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Review Articles

Performance of Bioremediation Strategy in Waste Lubricating Oil Pollutants: A Review

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Pages 360-373 | Received 16 May 2023, Accepted 01 Aug 2023, Published online: 24 Aug 2023

References

  • Adelaja O, Keshavarz T, Kyazze G. 2017. Treatment of phenanthrene and benzene using microbial fuel cells operated continuously for possible in situ and ex situ applications. Int Biodeter Biodegr 116:91–103.
  • Adesodun JK, Mbagwu JSC. 2008. Distribution of heavy metals and hydrocarbon contents in an alfisol contaminated with waste-lubricating oil amended with organic wastes. Bioresour Technol 99(8):3195–3204.
  • Afonne OJ, Ifediba EC. 2020. Heavy metals risks in plant foods—need to step up precautionary measures. Curr Opin Toxicol 22:1–6.
  • Aqeel A, Hussain Z, Aqeel Q-U-A, Zafar J, Ehsan N, Tariq M. 2021. Enrichment and characterization of hydrocarbon degrading bacteria from various oil-contaminated sites in Pakistan. Geomicrobiol J 38(7):577–587.
  • Ardila L, Godoy R, Montenegro L. 2017. Sorption capacity measurement of chlorella vulgaris and scenedesmus acutus to remove chromium from tannery waste water. IOP Conf Ser Earth Environ Sci 83(1):012031.
  • Asati A, Pichhode M, Nikhil K. 2016. Effect of heavy metals on plants. Intern J Appl Innov Eng Manage 5(3):56–66.
  • Baaziz H, Gambari C, Boyeldieu A, Chaouche A, Alatou R, Méjean V, Jourlin-Castelli C, Fons M. 2017. ChrASO, the chromate efflux pump of Shewanella oneidensis, improves chromate survival and reduction. PLOS One 12(11):e0188516.
  • Bal B, Das AP. 2020. Recovery of manganese from low-grade ferromanganese ores using Bacillus safensis. Lecture Notes Civil Eng 57:23–32.
  • Basu T, Panja S, Shendge AK, Das A, Mandal N. 2018. A natural antioxidant, tannic acid mitigates iron‐overload induced hepatotoxicity in Swiss albino mice through ROS regulation. Environ Toxicol 33(5):603–618.
  • Begum S, Rath SK, Rath CC. 2022. Applications of microbial communities for the remediation of industrial and mining toxic metal waste: a review. Geomicrobiol J 39(3–5):282–293.
  • Behera ID, Basak G, Kumar RR, Sen R, Meikap BC. 2021. Treatment of petroleum refinery sludge by petroleum degrading bacterium Stenotrophomonas pavanii IRB19 as an efficient novel technology. J Environ Sci Health A Tox Hazard Subst Environ Eng 56(2):226–239.
  • Behera ID, Nayak M, Biswas S, Meikap BC, Sen R. 2021. Enhanced biodegradation of total petroleum hydrocarbons by implementing a novel two-step bioaugmentation strategy using indigenous bacterial consortium. J Environ Manage 292:112746.
  • Behera ID, Nayak M, Mishra A, Meikap BC, Sen R. 2022. Strategic implementation of integrated bioaugmentation and biostimulation for efficient mitigation of petroleum hydrocarbon pollutants from terrestrial and aquatic environment. Mar Pollut Bull 177:113492.
  • Bento FM, Camargo FAO, Okeke BC, Frankenberger WT. 2005. Comparative bioremediation of soils contaminated with diesel oil by natural attenuation, biostimulation and bioaugmentation. Bioresour Technol 96(9):1049–1055.
  • Botas JA, Moreno J, Espada JJ, Serrano DP, Dufour J. 2017. Recycling of used lubricating oil: Evaluation of environmental and energy performance by LCA. Resources, Conservation and Recycling.1;125:315–23.
  • Brazdis RI, Fierascu I, Avramescu SM, Fierascu RC. 2021. Recent progress in the application of hydroxyapatite for the adsorption of heavy metals from water matrices. Materials. 14: 6898.
  • Briffa J, Sinagra E, Blundell R. 2020. Heavy metal pollution in the environment and their toxicological effects on humans. Heliyon 6(9):04691.
