CN214528906U - Rose essential oil extraction system - Google Patents

Rose essential oil extraction system Download PDF

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Publication number
CN214528906U
CN214528906U CN202120118862.XU CN202120118862U CN214528906U CN 214528906 U CN214528906 U CN 214528906U CN 202120118862 U CN202120118862 U CN 202120118862U CN 214528906 U CN214528906 U CN 214528906U
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essential oil
rose essential
oil extraction
storage tank
filtering device
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CN202120118862.XU
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陈望慧
罗清富
罗春强
张晓斌
谢延锋
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Xiaojin County Jiajinshan Qingduoxiang Wild Resources Development Co ltd
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Xiaojin County Jiajinshan Qingduoxiang Wild Resources Development Co ltd
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Abstract

The utility model discloses a rose essential oil extraction system, which comprises a stock solution delivery pump, a rose essential oil extraction unit, a steam generator, a filtering device and a pure dew storage tank; the stock solution delivery pump conveys the stock solution to the rose essential oil extraction unit for extraction, the steam generator provides heating steam for the rose essential oil extraction unit, and the rose essential oil extraction unit conveys the hydrolat obtained by extraction to the hydrolat storage tank for preservation after filtering by the filter equipment. The utility model discloses in, carry the stoste to rose essential oil extraction unit and draw, rose essential oil extraction unit still acquires steam generator's heating steam simultaneously, obtains the hydrolat after drawing and carries to the hydrolat storage tank and preserve before, filters through filter equipment to can filter impurity and accurate degerming, thereby make the rose essential oil hydrolat extract the effect better.

