Title of Invention

A METHOD AND DEVICE FOR SUBSIDING FOAMING EVOLVING DURING AN IND USTRIAL PROCESS AND AN IND USTRIAL PROCESS PLANT COMPRISING THE SAME.

Abstract A device (21) for subsiding foaming evolving in an industrial process without using antifoaming agent/defoamer, comprising of a header (22) provided with plurality of sockets (23) around its periphery, a plurality of radial arms (24) attached to the said sockets, the said radial arms at the lower surface provided with a plurality of holes (25), along its length, the said radial arms adopted to be mounted on the top surface of the vessel (1) in which foaming occurs during the industrial process and the said header connected to process water (3) line or the like fluid source for generating water jets through the holes provided in the said radial arms and directing the said jets on the foaming evolving in the industrial process and an industrial process plant such as fermentation plant/ distillery, Biogas plant, effluent treatment plant, ink or adhesive composition producing plant, aeration plant or the like, incorporated with the device.
Full Text FORM 2
THE PATENTS ACT 1970(39 OF 1970)
AND
THE PATENTS RULES, 2003
COMPLETE SPECIFICATION
A METHOD AND DEVICE FOR SUBSIDING FOAMING EVOLVING DURING AN IND USTRIAL PROCESS AND AN IND USTRIAL PROCESS PLANT COMPRISING THE SAME.
NITIN SURESHRAO CHAVAN
INDIAN
FLAT NO 31, I BUILDING SUVARNANAGARI, PLOT NO 22 ERANDWANE, PUNE, PIN 411004 MAHARASHTARA, INDIA,
The following specification particularly describes the invention and the manner in which it is to be performed.
NITIN SURESHRAO CHAVAN

This invention relates to a device for subsiding foaming evolving during an industrial process.
This invention also relates to a method and an industrial process plant, using the said device for subsiding foaming.
More particularly , this invention relates to a device for subsiding foaming in an industrial process without using antifoaming / defoamer agents ,thereby making the said process quite economical . Further in some industrial processes ,such as fermentation process in food and beverage industry, besides eliminating antifoaming agents, gas scrubber unit used for recovering the alcohol escaping in vapour form along with carbon dioxide gas is also eliminated as well as consumption of water and power required for fermentation plant is reduced thereby substaillny reducing the cost of fermentation.
Various industrial processes in which foam is formed due to gas evolution include fermentation processes of food and beverage industry, ink composition foaming process, adhesive composition foaming process, effluent or Biodegrading process evolving in Bio gas plants, secondary effluent treatment process using air sparge to keep mass in suspension evolving gases in aeration plant etc.
In all such industrial processes gases are evolved and foaming is continuously occurring which is controlled by using antifoaming agents / de-foamer such as Turkey Red oil (TRO), silicon based antifoaming agents etc.
The description here after is limited to fermentation process, for the sake of brevity. In fermentation process, chemical breakdown of a substance is taking place by bacteria, yeast or other micro -organisms, converting sugars to ethyl alcohol, evolving heat and carbon dioxide gas. Yeast can grow aerobically as well as anaerobically.
For growth and multification of yeast utilizable organics (sugar) and source of the Nitrogen are required and in addition optimum environmental parameter are to be maintained. During conversion of sugar to ethyl alcohol ,energy is produced.

For fermentation different substances and materials those are utilized by yeast are Glucose and Fructose, some yeast can utilize sugar like Maltose, Xylsoe, Galactose and the like. For industrial application producing ethyl alcohol raw materials containing above sugar and which are fermented by yeast are utilized. Mainly these materails are (i ) Sugar containing raw material like Sugar containing fruits, fruit juices such as Grape juice, Apple juice ,honey and even some flower like Mashua, etc . major sources for such sugar are sugar cane molasses, beet sugar molasses, sugar cane juice and the like.
(ii) Starch containing raw materials like grains such as Rice, wheat Corn, Sorghum ,Bajara and the like Rice bran, Root crops are like Tapioca and tubers like Potato Sweet potato and the like.
iii) Cellulose containing raw materials are saw mill residue, news prints, potato peelings, rice straw, corn stoves, peanut shells, wheat straw, coca, coffen Tobaccos and the like.
For producing ethyl alcohol sugar cane molasses which is easy to store, easy to handle, having utilizable Carbon and Nitrogen source high osmotic pressure it reduced microbiological spoilage is used in diluted form. Water is the best source for dilution but spent wash and spent lees can also be utilized.
For producing of ethyl alcohol from molasses or starch, fermentation process is carried out in a fermenter of a fermentation plant which is part of distillery. The fermentation process may be batch process or fed batch or continous fermentation process, carried out in a single fermentaer, double fermenter or batteries of fermenters.
The existing fermentation process mainly comprises of following steps'.
(a) propagation of yeast in a culture vessel;
(b) feeding of diluted sugar solution such as molasses diluted with water or spent wash or spent lees or the like diluting media preferably through a static mixer, into a fermenter;