  • Butt TE, Lockley E, Oduyemi KOK. 2008. Risk assessment of landfill disposal sites-state of the art. Waste Manag 28(6):952–964.
  • Cabot C, Martos S, Llugany M, Gallego B, Tolrà R, Poschenrieder C. 2019. A role for zinc in plant defense against pathogens and herbivores. Front Plant Sci 10:1171.
  • Calvo LF, García AI, Otero M. 2013. An experimental investigation of sewage sludge gasification in a fluidized bed reactor. SciWorldJ 2013:1–8.
  • Camargo MMP, Martinez CBR. 2007. Histopathology of gills, kidney and liver of a neotropical fish caged in an urban stream. Neotrop Ichthyol 5(3):327–336.
  • Chebbi A, Hentati D, Zaghden H, Baccar N, Rezgui F, Chalbi M, Sayadi S, Chamkha M. 2017. Polycyclic aromatic hydrocarbon degradation and biosurfactant production by a newly isolated Pseudomonas sp. strain from used motor oil-contaminated soil. Int Biodeterior Biodegrad 122:128–140.
  • Christmann M. 2017. Bioactive natural products. Bioorg Med Chem 25(22):6087.
  • Chu D. 2018. Effects of heavy metals on soil microbial community. IOP Conf Ser Earth Environ Sci 113:012009.
  • Das AP, Ghosh S. 2022. Role of microorganisms in extenuation of mining and industrial wastes. Geomicrobiol J 39(3–5):173–175.
  • Das AP, Ghosh S, Mohanty S, Sukla LB. 2015. Advances in manganese pollution and its bioremediation. Environ Microbe Biotech 313–328.
  • Das AP, Mishra S. 2008. Hexavalent chromium (VI): environment pollutant and health hazard. J Environ Res Dev 2(3):386–392.
  • Das AP, Swain S, Panda S, Pradhan N, Sukla LB. 2012. Reductive acid leaching of low grade manganese ores. GM 02(04):70–72.
  • Dawson JJ, Smith P. 2007. Carbon losses from soil and its consequences for land-use management. Sci Total Environ. 382(2–3):165–190.
  • Dey S, Tripathy B, Kumar MS, Das AP. 2023. Ecotoxicological consequences of manganese mining pollutants and their biological remediation. Environ Chem Ecotoxic 5:55–61.
  • El-Naggar NEA, El-Khateeb AY, Ghoniem AA, El-Hersh MS, Saber WEIA. 2020. Innovative low-cost biosorption process of Cr6+ by Pseudomonas alcaliphila NEWG-2. Sci Rep 10(1):14043.
  • Ghosh S, Bal B, Das AP. 2018. Enhancing manganese recovery from low- grade ores by using mixed culture of indigenously isolated bacterial strains. Geomicrobiology 35(3):242–246.
  • GracePavithra K, Jaikumar V, Kumar PS, Sundar Rajan P. 2019. A review on cleaner strategies for chromium industrial wastewater: present research and future perspective. J Clean Prod 228:580–593.
  • Hentati O, Lachhab R, Ayadi M, Ksibi M. 2013. Toxicity assessment for petroleum contaminated soil using terrestrial invertebrates and plant bioassays. Environ Monit Assess 185(4):2989–2998.
  • Holmberg K, Kivikytö-Reponen P, Härkisaari P, Valtonen K, Erdemir A. 2017. Global energy consumption due to friction and wear in the mining industry. Tribol Int 115:116–139.
  • Hozhina EI, Khramov AA, Gerasimov PA, Kumarkov AA. 2001. Uptake of heavy metals, arsenic, and antimony by aquatic plants in the vicinity of ore mining and processing industries. J Geochem Exploration 74(1–3):153–162.
  • Järup L. 2003. Hazards of heavy metal contamination. Br Med Bull 68:167–182.
  • Jerez S, Ventura M, Molina R, Pariente MI, Martínez F, Melero JA. 2021. Comprehensive characterization of an oily sludge from a petrol refinery: a step forward for its valorization within the circular economy strategy. J Environ Manage 285:112124.
