Petroleum Hydrocarbon Removal from Wastewaters: A Review
Удаление углеводородов нефти из сточных вод: обзор
2020-04-10
SCID: 54.1/r7t7t4qm
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adsorption (low-cost adsorbents)advanced oxidation / membrane processes (nanofiltration, reverse osmosis)coagulation and dissolved air flotation (DAF)electrocoagulationpetroleum hydrocarbons
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Abstract (AI)
Oil pollutants, due to their toxicity, mutagenicity, and carcinogenicity, are considered a serious threat to human health and the environment. Petroleum hydrocarbons compounds, for instance, benzene, toluene, ethylbenzene, xylene, are among the natural compounds of crude oil and petrol and are often found in surface and underground water as a result of industrial activities, especially the handling of petrochemicals, reservoir leakage or inappropriate waste disposal processes. Methods based on the conventional wastewater treatment processes are not able to effectively eliminate oil compounds, and the high concentrations of these pollutants, as well as active sludge, may affect the activities and normal efficiency of the refinery. The methods of removal should not involve the production of harmful secondary pollutants in addition to wastewater at the level allowed for discharge into the environment. The output of sewage filtration by coagulation and dissolved air flotation (DAF) flocculation can be transferred to a biological reactor for further purification. Advanced coagulation methods such as electrocoagulation and flocculation are more advanced than conventional physical and chemical methods, but the major disadvantages are the production of large quantities of dangerous sludge that is unrecoverable and often repelled. Physical separation methods can be used to isolate large quantities of petroleum compounds, and, in some cases, these compounds can be recycled with a number of processes. The great disadvantage of these methods is the high demand for energy and the high number of blockages and clogging of a number of tools and equipment used in this process. Third-party refinement can further meet the objective of water reuse using methods such as nano-filtration, reverse osmosis, and advanced oxidation. Adsorption is an emergency technology that can be applied using minerals and excellent materials using low-cost materials and adsorbents. By combining the adsorption process with one of the advanced methods, in addition to lower sludge production, the process cost can also be reduced.
Key Findings
1
Advanced coagulation methods (e.g., electrocoagulation and flocculation) outperform conventional physical and chemical methods but produce large quantities of hazardous, unrecoverable sludge.
2
Coagulation and dissolved air flotation (DAF) followed by biological reactors can be used sequentially for further purification of oil-containing sewage.
3
Combining adsorption (using low-cost minerals/adsorbents) with advanced methods (nano-filtration, reverse osmosis, advanced oxidation) can reduce sludge production and overall process cost while enabling water reuse.
4
Conventional wastewater treatment methods cannot effectively eliminate petroleum hydrocarbons like benzene, toluene, ethylbenzene, and xylene.
5
Physical separation methods can recover large quantities of petroleum compounds for recycling but have high energy demand and are prone to clogging and equipment blockages.
Research Object
Petroleum hydrocarbons in wastewaters
Research Subject
Methods and effectiveness of removal/treatment of petroleum hydrocarbons from wastewater, including coagulation/DAF, electrocoagulation, physical separation, adsorption, nanofiltration, reverse osmosis, and advanced oxidation and their trade-offs (sludge production, energy demand, recyclability, cost)
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2020-04-10
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