(c) circulation of the mass in the fermenter with help the of
Circulation pump and preferably through a heat exchanger;
(d) addition of molasses, process water, process air, yeast ,nutrients
into the fermenter and increasing it gradually , the process air is
preferably added through air sparger at the bottom of the feremtner,
and Nutrient are added at regular intervals or continuous, through
Nutrient dosing system;
e) maintaining the desired process parameters like specific gravity, PH ( by adding Sulphuric acid) and Biocide (for controlling contamination of bacterial)and temperature of mass inside the fermenter;
f) observing the fermentation reaction, by evolution of Carbon Dioxide and foaming;
(g) starting the feeding of antifoaming agents such as Turkey Red Oil to control the foaming in fermenter, through an antifoaming dosing system;
(h)keeping carbon dioxide scrubber on line and feeding process water to the scrubber;
(i) feeding the scrubbed water with alcohol back to the fermenter or t aking the same for distillation;
j) keeping the level of the mass in the fermenter benig the desired level preferably 80 %of gross volume of the fermenter, by limiting the feeding, leaving about 20 % space for foaming;
(k) transferring the fermented wash after completion of reaction, normally after 24 hours, to clarification section and then to distillation.
In the typical example of Ethyl alcohol manufacturing plant (Distillery) having a capacity of 30 Kiloliter per day:
A) NORMAL INPUT:

i) The basic sugar containing raw material used is sugarcane molasses
126 MT/Day having 40% w/w fermentable sugars at the rate of 3600
Liter per hours(LPH)
ii) Process water used for fermenter 277 M3 per day (11500 LPH)
iii) Process water used for Carbon Di oxide scrubber: 14.5 M3/day
(600LPH)
iv) Nutrients: 50 kg/day
v)Process air : 200NM3/hr
vi)Anti foaming agnet:100 kg/day
vii)Sulphuric acid as per requirement to control PH
viii) Biocode: as per requirement t control contamination.
NORMAL OUTPUT:
i) Fermented wash 361 M3/ day
ii) C02 generated: 22 MT
iii) Scrubbed water with alcohol : 14.5 M3/Day
In place of sugar cane molasses, sugar beet molasses or sugar cane juice can also be used . The quantity of process water may also be reduced by recycling of weak bear or spent wash or spent lees. Further the fermenter used may be one ,two, three or more, and the fermented process performed may be in batch mode or fedbatch or as a continuous process.
Further a prefermenter may be used in which suagr solution of molasses,yeast, nutrients and process air is fed and the mass from prefermenter is transfered to main fermenter/s for the final reaction, generataing C02 and Alcohol vapur and major foaming. In this system process air may or may not be fed into the main fermenter.
For non molasses fermentation also process steps are same as descrobed herin before but generally this is carried out in batch mode.
The drawbacks, or limation or disadvantges of all the existing fermentation processes are as follows:
I)For controlling the foaming ,antifoaming/defoamer agents such as Turkey Red Oil or Silicon antifoam or the like, required to be added into the fermenter through antifoaming agent dosing device which acts only to reduce the foam and cost about Rs. 3000/— per day which for 30 kilo liter per day capacity distillery plant.