  • Jiang C, Zhao Q, Zheng L, Chen X, Li C, Ren M. 2021. Distribution, source and health risk assessment based on the Monte Carlo method of heavy metals in shallow groundwater in an area affected by mining activities, China. Ecotoxicol Environ Saf 224:112679.
  • Keesstra S, Nunes J, Novara A, Finger D, Avelar D, Kalantari Z, Cerdà A. 2018. The superior effect of nature based solutions in land management for enhancing ecosystem services. Sci Total Environ 610–611:997–1009.
  • Khaledian Y, Kiani F, Ebrahimi S, Brevik EC, Aitkenhead‐Peterson J. 2017. Assessment and monitoring of soil degradation during land use change using multivariate analysis. Land Degrad Dev 28(1):128–141.
  • Kim YS, Jeong SU, Yoon WL, Yoon HK, Kim SH. 2003. Tar-formation kinetics and adsorption characteristics of pyrolyzed waste lubricating oil. J Anal Appl Pyrolysis 70(1):19–33.
  • Kouchou A, Rais N, Elsass F, Duplay J, Fahli N, El Ghachtouli N. 2017. Effects of long-term heavy metals contamination on soil microbial characteristics in calcareous agricultural lands (Saiss plain, North Morocco). J Mater Environ Sci 8(2):691–695.
  • Kuanar A, Kabi SK, Rath M, Dhal NK, Bhuyan R, Das S, Kar D. 2022. A comparative review on bioremediation of chromium by bacterial, fungal, algal and microbial consortia. Geomicrobiol J 39(6):515–530.
  • Laidlaw MA, Taylor MP. 2011. Potential for childhood lead poisoning in the inner cities of Australia due to exposure to lead in soil dust. Environ Pollut 159(1):1–9.
  • Leita L, Nobili DM, Mondini C, Muhlbachova G, Marchiol L, Zerbi G. 1995. Bioavailability and effects of heavy metals on soil microbial biomass survival during laboratory incubation. Biol Fertil Soils 19(2-3):103–108.
  • Li XM, Cheng KY, Selvam A, Wong JWC. 2013. Bioelectricity production from acidic food waste leachate using microbial fuel cells: effect of microbial inocula. Process Biochem 48(2):283–288.
  • Liu J, Jiang X, Zhou L, Han X, Cui Z. 2009. Pyrolysis treatment of oil sludge and model-free kinetics analysis. J Hazard Mater. 161(2–3):1208–1215.,
  • Mandal SK, Das N. 2018. Application of microbial fuel cells for bioremediation of environmental pollutants: an overview. J Microb Biotech Food Sci 7(4):437–444.
  • Marin JA, Hernandez T, Garcia C. 2005. Bioremediation of oil refinery sludge by land farming in semiarid conditions: influence on soil microbial activity. Environ Res 98(2):185–195.
  • Mishra A, Siddiqi H, Kumari U, Behera ID, Mukherjee S, Meikap BC. 2021. Pyrolysis of waste lubricating oil/waste motor oil to generate high-grade fuel oil: a comprehensive review. Renew Sustain Energy Rev 150:111446.
  • Mohammadi AA, Zarei A, Majidi S, Ghaderpoury A, Hashempour Y, Saghi MH, Alinejad A, Yousefi M, Hosseingholizadeh N, Ghaderpoori M. 2019. Carcinogenic and non-carcinogenic health risk assessment of heavy metals in drinking water of Khorramabad, Iran. MethodsX 6:1642–1651.
  • Mohanty S, Ghosh S, Bal S, Das AP. 2018. A review of biotechnology processes applied for manganese recovery from wastes. Rev Environ Sci Biotechnol 17(4):791–811.
  • Mohanty S, Ghosh S, Nayak S, Das AP. 2017a. Bioleaching of manganese by Aspergillus sp. isolated from mining deposits. Chemosphere 172:302–309.
  • Mohanty S, Ghosh S, Nayak S, Das AP. 2017b. Isolation, identification and screening of manganese solubilizing fungi from low-grade manganese ore deposits. Geomicrobiol J 34(4):309–316.
  • Morris JM, Jin S. 2012. Enhanced biodegradation of hydrocarbon-contaminated sediments using microbial fuel cells. J Hazard Mater 213-214:474–477.
