ozyurek, “Crude Oil Biosorption with Citrus sinensis Peels”, HJBC, c. 52, sy. 3, ss. 147–159, 2024, doi: 10.15671/hjbc.1407438.
ISNAD Avcioglu, Nermin Hande - Bılen Ozyurek, Sezen. “Crude Oil Biosorption With Citrus Sinensis Peels”. Hacettepe Journal of Biology and Chemistry 52/3 (Temmuz 2024), 147-159. https://doi.org/10.15671/hjbc.1407438.
JAMA Avcioglu NH, Bılen Ozyurek S. Crude Oil Biosorption with Citrus sinensis Peels. HJBC. 2024;52:147–159.
MLA Avcioglu, Nermin Hande ve Sezen Bılen Ozyurek. “Crude Oil Biosorption With Citrus Sinensis Peels”. Hacettepe Journal of Biology and Chemistry, c. 52, sy. 3, 2024, ss. 147-59, doi:10.15671/hjbc.1407438.
Vancouver Avcioglu NH, Bılen Ozyurek S. Crude Oil Biosorption with Citrus sinensis Peels. HJBC. 2024;52(3):147-59.

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