II)These antifoaming agents are not taking any part in the
fermentation reaction and are not useful for enhancing the
fermentation reaction or yeast activity or to control the contamination
and just added to control the foaming and depending upon the foam
generation quantity added remains uncontrolled.
III)Some time heavy addition of antifoaming agents reduces the PH of
fermented wash drastically thereby changing the process parameter
and affecting its efficiency, retention time, sugar conversion and
alcohol quality.
IV)Consumption of antifoaming agents varies with fermentation vessel
or reactor volume or Height / Diameter ratio of fermenter or total
input of the frmenter as well as the type of raw material and quality of
the raw material.
V)Due to addition of antifoaming agents utilizble volume the
fermenter is proportionately reduced.
VI)When excessive foaming occurs in the fermenter, which is not controlled by feeding the antifoaming agents, the foam enters the blow off or C02 lines. Some times fermenter gets overflow, resulting into loss of fermented mass / alcohol and creating unhygienic condtions around the fermenter. After some time the liquid foam in the lines becomes infected which drips into fermented mass resulting into infected mass and lower yield of alcohol.
VII)The fermentation reaction is exothermic and evolves a lot of C02
forming bubbles and foaming on the top surface of the mass in the
fermenter. With the C02, alcohol vapours are also vented out and for
the recovery of the alcohol, C02 Scrubber is used in which a part of
process water is also used, this invovoves cost of the scrubber
unit, steel pipe line, support frame (costing about Rs.5 lakhs for 30 Kiloleter per day distillery ) as well as as cost of water used in scrubber along with the power requirement for feeding the water to scrubber.
VIII)The scrubbed water with alcohol recovery is added to the fermenter which occupy the fermenter space, increases power consumption of the mass circulating pump and reduces the concentration of alcohol in the fermented mass which results in more consumption of steam in the distillery.
The main object of this invention therefore, is to obviate the above said shortcomings, limitations or disadvantages of the existing fermentation process as well as all the foam evolving industrial process and to provide a device for subsiding foaming evolving in an Industrial process without using an antifoam/ defoaming agent.

A further object of this invention is to be provide a device for subsiding foaming evolving in an Industrial process in which C02 Scrubber required in a fermentation plant is eliminated, along with its, support frame structure and pipe lines for feeding process water and collecting scrubbed water having alcohol and Carbondioxide with alcohol vapour carrying lines.
A further oject of this invention is to provide a device for subsiding foaming evolving in an industrial process in which process water consumption is reduced portionate to the water fed to the C02 scrubber in the existing fermentation process.
A further object of this invention is to provide a device for subsiding foaming evolving in an industrial process in which power consumption is reduced propionate to the power required for running the pump for feeding processes water to the C02 scrubber and collecting scrubbed water along with alcohol, and also power of circuiting pump used for circulating excess mass due to addition of scrubbed water with alcohol.
A further object of this invention is to provide a device for susding foaming evoving in an indrusrial process in which steam consumption in distillery is reduced, propotionate to the dilution of alcohol in the fermented mass due to additon of scuruubed water with alcohol in the fermented mass.
A further object of this invention is to provide a device for subsiding foaming evolving in an industrial process in which any chance of foam oozing out of fermenter or entering into any vent pipe is totally avoided thereby maintain hygienic condition around fermenter and no chance of any contamination of fermented mass, there by improving alcohol quality.
A further object of this invention is to provide a device for subsiding foaming evolving in an industrial process in which foam is totally subsided there by increasing the utilizable space in the fermenter giving higher efficiency at lower cost.
A further object of this invention is to provide a device for subsiding foaming evolving in an industrial process in which the device is adjustable to accommodate different levels of fermented mass in the fermenter to optimize the fermentation process.
A further object of this invention is to provide a device for subsiding foaming evolving in an industrial process in which the normal process water and air are utilized without affecting any process parameters, thereby maintaining higher efficiency with reduced process time resulting into higher yield.

A further object of this invention is to provide a device for subsided foaming evolving in an industrial process, which is quite simple to manufacture, easy to use and adjustable to suit any size of fermenter or reactor.
Accordingly this invention provides, a device for subsiding foaming evolving in an industrial process without using antifoaming agent/ defoamer, comprising of a header provided with a plurality of sockets around its periphery, a plurality of radial arms attached to siad sockets,the said radial arms at the lower surface provided with a plurality of holes along its length, the said header along with radial arms adopted to be mounted on the top surface of the vessel in which foaming occurs during the industrial process and the said header connected to process water line or the like fluid source, for generating water jets through the holes provided in the said radial arms.
Wherein said header is mounted at the inside top surface of a fermenter reactor with the help of the process water pipe provided with flange/s and supported at the top inlet of the fermenter/ reactor.
Where in the said header is connected to process air line.
Where in the said header is connected to spent wash/ lees line.
Where in the said socket and the said radial arms are connected by threading.
Wherein the radial arms are interconnected with peripherial arms with the help of sockets provided on the said radial arms and the said peripherial arms at the lower surface are provided with a plurality of holes along its length for creating water jets.
Wherein the said header is provided with two or more sets of sockets supporting the radial arms having holes, with or without the peripheral arms, in tow or more vertical planes, one above the other, keeping the sockets and radial arms in staggered manner, so that radial arms, of one set cover the space between the radical arms of the set below it.