  • Nazem MA, Tavakoli O. 2017. Bio-oil production from refinery oily sludge using hydrothermal liquefaction technology. J Supercrit Fluids 127:33–40.
  • Nazir H, Batool M, Bolivar Osorio FJ, Isaza-Ruiz M, Xu X, Vignarooban K, Phelan P, Kannan AM, Inamuddin . 2019. Recent developments in phase change materials for energy storage applications: a review. Intern J Heat Mass Transfer 129:491–523.
  • Nievas ML, Commendatore MG, Esteves JL, Bucalá V. 2008. Biodegradation pattern of hydrocarbons from a fuel oil-type complex residue by an emulsifier-producing microbial consortium. J Hazard Mater 154(1–3):96–104.
  • Obayori OS, Ilori MO, Adebusoye SA, Oyetibo GO, Omotayo AE, Amund OO. 2009. Degradation of hydrocarbons and biosurfactant production by Pseudomonas sp. Strain LP1. World J Microbiol Biotechnol 25(9):1615–1623.
  • Okereafor U, Makhatha M, Mekuto L. 2006. Toxic metal implications on agricultural soils, plants, animals, aquatic life and human health. Int J Environ Res Public Health 17(7):2204.
  • Patowary R, Patowary K, Kalita MC, Deka S. 2018. Application of biosurfactant for enhancement of bioremediation process of crude oil contaminated soil. Intern Biodeterior Biodegrad 129(129):50–60.
  • Paul A, Dey S, Ram DK, Das AP. 2023. Hexavalent chromium pollution and its sustainable management through bioremediation. Geomicrobiology J. 12:1–1.
  • Pourrut B, Shahid M, Dumat C, Winterton P, Pinelli E. 2011. Lead uptake, toxicity, and detoxification in plants. Rev Environ Contam Toxicol 213:113–136.
  • Prabhakaran DC, Subramanian S. 2017. Studies on the bioremediation of chromium from aqueous solutions using C. paurometabolum. Trans Indian Inst Met 70(2):497–509.
  • Rahman KSM, Rahman TJ, Lakshmanaperumalsamy P, Banat IM. 2002. Towards efficient crude oil degradation by a mixed bacterial consortium. Bioresour Technol 85(3):257–261.
  • Rehman ZU, Khan S, Shah MT, Brusseau ML, Khan SA, Mainhagu J. 2018. Transfer of heavy metals from soils to vegetables and associated human health risks at selected sites in Pakistan. Pedosphere 28(4):666–679.
  • Reunamo A, Yli-Hemminki P, Nuutinen J, Lehtoranta J, Jørgensen KS. 2017. Degradation of crude oil and PAHs in iron–manganese concretions and sediment from the Northern Baltic Sea. Geomicrobiol J 34(5):385–399.
  • Sammarco PW, Kolian SR, Warby RAF, Bouldin JL, Subra WA, Porter SA. 2016. Concentrations in human blood of petroleum hydrocarbons associated with the BP/deepwater Horizon oil spill, Gulf of Mexico. Arch Toxicol 90(4):829–837.
  • Sanket AS, Ghosh S, Sahoo R, Nayak S, Das AP. 2017. Molecular identification of acidophilic Manganese (Mn)-solubilizing bacteria from mining effluents and their application in mineral beneficiation. Geomicrobiol J 34(1):71–80.
  • Seklemova E, Pavlova A, Kovacheva K. 2001. Biostimulation based bioremediation of diesel fuel: field demonstration. Biodegradation 12(5):311–316.
  • Shaw DR, Dussan J. 2018. Transcriptional analysis and molecular dynamics simulations reveal the mechanism of toxic metals removal and efflux pumps in Lysinibacillus sphaericus OT4b.31. Intern Biodeterior Biodegrad 127:46–61.
  • Sherafatmand M, Ng HY. 2015. Using sediment microbial fuel cells (SMFCs) for bioremediation of polycyclic aromatic hydrocarbons (PAHs). Bioresour Technol 195:122–130.
  • Sidhu GPS. 2016. Heavy metal toxicity in soils: Sources, remediation technologies and challenges. Adv Plant Agric Res 5:00166.
