WO2005011396A1 - コーヒー焙煎豆の処理方法および水蒸気処理コーヒー焙煎豆 - Google Patents
コーヒー焙煎豆の処理方法および水蒸気処理コーヒー焙煎豆 Download PDFInfo
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- WO2005011396A1 WO2005011396A1 PCT/JP2004/010653 JP2004010653W WO2005011396A1 WO 2005011396 A1 WO2005011396 A1 WO 2005011396A1 JP 2004010653 W JP2004010653 W JP 2004010653W WO 2005011396 A1 WO2005011396 A1 WO 2005011396A1
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- roasted coffee
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23F—COFFEE; TEA; THEIR SUBSTITUTES; MANUFACTURE, PREPARATION, OR INFUSION THEREOF
- A23F5/00—Coffee; Coffee substitutes; Preparations thereof
- A23F5/10—Treating roasted coffee; Preparations produced thereby
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23F—COFFEE; TEA; THEIR SUBSTITUTES; MANUFACTURE, PREPARATION, OR INFUSION THEREOF
- A23F5/00—Coffee; Coffee substitutes; Preparations thereof
- A23F5/16—Removing unwanted substances
Definitions
- the present invention relates to a method for treating roasted coffee beans and steam-treated roasted coffee beans using the same. More specifically, the present invention relates to a technique for reducing the acidity component of roasted coffee beans and improving the extraction rate of soluble solids.
- Coffee of coffee drinks One of the main ingredients is roasted coffee beans, which are generally referred to as light roast, medium roast, and deep roast in Japan, depending on the degree of roasting.
- a drip extractor is used to extract soluble solids from the ground coffee roasted beans with hot water (90-100 ° C).
- the extraction rate is as follows: ⁇ When coffee is extracted to the limit, components equivalent to 35% of its weight are dissolved, but this includes some unpleasant components, so extraction is usually about 18%. (For example, see Beverage Glossary, Beverage Japan Co., Ltd., page 86).
- Japanese Unexamined Patent Publication No. 2000-342182 discloses a method of modifying coffee beans in which roasted coffee beans are steamed with saturated steam and vacuum-dried to reduce unpleasant acidity and improve quality. Have been. In other words, it is intended to improve coffee beans by supplying water steam to the pot used for the short-time cooking sterilizer and steaming for 5-30 minutes.
- steaming refers to heating using steam as a heat medium.
- indirect heating method in which heat is transmitted through a hot plate through steam, or a combination of direct and indirect heating (for example, see Food Equipment 'Equipment Dictionary, Industrial Research Institute Dictionary Publishing Center, 2002, p.100).
- an object of the present invention is to provide a method for treating roasted coffee beans capable of reducing the sour component of roasted coffee beans, improving the extraction rate, and extracting excellent coffee-derived flavor.
- the present inventors perform steam treatment of roasted coffee beans under high temperature and high pressure to continuously supply steam, and perform steam washing and hydrothermal reaction of roasted coffee beans.
- the analysis of various organic acids in the drain as sour components indicated that formic acid and acetic acid could be specifically removed.
- the extraction ratio was greatly improved by the hydrothermal reaction.
- the first characteristic configuration of the method for treating roasted coffee beans of the present invention is that steam treatment is performed by supplying steam to roasted coffee beans in an aerated state.
- the roasted coffee beans treated in this way have their sour components removed based on the above findings, and the hydrothermal reaction treatment improves the extraction rate of coffee soluble solids.
- the unpleasant odor peculiar to robusta is recovered in the condensate of the discharged steam, and the quality of robusta can be improved at the same time.
- a second characteristic configuration of the method for treating roasted coffee beans of the present invention is that a roasted coffee bean is accommodated in a bean accommodating section provided with a steam supply path and a steam discharge path, and is provided under atmospheric pressure.
- the steam treatment is performed by flowing steam from the steam supply passage to the steam discharge passage so that the steam is discharged from the steam discharge passage at a higher outlet pressure.
- a third characteristic configuration of the method for treating roasted coffee beans of the present invention is that the roasted coffee beans are whole roasted beans and pulverized roasted beans that pass through a mesh of 1.7 mm. And the amount of the crushed roasted beans is 70% by weight or less.
- the present invention is applicable not only to whole roasted beans, but also to coarsely ground roasted coffee beans. Sa Even if the roasted coffee beans are contained, it is possible to suppress the reduction of roast aroma in addition to the desired sour removal effect.