Description

Rose essential oil extraction system
Technical Field
The utility model relates to a rose essential oil extraction system.
Background
The plant essential oil is extracted from flower, leaf, root, bark, fruit, seed, resin, etc. of herbaceous plant by distillation and squeezing. Because the essential oil of the fumigation has high volatility and small molecules, the essential oil is easy to be absorbed by human bodies and can quickly permeate into internal organs of the human bodies to discharge redundant components out of the human bodies, the whole process only needs a few minutes, and the fragrance of the plants directly stimulates the secretion of pituitary gland, the secretion of enzymes, hormones and the like, balances the internal functions of the human bodies, and plays a role in beautifying and protecting the skin. It is conceivable that essential oils are unparalleled to the human body's secret. Essential oils are highly concentrated extracts of aromatic plants. The rose essential oil belongs to one of plant essential oils, and has the effects of resisting bacteria, resisting spasm, sterilizing, purifying, tranquilizing, tonifying body and the like. It is suitable for all skin types as if they are mature dry or sensitive, and any sensitive red and swollen and inflamed skin.
In the prior art, the rose essential oil is mostly in a flower-flooding form in the process of obtaining the initial stock solution, so that the subsequent obtained rose essential oil is still impure and has impurities in the process of extracting the rose essential oil although the steps of heating, condensing and the like are carried out.
Therefore, in view of the above problems, it is an urgent technical problem to be solved in the art to provide a rose essential oil extraction system.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art's not enough, provide a rose essential oil extraction system.
The purpose of the utility model is realized through the following technical scheme:
the utility model discloses a first aspect provides a rose essential oil extraction system, its characterized in that: comprises a stock solution delivery pump, a rose essential oil extraction unit, a steam generator, a filtering device, an ultraviolet sterilizer and a pure dew storage tank; the stock solution conveying pump conveys the stock solution to the rose essential oil extraction unit for circular distillation, the steam generator provides heating steam for the rose essential oil extraction unit, and the rose essential oil extraction unit conveys the extracted hydrolat to the hydrolat storage tank for preservation after filtering through the filtering device and passing through the ultraviolet sterilizer.
Further, the rose essential oil extraction unit comprises a heating kettle, a condenser, an oil-water separator, a buffer tank, a circulating water storage tank, a circulating water pump, a hydrolat temporary storage tank and a hydrolat delivery pump; the bottom input tube of heating cauldron is connected steam generator, the top input tube of heating cauldron is connected stoste delivery pump, the top output tube of heating cauldron the top input tube of condenser, the bottom output tube of condenser is passed through the buffer tank and is connected with oil water separator, and oil water separator's output tube is connected with circulating water storage tank and pure dew jar of keeping in respectively, and circulating water storage tank passes through circulating water pump and is connected with the top of heating cauldron, and the pure dew jar of keeping in is connected with filter equipment through the pure dew delivery pump.
Further, the rose essential oil extractor has two groups.
Furthermore, a first valve is arranged on a connecting pipeline between the oil-water separator and the circulating water storage tank, and a second valve is arranged on a connecting pipeline between the oil-water separator and the pure dew temporary storage tank.
Further, the filtering device comprises a primary filtering device, a secondary filtering device and a tertiary filtering device which are connected in sequence, wherein the primary filtering device adopts 120-mesh filtering plant fibers, the secondary filtering device is a microporous membrane filter, and a 5-micron filtering layer is adopted to filter impurities; the third-stage filtering device is an ultramicro membrane filter and adopts a 0.22um filtering layer for precise sterilization.
Further, the three-stage filtering device comprises two serially connected ultramicro membrane filters.
Furthermore, the pure dew storage tank comprises four pure dew storage tanks which are connected in series.
Further, an output pipeline of the pure dew storage tank is connected with an external filling machine.
Further, the ultraviolet sterilizer is arranged in the pure dew storage tank or on a pipeline between the filtering device and the pure dew storage tank.
Further, the stock solution is obtained by flooding a flower pond.
The utility model has the advantages that:
(1) the utility model discloses an in the illustrative embodiment, carry the stoste to rose essential oil extraction unit and draw, rose essential oil extraction unit still acquires steam generator's heating steam simultaneously, obtains the hydrosol after drawing and carries to the hydrosol storage tank before preserving, filters through filter equipment to can filter impurity and accurate degerming, pass through ultraviolet sterilizer and carry out germicidal treatment to the hydrosol again, thereby make the quality of rose essential oil hydrosol more excellent, the storage effect is better.
(2) In another exemplary embodiment of the present invention, the rose essential oil extraction unit is used for extracting the stock solution into the hydrolat of the rose essential oil: the method comprises the steps of heating stock solution in a heating kettle through hot steam of a steam generator, condensing the stock solution in a condenser after evaporation, enabling a condensed water-oil mixture to enter an oil-water separator through a buffer tank, enabling the hydrolat to enter a hydrolat temporary storage tank for transportation, enabling the water to enter a circulating water storage tank for storage, circulating the water in the circulating water storage tank back to the heating kettle through a circulating water pump when the water needs to be transported, and transporting the hydrolat temporary storage tank for hydrolat to a rear filtering device through a hydrolat delivery pump when the hydrolat needs to be transported.
(3) In another exemplary embodiment of the present invention, the filtering device comprises a first filtering device, a second filtering device and a third filtering device connected in sequence, wherein the first filtering device adopts 120 mesh to filter plant fibers, the second filtering device is a microporous membrane filter, and a 5um filtering layer is adopted to filter impurities; the third-stage filtering device is an ultramicro membrane filter and adopts a 0.22um filtering layer for precise sterilization. In this way, the extracted hydrolat can be filtered from coarse to fine.
Drawings
Fig. 1 is a schematic structural diagram provided in an exemplary embodiment of the present invention;
fig. 2 is a schematic structural diagram of a rose essential oil extraction unit provided in an exemplary embodiment of the present invention;
fig. 3 is a schematic structural view of a filter device provided in an exemplary embodiment of the present invention;