  • Sidhu GPS, Singh HP, Batish DR, Kohli RK. 2017. Appraising the role of environment friendly chelants in alleviating lead by Coronopus didymus from Pb-contaminated soils. Chemosphere 182:129–136.
  • Singh H, Bhardwaj N, Arya SK, Khatri M. 2020. Environmental impacts of oil spills and their remediation by magnetic nanomaterials. Environ Nanotech Monitor Manage 14:100305.
  • Smith SR. 2009. A critical review of the bioavailability and impacts of heavy metals in municipal solid waste composts compared to sewage sludge. Environ Int 35(1):142–156.
  • Suganthi SH, Murshid S, Sriram S, Ramani K. 2018. Enhanced biodegradation of hydrocarbons in petroleum tank bottom oil sludge and characterization of biocatalysts and biosurfactants. J Environ Manage 220:87–95.
  • Suleimanov RR, Gabbasova IM, Sitdikov RN. 2005. Changes in the properties of oily Gray forest soil during biological reclamation. Soil Biol 32(1):109–115.
  • Sun L, Zheng Y, Yu X. 2020. Performance of river sediments after flocculation-pressure filter membrane-vacuum preloading. Environ Sci Pollut Res Int 27(21):26915–26928.
  • Reddy S, Osborne WJ. 2020. Heavy metal determination and aquatic toxicity evaluation of textile dyes and effluents using Artemia salina. Biocatal Agric Biotechnol 25: 101574.
  • Ueno A, Hasanuzzaman M, Yumoto I, Okuyama H. 2006. Verification of degradation of n-alkanes in diesel oil by Pseudomonas aeruginosa strain WatG in soil microcosms. Curr Microbiol 52(3):182–185.
  • Varjani SJ, Upasani VN. 2017a. A new look on factors affecting microbial degradation of petroleum hydrocarbon pollutants. Intern Biodeterior Biodegrad 120:71–83.
  • Varjani SJ, Upasani VN. 2017b. Crude oil degradation by Pseudomonas aeruginosa NCIM 5514: influence of process parameters.
  • Varma S, Jangra M. 2021. Heavy metals stress and defense strategies in plants: an overview. J Pharmacog Phytochem 10(1):608–614.
  • Wang X, Wang QH, Wang SJ, Li FS, Guo GL. 2012. Effect of biostimulation on community level physiological profiles of microorganisms in field-scale biopiles composed of aged oil sludge. Bioresour Technol 111:308–315.
  • Woo S, Yum S, Park H, Lee T, Ryu J. 2009. Effects of heavy metals on antioxidants and stress-responsive gene expression in Javanese medaka (Oryzias javanicus). Comp Biochem Physiol C Toxicol Pharmacol 149(3):289–299.
  • Wu Q, Hu W, Wang H, Liu P, Wang X, Huang B. 2021. Spatial distribution, ecological risk and sources of heavy metals in soils from a typical economic development area, Southeastern China. Sci Total Environ 780:146557.
  • Xu N, Bao M, Sun P, Li Y. 2013. Study on bioadsorption and biodegradation of petroleum hydrocarbons by a microbial consortium. Bioresour Technol 149:22–30.
  • Yadav SK. 2010. Heavy metals toxicity in plants: an overview on the role of glutathione and phytochelatins in heavy metal stress tolerance of plants. S Afr J Bot 76(2):167–179.
  • Yang Z, Liao Y, An M, Ren H, Hao X, Song X, Liu Z. 2021. Composition characteristics of siloxane derived waste lubricating oil and its effect on low-rank coal flotation. Fuel 305:121555.
  • Zhang H, Yuan X, Xiong T, Wang H, Jiang L. 2020. Bioremediation of co-contaminated soil with heavy metals and pesticides: Influence factors, mechanisms and evaluation methods. Chemical Engng J 398:125657.
  • Zhu Y, Yan J, Xia L, Zhang X, Luo L. 2019. Mechanisms of Cr(VI) reduction by Bacillus sp. CRB-1, a novel Cr(VI)-reducing bacterium isolated from tannery activated sludge. Ecotoxicol Environ Saf 186:109792.

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