This invention also provides a device for subsiding foaming evolving in an industrial I process without using antifoaming agent / defoamer, comprising of a plurality of concentric ring pipes connected to the process water line at the end and being mounted at the top inside surface of the vessel in which foaming occurs during the industrial process, each of the said ring pipes being provided with a plurality of holes and each of said ring pipe connected to the process water pipe or the like fluid source.
This invention also provides a device for subsiding foaming evolving in an industrial process without using antifoaming agent / defoamer, comprising of a spiral ring pipe provided with plurality of holes at its lower surface and connected to the process water line at the end, and being mounted at top inside surface of the vessel in which foaming occurs during the industrial process, the said spiral ring pipe being connected at its free ends to the process water pipe or like fluid source.
Where in the holes provided in the said arms are in bunches, one hole of the bunch being vertically downwards and others inclined.
Where in an extension piece/ pipe is provided for adjusting the position of the device inside the fermenter/reactor or foam evolving vessel.
Wherein the said header preferably at closed end is provided with a spiral shaped pipe having a plurality of holes and the said pipe connected to the header for receiving water to create water jets.
This invention also provides a method of subsiding / controlling foaming, evolving in an industrial process, without using antifoaming agents comprising forming of water jets or water and spent wash / lees jet or air and water jets or air, water or spent wash/lees jets, by using the device of this invention and directing the said jets on the foaming evolving in the industrial process.
This invention also provides an indrusrial process plant such as fermentation plant, distillery, Biogas plant, effluent treatment plant, ink or adhesive composition producing plant, aeration plant or the like, incorporated with the device of this invention, for subsiding/ controlling foaming evolving in the industrial process , without using antifoaming agent /defoamer.

The invention will be clear from the following description with reference to accompanying drawing wherein:
FIG. 1: shows schematic diagram of a fermentation plant, used for carrying out fermentation process, according to the prior art.
FIG: 2 shows schematic diagram of another fermentation plant, used for fermentation process according to prior art. FIG: 3 shows schematic diagram of a fermentation plant, used for carrying out fermentation process, according to an embodiment of this invention. FIG:4: shows schematic diagram of the fermentation plant ,used
for carrying out the fermentation process, according to another
embodiment of this invention.
FIG :5: shows partial elevation of the device for subsiding
foaming evolving in an industrial process , according to
an embodiment of this invention.
FIG 6: shows top plan seen along line, V-V marked in FIG5
FIG 7: shows bottom plan seen along line, Y-Y marked in FIG 5
FIG 8 and 9 : Show details of the arm and arms layout plan of the device shown in FIG 5
FIG 10 shows elevation of an extension piece, for the device shown in FIG 5
FIG 11, shows bottom plan view of header seen along the line Y-Y marked in fig 5 as an alternative Fig .7
FIG 12 : show plan of the concentric ring pipes of the device according to further embodiment of the invention.
FIG 13: show plan of the spiral ring pipes of the device according to further embodiment of the invention.
Now referring to FIGS 1 and 2, the fermentation plant, used for carrying out fermentation process, known in the prior art, mainly comprises at least one fermenter or reactor(l). However there may be a battery of fermenters containing two, three, four or even more fermenter in a series.Molasses(2),a sugar based raw material, diluted with water(3) and or with any other