in the figure, 1-stock solution delivery pump, 2-rose essential oil extraction unit, 3-steam generator, 4-filtering device, 5-hydrolat storage tank, 201-heating kettle, 202-condenser, 203-oil-water separator, 204-buffer tank, 205-circulating water storage tank, 206-circulating water pump, 207-hydrolat temporary storage tank, 208-hydrolat delivery pump, 209-first valve, 210-second valve, 401-first filtering device, 402-second filtering device and 403-third filtering device.
Detailed Description
The technical solution of the present invention will be described clearly and completely with reference to the accompanying drawings, and obviously, the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it should be noted that the directions or positional relationships indicated by "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like are the directions or positional relationships indicated on the basis of the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element indicated must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise explicitly stated or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
Referring to fig. 1, fig. 1 shows that an exemplary embodiment of the present invention provides a rose essential oil extraction system, which includes a stock solution delivery pump 1, a rose essential oil extraction unit 2, a steam generator 3, a filtering device 4, an ultraviolet sterilizer (not shown in the figure) and a hydrolat tank 5; the stock solution conveying pump 1 conveys the stock solution to the rose essential oil extraction unit 2 for extraction, the steam generator 3 provides heating steam for the rose essential oil extraction unit 2, and the hydrolat obtained by extraction is filtered by the rose essential oil extraction unit 2 through the filtering device 4 and conveyed to the hydrolat storage tank 5 for storage after being filtered by the ultraviolet sterilizer.
Specifically, in the exemplary embodiment, a stock solution is first delivered to the rose essential oil extraction unit 2 for internal recycle distillation, wherein in a preferred exemplary embodiment, the stock solution is obtained from a flower-submerging pond 6; simultaneously rose essential oil extraction unit 2 still obtains steam generator 3's heating steam, obtains the hydrolat after extracting and filters through filter equipment 4 before carrying to hydrolat storage tank 5 and preserve to can filter impurity and accurate degerming, carry out germicidal treatment to the hydrolat through ultraviolet sterilizer, thereby make the quality of rose essential oil hydrolat more excellent, the storage effect is better.
More preferably, in an exemplary embodiment, as shown in fig. 2, the rose essential oil extraction unit 2 includes a heating kettle 201, a condenser 202, an oil-water separator 203, a buffer tank 204, a circulating water storage tank 205, a circulating water pump 206, a pure dew temporary storage tank 207 and a pure dew transfer pump 208; the bottom input tube of heating cauldron 201 is connected steam generator 3, the top input tube of heating cauldron 201 is connected stoste delivery pump 1, the top output tube of heating cauldron 201 the top input tube of condenser 202, the bottom output tube of condenser 202 passes through buffer tank 204 and is connected with oil water separator 203, and oil water separator 203's output tube is connected with circulating water storage tank 205 and pure dew jar 207 of keeping in respectively, and circulating water storage tank 205 passes through circulating water pump 206 and is connected with the top of heating cauldron 201, and pure dew jar 207 of keeping in is connected with filter equipment 4 through pure dew delivery pump 208.
Specifically, in the exemplary embodiment, the rose essential oil extraction unit 2 is configured to extract the stock solution into the hydrolat of the rose essential oil by the following specific steps: the method comprises the steps of firstly heating stock solution in a heating kettle 201 through hot steam of a steam generator 3, condensing the stock solution in a condenser 202 after evaporation, enabling a condensed water-oil mixture to enter an oil-water separator 203 through a buffer tank 204, enabling the hydrolat to enter a hydrolat temporary storage tank 207 for conveying, enabling water to enter a circulating water storage tank 205 for storage, enabling the water in the circulating water storage tank 205 to circulate back to the heating kettle 201 through a circulating water pump 206 when the water is required to be conveyed, and meanwhile, conveying the hydrolat in the temporary storage tank 207 to a rear filtering device through a hydrolat conveying pump 208 when the hydrolat is required to be conveyed.
More preferably, in one exemplary embodiment, as shown in FIG. 1, there are two sets of the rose essential oil extraction units 2. By adopting the method, the extraction amount of the rose essential oil can be improved.
Preferably, in an exemplary embodiment, as shown in fig. 2, a first valve 209 is disposed on a connection pipeline between the oil-water separator 203 and the circulating water storage tank 205, and a second valve 210 is disposed on a connection pipeline between the oil-water separator 203 and the dew condensation temporary storage tank 207.
Specifically, in the exemplary embodiment, the extraction of water and hydrol is performed by the open-close control of the first valve 209 and the second valve 210 in cooperation with the circulating water pump 206 and the hydrol transfer pump 208.
More preferably, in an exemplary embodiment, as shown in fig. 3, the filtering device 4 includes a primary filtering device 401, a secondary filtering device 402 and a tertiary filtering device 403 which are connected in sequence, the primary filtering device 401 adopts 120-mesh filtering plant fiber, the secondary filtering device 402 is a microporous membrane filter, and adopts a 5um filtering layer to filter impurities; the third-stage filtering device 403 is an ultramicro membrane filter and adopts a 0.22um filtering layer for precise sterilization.
Specifically, in this exemplary embodiment, the extracted hydrolat may be filtered from coarse to fine in this manner.
More preferably, in an exemplary embodiment, as shown in FIG. 3, the three stage filtration device 403 comprises two ultra-micro membrane filters in series.
More preferably, in an exemplary embodiment, as shown in FIG. 1, the truffle storage tank 5 comprises four truffle storage tanks 5 connected in series.
More preferably, in an exemplary embodiment, as shown in fig. 1, the output line of the tru tank 5 is connected to an external filling machine.
The external filling machine is used for subsequent packaging.
More preferably, in an exemplary embodiment, the ultraviolet sterilizer is disposed within the truffle storage tank 5 or on a pipe between the filtering device 4 and the truffle storage tank 5.
The ultraviolet sterilizer is used for ensuring the sterilizing effect of the hydrolat.
It is to be understood that the above-described embodiments are illustrative only and not restrictive of the broad invention, and that various other modifications and changes in light thereof will be suggested to persons skilled in the art based upon the above teachings. And are neither required nor exhaustive of all embodiments. And obvious changes and modifications can be made without departing from the scope of the invention.

