Biodispersion as a method for removal of hydrocarbon oil from marine aqueous environments

a technology of hydrocarbon oil and biodispersion, which is applied in the field of oil spill clean-up, can solve the problems of millions of gallons of oil released into the sea, actual harmful effects, and difficulty in assessing the quantity of polluting oil in any aqueous environment, and achieve the effect of preventing the extensive loss of bird li

Inactive Publication Date: 2001-09-06
SATYANARAYANA GANTI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0010] The present overcomes the limitations described above with respect to the related art in that it removes floating oil in enclosed masses through a process identified as "biodispersion" which is followed by "bioutilization." The method of the present invention meets all of the requirements necessary for an oil spill cleanup technique, which is harmless to marine life of economic importance or otherwise. In addition the method has the advantage of preventing the extensive loss of bird life. The method explores the possibilities of pretreatment of ballast water and bilge water before its release by tankers and ships. The method can also be used for treatment of refinery effluents and for industrial waste water remediation.

Problems solved by technology

It is difficult to assess the quantity of polluting oil in any aqueous environment, since the oil generally transforms into the following four states on encountering water.
The volume of oil discharged through handling and transportation in addition results in a release of millions of gallons of oil into the sea.
Although a major oil spill may occur in mid-ocean, actual harmful effects are felt only in the coastal regions and estuaries.
The pollution of water by oil therefore, is not regarded as an oceanic problem but a coastal hazard.
Although mechanical skimmers are effective in removing oil after oil spills of major or minor nature, the mechanical process does not remove all the oil completely and the residual oil once again finds its way to coastal regions or estuaries and beaches.
Thus a technology for shoreline clean up through bioremediation has been demonstrated which even today remains successful in a limited way.
Bioremediation by addition of oil degrading microbes is often promoted as a treatment of floating spills, but this approach has not met with any documented success (Prince, 1998).

Method used

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Examples

Experimental program
Comparison scheme
Effect test

example 2

Field trials in miniature oil containing booms

[0058] The effectiveness of biodispersion accompanied by bioutilization of oil recorded in laboratory experiments was examined under field conditions. These experiments were conducted in miniature oil containing booms fabricated from inflatable tubes of an automobile tire. The tubes of tires were inflated to the maximum and the surface was protected with a rubber solution to prevent escape of air from the inflated tube. The inflated tubes were then lowered in the sea after applying additional weight of 15.0 kg. The weight was so placed that it would keep the tube well balanced on water with 3 / 4 of the surface below the water line.

[0059] Weathered oil collected from harbor was selected as the test pollutant. The oil was charged with 10% of Inipol.RTM. and mixed well before employing it as the source of pollution. 100.0 ml. of this weathered oil was then dispensed in the well of the tube and the inflated tube was secured firmly. The well o...

example 3

Field trials in modified miniature floating booms

[0060] Although the experiments in the inflated tubes showed good results, due to excessive heat in the environment, air in the tubes escaped and some of the experiments had to be abandoned. It was decided to examine the possibility of employing a new configuration, which will prevent such mishaps. In the new system, 200 liter drums were procured from a local supplier and both the top and the bottom of the drum were cut to obtain a polypropylene cylinder of about 0.78 meter square internal diameter. The wall of this cylinder was supported with four brackets of non-corrosive material to prevent the wall from collapsing due to hydrostatic pressure or wave action. Four polyurethane floats were fitted on each of the drums to achieve the required buoyancy for the structure. The modified miniature oil boom was placed in the harbor so that the lower end of the cylinder was at least 30 cm. below the water line. This would ensure that the oil ...

example 4

Removal of oil from an oil containing boom

[0063] Further experiments were carried for the removal of oil recorded in the field experiments employing a single 25 meter section of a riparian oil-containing boom obtained from agencies involved in combating oil pollution. The boom was inflated with the help of an air compressor and lowered into the harbor. The ends of the boom were joined with stainless steel connecting rods sealed with polyethylene sheets to prevent any accidental release of polluting oil. The inflated riparian boom gave an internal area of 360 square feet and the seawater contained in the boom was constantly flushed with tidal action. The boom was secured to a floating abandoned ship in an area in the harbor taking care not to disturb the normal movement of ships.

[0064] An artificial oil spill was created using weathered oil freshly collected from the harbor. 15.0 liters of this oil charged with Inipol.RTM. were dispensed in the boom. The thickness of oil was calculat...

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Abstract

A method for removal of free-floating oil from an aqueous environment by bio-dispersion and bio-utilization comprising the steps of: (i) isolating species or strain of bacteria having an ability to utilize hydrocarbons as the only source of carbon; (ii) admixing the bacterium with a fatty substance and hydrocarbon oil to form an oleophilic suspension of the bacterium; (iii) applying the oleophilic suspension of bacteria to a free floating oil in an aqueous environment to disperse and remove free-floating oil therefrom. An oleophilic suspension comprising a fatty substance and a physiologically active bacterial culture of hydrocarbonoclastic bacteria for removing free floating oil from an aqueous environment by bio-dispersion followed by bio-utilization.

Description

PRIORITY OF INVENTION[0001] This application claims priority under 35 U.S.C. .sctn.119(e) from U.S. Provisional Application No. 60 / 093,870, filed Jul. 23, 1998.[0002] (i) Field of the Invention[0003] The present invention relates generally to cleanup of oil spills in a marine environment and, more particularly, to bioremediation or biological removal of floating oil through biodispersion.[0004] (ii) Description of Related Art[0005] Pollution of rivers, streams, harbors, bays, beaches and the open sea by hydrocarbon oil has increased tremendously in recent years. It is difficult to assess the quantity of polluting oil in any aqueous environment, since the oil generally transforms into the following four states on encountering water. These are a) as film on water, b) as solution in dissolved state, c) as emulsion of oil in water and d) in the form of tar balls. It is possible that only laser acoustic instruments may provide absolute values for the thickness of oil.[0006] It has been r...

Claims

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Application Information

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Patent Type & AuthorityApplications(United States)
IPC IPC(8): C02F3/34C12N1/20C12N1/26
CPCC02F3/344C02F2101/32C02F2103/08C02F2305/06C12N1/20C12N1/26Y10S210/922
InventorSATYANARAYANA, GANTI
OwnerSATYANARAYANA GANTI