diluent such as spent wash or spent lees, preferably by using a static mixer(4) is fed into the fermenter(l). In place of molasses, sugarcane juice or other sugar based raw materials can also be used. Activated yeast mass (5) and Nutrients (6) are also fed into the fermenter for activating the reaction. Process air (7) is also preferable fed through air sparger(8) at the bottom of the fermenter(l). The fermenter mass is circulated with the help of circulation pump(9) which is also preferably cooled in a heat exchanger/ fermented wash cooler (10).
Fermentation process being an exothermal reaction C02(ll) is generated which comes out in the form of bubbles and foaming(12)evolves at the upper portion of the fermenter. To control foaming antifoaming agents (13) such as Turkey Red Oil or Silicon Antifoaming are added with the help of antifoaming metering device. C02 also invloves alcohol in vapor form and to prevent the loss of alcohol, the C02 along with alcohol vapours(14) is taken to a C02 scrubber(15) in which process water (16) is fed.to disolve and recover thewhich is fed back to fermenter(l) along with scrubbed) water(17) and C02 is vented out through the vent(18).
When foam forming incerese ,more quanitity of anttfoaming agents is fed to the fermenter which not only increases the cost but also affects the efficiency , process parameters like PH. Sometimes foam enters C02 line causing development of bacteria which falls into the fermenter mass creating contamination resulting into poor quality of alcohol. Biocides are required to be added to control Bacterial which also increases the cost. Due to continuous addition of antifoaming agents as well as scrubbed water, more and more space of fermenter is occupied by non active materials resulting into high pressure inside the fermenter and reducing the capacity of fermenter. Sometimes the foaming oozes out of the fermenter creating unhygienic conditions around the fermenter.
FIG 2 shows the use of two fermenters ar connected in series and the same circulation pump(9) and heat exchanger (10) being used for circulation of mass in both the fermenters. A prefermenter(19) is used in which diluted molasses, yeast and nutrients are fed, process air is sparged and the prefermented mass is transferred to the one or both fermenters (1) for the final reaction. C02 along with alcohol vapours from both the fermenter is fed to C02 scrubber(15) where process water(16)

is sparged to disolve the alcohol and the scrubbed water with alcohol (17) is sent to wash tank(20). Antifoaming agent (13) is fed to both the fermenter, as per requirement. For a 30 Kilo liter per day distllery it is observed that the antifoaming agents costing about Rs. 3000/- per day are required and water for scrubber required is 600 LPH.
Now referring to FIGs 3 to 13 the device(21) for subsiding foaming (12) evolving during an industrial process such as fermentation process without using any antifoaming agent is an air and water sparge producing device provided at the top portion ,inside the fermenter (1) or each of the fermenters or reactors. The device (21) mainly comprises a header (22) provided with a pluarity of sockets (23) around its periphery for supporting a plurality of radial arms(24) formed of thin pipes of the length selected according to the inner diameter of the fermenter. Each of the arm is connected to respected sockets at one end preferably by threading or by any other joining means. Each of the arm (24) is provided with a plurality of holes or bunch of holes (25) in spaced apart manner distributed along its length. Each bunch of holes(25) preferably consist of three holes , one in vertical downward direction and two inclined at an angel of 30 to 60 , more preferably 45 form the vertical. The header (22) is connected to a process water(3) supply line preferably by using suitable extension pipe (32) and flanges(26) and supported at the top end (27) of the fermenter(l).The header (22) is also connected with process air supply line( 7).
For a non limiting typical example each arm (24) is of 40mm. diameter, holes (25) are of 2mm diameter and pitch of the holes (25) is 250mm.
Preferably in case of a larger fermenter the radial arms (24) are interconnected with peripheral arms (28) with the help of sockets (29) fixed to radial arms (24)
At the bottom closed end (30) of the header (22), preferably a spiral sparged pipe (31), having holes (25) is provided, which is connected to the header (22)for receiving process water and air. Alternatively the closed end (30) of header(22) is provided with a plurality of holes (25).

According to another embodiment of this invention a device for subsiding foaming evolving in an industrial processes without using antifoaming agent/defoamer, comprises a plurality of concentric ring pipes(34) connected to the process water line at the end and being mounted at the top inside surface of the vessel in which foaming occurs during the industrial process, each of the sad ring pipes being provided with a plurality of holes(25) and each of said ring pipe connected to the process water pipe or the like fluid source. As shown in FIG no 12 .
According to another embodiment of this invention a device for subsiding foaming evolving in an industrial process without using antifoaming agent/ defoamer , comprises a spiral ring pipe(25) provided with plurality of holes(25) at tis lower surface and connected to the process water line at the end, and being mounted at the top inside surface of the vessel in which foaming occurs during the industrial process, the said spiral ring being connected at the free end to process water pipe or like fluid source ,as shown in FIG no 13.
An extension pipe / piece (32) with flange (26) is provided for adjusting the position of the device (21) inside the fermenter(l) as per requirement.
In some processes where foaming is occurring vigorously the header (22) is provided in two or more vertical planes one above another, keeping the sockets and radial arms staggered so that radial arms of one set do not cover the radial arms of the set below it, but will cover the space left out in between the two adjacent radial arms of the set just below it, thereby air and water jets produced cover the whole space at the top surface of the fermenter for instantly subsiding foaming.
The device (21) is placed at the inside top surface of the fermenter, supported at the top inlet of it. The device (21) is connected to process water (3) and air (7) lines and as soon as C02 and foaming evolves air and water in the form of jets start spraying through holes (25) which covers the whole space and subsides the foaming completely.
In addition to process water (3) spent wash or spent lees (34) may also to be feed to the device (21). The alcohol vapour formed with C02 also comes in contact with the water sprayed by the device (21) and is dissolved in water and remain in the fermenter, leaving only C02 to be vented out through the