Claims (10)

1. A rose essential oil extraction system is characterized in that: comprises a stock solution delivery pump, a rose essential oil extraction unit, a steam generator, a filtering device, an ultraviolet sterilizer and a pure dew storage tank; the stock solution conveying pump conveys the stock solution to the rose essential oil extraction unit for circular distillation, the steam generator provides heating steam for the rose essential oil extraction unit, and the rose essential oil extraction unit conveys the extracted hydrolat to the hydrolat storage tank for preservation after filtering through the filtering device and passing through the ultraviolet sterilizer.
2. The rose essential oil extraction system of claim 1, wherein: the rose essential oil extraction unit comprises a heating kettle, a condenser, an oil-water separator, a buffer tank, a circulating water storage tank, a circulating water pump, a hydrolat temporary storage tank and a hydrolat delivery pump; the bottom input tube of heating cauldron is connected steam generator, the top input tube of heating cauldron is connected stoste delivery pump, the top output tube of heating cauldron the top input tube of condenser, the bottom output tube of condenser is passed through the buffer tank and is connected with oil water separator, and oil water separator's output tube is connected with circulating water storage tank and pure dew jar of keeping in respectively, and circulating water storage tank passes through circulating water pump and is connected with the top of heating cauldron, and the pure dew jar of keeping in is connected with filter equipment through the pure dew delivery pump.
3. A rose essential oil extraction system as claimed in claim 1 or 2, wherein: the rose essential oil extractor comprises two groups.
4. The rose essential oil extraction system of claim 2, wherein: and a first valve is arranged on a connecting pipeline between the oil-water separator and the circulating water storage tank, and a second valve is arranged on a connecting pipeline between the oil-water separator and the hydrolat temporary storage tank.
5. The rose essential oil extraction system of claim 1, wherein: the filtering device comprises a primary filtering device, a secondary filtering device and a tertiary filtering device which are connected in sequence, wherein the primary filtering device adopts 120-mesh filtering plant fibers, the secondary filtering device is a microporous membrane filter, and a 5-micron filtering layer is adopted to filter impurities; the third-stage filtering device is an ultramicro membrane filter and adopts a 0.22um filtering layer for precise sterilization.
6. The rose essential oil extraction system of claim 5, wherein: the three-stage filtering device comprises two serially connected ultramicro membrane filters.
7. The rose essential oil extraction system of claim 1, wherein: the pure dew storage tank comprises four pure dew storage tanks which are connected in series.
8. A rose essential oil extraction system as claimed in claim 1 or 7, wherein: and the output pipeline of the pure dew storage tank is connected with an external filling machine.
9. The rose essential oil extraction system of claim 1, wherein: the ultraviolet sterilizer is arranged in the pure dew storage tank or on a pipeline between the filtering device and the pure dew storage tank.
10. The rose essential oil extraction system of claim 1, wherein: the stock solution is obtained by flooding a flower pond.
CN202120118862.XU 2021-01-15 2021-01-15 Rose essential oil extraction system Active CN214528906U (en)

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Application Number Priority Date Filing Date Title
CN202120118862.XU CN214528906U (en) 2021-01-15 2021-01-15 Rose essential oil extraction system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120118862.XU CN214528906U (en) 2021-01-15 2021-01-15 Rose essential oil extraction system

Publications (1)

Publication Number Publication Date
CN214528906U true CN214528906U (en) 2021-10-29

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CN (1) CN214528906U (en)

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