vent(33).As there is no need of C02 scrubber which is now eliminated along with its pipe lines and support frame. Water supply to C02 scrubber is not require therefore saving of water consumption and power consumption used in feeding the water to scrubber.
There is no need of anyantifoaminq agent as the foaming is completely subsided / control led by the device and therefore saving on the cost of antifoaming agent as well as antifoaming metering / feeding system, connecting piping and piping support. There is no eliment, like antifoaming agent, which does not take part in the reaction/fermentation process, being added to the fermenter hence the process parameters are not affected and efficiency is enhanced. Space that is occupied by the antifoaming agent and scrubbed water is utilized for feeding more sugar solution; thereby utilizable space of the fermenter is increased therefore productivity is more. The same process water /spent wash / spent lees and the process air which is required to be continuously fed to the fermenter is now utilized in the device for creating air and water sparge/jet for controlling / subsiding the foaming and now there is no antifoaming agent, and scrubbed water, therefore for the same capacity mass circulation recirculated by the pump is reduced thereby saving of the power used for circulation pump . As there is no extra mass, there is no rise in pressure inside the fermenter.Foaming is subsided instantly hence no chance of any foaming entering into vent or oozing out of the fermenter and hence hygienic conditions are maintained around the fermenter as well as no chance of any Bacteria developing in the vent and dripping back into the fermenter, contaminating the fermented mass hence the cost of Biocide is saved and high quality and higher yield of alcohol / fermenrted mass is achieved. Also process parameter like PH is not affected, as there is no antifoaming agent there for.Further the scrubbed water with alcohol not added to the mass hence the concentration of alcohol in the fermented mass is comparatively more which reduces steam consumption in the distillation thereby proportionately reducing the power consumption. With the use of the device (21) for subsiding foaming which does not require antifoaming agent, process parameters are maintained and reaction time is reduced conversion efficiency is increased, alcohol recovery per unit of sugar input is increased, yeast activity is maintained and

CLAIM:
1. A device for subsiding foaming evolving in an industrial process without using antifoaming agent /defoamer, comprising of a header provided with a plurality of sockets around its periphery, a plurality of radial arms attached to said sockets, the said radial arms at the lower surface provided with a plurality of holes along its length, the said header along with radial arms adopted to be mounted on the top surface of the vessel in which foaming occurs during the industrial process and the said header connected to process water line or the like fluid source, for generating water jets through the holes provided in the said radial arms.
2. The device as claimed in 1, wherein the said header is mounted at the inside top surface of fermenter / reactor with the help of the process water pipe provided with flange/s and supported at least at the top inlet of the fermenter/ reactor.
3. The device as claimed in 1 or 2, wherein the said header is connected to process airline.
4. The device as claimed in l,2or 3 wherein the said header is
connected to spent wash /lees line.
5. The device as claimed in 1, wherein the said socket and the said
radial arms are connected by threading.
.:>
6. The device as claimed in 1, whereifv the radial arms are
interconnected with peripheral arms with the "elp of sockets provided
on the said radial arms and the said peripheral arms at the lower
surface are provided with a plurality of hols along its length for
creating water jets.
7. The device as claimed in 1, wherein the said header is provided with
two or more sets of sockets supporting the radial arms having holes,
with or without the peripheral arms, in two or more vertical planes,
one above other, keeping the sockets and radial arms in staggered
manner, so that the radial arms of one set cover the space between
the radial arms of the set below it.

8 A device for subsiding foaming evolving in an industrial process without using antifoaming agent/defoamer, comprising of a plurality of concentric ring pipes connected to the process water line at the end and being mounted at the top inside surface of the vessel in which foarging occurs during the industrial process, each of the sad ring pipes being provided with a plurality of holes and each of sa d ring pipe connected to the process water pipe or the like fluid source.
9. A device for subsiding foaming evolving in an industrial process without using antifoaming agent/ defoamer, comprising of a spiral ring pipe provided with plurality of holes at its lower surface and connected to the process water line at the end, and being mounted at the top inside surface of the vessel in which foaming occurs during the industrial process, the said spiral ring being connected at the free end to process water pipe or like fluid source.
lO.The device as claimed in 1,6,8 o. 9 wherein the holes provided in the said arms or ring pipes are in bunches, one hole of the bunch being vertically downward and other inclined.
11. The device as claimed in 1,8 or 9 wherein an extension piece / pipe is provided for adjusting the position of the device inside the fermenrter or reactor or foam evolving vessel.
12.The device as claimed in 1, wherein the said header preferably at closed end is provided with a plurality of holes or a spiral shaped pipe having a plurality of holes and the said pipe is connected to the header for receivinci water, air or other fluid to create water jets.
13.A device for subsiding foaming evolving in an industrial process without using any antifoaming agents/defoamer, substantially as herein described and illustrated in figure 3 to 13 of the accompanying drawings.

14. A method of subsiding / controlling foaming, evolving in an industrial process, without using antifoaming agent comprising steps of forming of water jet or spent wash /lees jet or air and water jet or air, water and spent wash/lees jet, by using the device as claimed in any of the claim 1 to 13 and directing the said jets on the foaming evolving in the industrial process.
15.A method of subsiding foaming evolving in an industrial process without using antifoaming agents, substantially as herein described with reference to FIGS 3 to 13 of the accompanying drawings.
Dated: Sep22,2008
NITIN SURESHRAO CHAVAN


Documents:

207-mum-2006-abstract(25-07-2008).pdf

207-MUM-2006-ABSTRACT(25-7-2008).pdf

207-MUM-2006-ANNEXCURE(25-7-2008).pdf

207-mum-2006-cancelled pages(25-07-2008).pdf

207-MUM-2006-CLAIMS(22-9-2008).pdf

207-MUM-2006-CLAIMS(25-7-2008).pdf

207-mum-2006-claims(granted)-(25-07-2008).pdf

207-MUM-2006-CORRESPONDENCE(12-1-2009).pdf

207-MUM-2006-CORRESPONDENCE(22-9-2008).pdf

207-mum-2006-correspondence(25-07-2008).pdf

207-MUM-2006-CORRESPONDENCE(25-7-2008).pdf

207-mum-2006-correspondence(ipo)-(26-11-2008).pdf

207-MUM-2006-DESCRIOPTION(COMPLETE)-(25-7-2008).pdf

207-mum-2006-drawing(25-07-2008).pdf

207-MUM-2006-DRAWING(25-7-2008).pdf

207-mum-2006-form 1(14-02-2006).pdf

207-mum-2006-form 1(25-07-2008).pdf

207-MUM-2006-FORM 1(25-7-2008).pdf

207-mum-2006-form 18(09-05-2006).pdf

207-mum-2006-form 2(25-7-2008).pdf

207-mum-2006-form 2(granted)-(25-07-2008).pdf

207-MUM-2006-FORM 2(TITLE PAGE)-(25-7-2008).pdf

207-MUM-2006-FORM 3(12-1-2009).pdf

207-mum-2006-form 3(14-02-2006).pdf

207-mum-2006-form 3(25-07-2008).pdf

207-MUM-2006-FORM 3(25-7-2008).pdf

abstract1.jpg


Patent Number 225911
Indian Patent Application Number 207/MUM/2006
PG Journal Number 07/2009
Publication Date 13-Feb-2009
Grant Date 03-Dec-2008
Date of Filing 14-Feb-2006
Name of Patentee NITIN SURESHRAO CHAVAN
Applicant Address FLAT NO.31, I BUILDING SUVARNANAGARI, PLOT NO. 22 ERANDWANE, PUNE, PIN-411004. MAHARASHTARA, INDIA.
Inventors:
# Inventor's Name Inventor's Address
1 NITIN SURESHRAO CHAVAN FLAT NO.31, I BUILDING SUVARNANAGARI, PLOT NO. 22 ERANDWANE, PUNE, PIN-411004. MAHARASHTARA, INDIA.
PCT International Classification Number N/A
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 NA