- a fourth characteristic configuration of the method for treating roasted coffee beans of the present invention is that the roasted coffee beans are roasted whole beans.
- the sour component of roasted coffee beans is abundant near the surface layer of the beans that have been strongly roasted, if roasted beans with a low degree of pulverization are used, the sour components can be sufficiently removed. Suppresses loss of aroma components
- roast coffee beans can sufficiently remove sour components even from roasted whole beans. Therefore, if the roasted coffee beans are whole roasted beans, the loss of the aroma components can be suppressed while the sour components are effectively removed, and the roasting power and the extraction rate of the roasted coffee beans are maintained at a high level. be able to.
- a fifth characteristic configuration of the method for treating roasted coffee beans of the present invention is that the amount of steam used for the steam treatment is 10% by weight or more of the weight of the roasted coffee beans. is there.
- a sixth characteristic configuration of the method for treating roasted coffee beans of the present invention resides in that steam is saturated water vapor.
- the sour component in the roasted beans can be efficiently removed by using steam having a high degree of saturation. Therefore, particularly when saturated steam is used, a high sourness removing effect can be exhibited.
- a seventh characteristic configuration of the method for treating roasted coffee beans of the present invention is that the temperature of steam is 100 ° C to 230 ° C.
- the characteristic configuration of the steamed roasted coffee beans of the present invention is roasted coffee beans that have been subjected to steaming by supplying steam in a ventilated state, and the extraction rate of the roasted coffee beans is 3%. At least 5%, the sum of the formic acid content and the acetic acid content based on the roasted coffee beans is 0.25% by weight or less.
- the characteristic configuration of the steamed roasted coffee beans of the present invention is that the roasted coffee beans are stored in a bean storage section provided with a steam supply path and a steam discharge path, and the steam is supplied from the steam supply path.
- the roasted steam-treated coffee beans are those in which the roasted coffee beans have been subjected to steam treatment at high temperature and high pressure, so that the sour components have been sufficiently removed and the extraction rate has been maintained at a high level. ing. As a result, it has become possible to provide coffee beverages that have a rich body with a low acidity and a sufficient aroma.
- the roasting in the present invention refers to roasting generally called coffee, that is, roasting by applying a heat source to raw coffee beans.
- the change in roasting is based on the assumption that the green bean's cell wall receives heat, the aqueous component evaporates gradually, and the tissue shrinks. Produces aroma, bitterness, and sourness to make drinking coffee beans.
- roast coffee beans as used in the present invention means that the above-mentioned roasting process is applied to green coffee beans
- roasting machine, roasting method and roasting degree of the roasted coffee beans used in the present invention are not particularly limited, and ordinary roasted beans can be used.
- arabi varieties, robusta varieties, liberica varieties and the like can be used, and particularly, arabi varieties and mouth busta varieties can be suitably used.
- Departure Akira can be suitably used particularly for varieties having a strong sour taste, and can remove unpleasant odors together with sour taste, and thus can be suitably used for varieties having an unpleasant odor, for example, robusta species.
- a roasting machine for green coffee beans As a roasting machine for green coffee beans, a general roasting machine ⁇ horizontal (horizontal) drum type roastering machine ⁇ can be used. , Far infrared rays, microphone mouth waves, and the like can be used.
- the roasting degree is an eight-stage U.S. name, and it can be used for any of light roast, cinnamon roast, medium roast, high roast, city roast, full city roast, French roast, and Italian roast. it can.
- the sourness of roasted coffee beans can be reduced by steam treatment, it can be used suitably for roasted beans which need to reduce sourness.
- the roasted beans that require a reduction in sourness include beans having a high degree of roasting, and roasted beans that have been subjected to a high-pressure treatment or the like to improve the extraction rate.
- roasted beans with an improved extraction rate have a major problem of improving sourness, so the present invention is suitably used, for example, for roasted beans with an extraction rate of 20% or more. be able to. Therefore, the technique of the present invention can be used in combination with various techniques for improving the extraction rate of coffee beans.
- the particle size of the roasted coffee beans is preferably whole or weakly ground, in order to suppress the loss of coffee-soluble solids due to continuous steam treatment.
- the shape is the most resistant to the loss of coffee-soluble solids due to continuous steaming.
- Whole (unmilled) roasted beans can be suitably used.
- ground products extreme ground, etc. may be used as long as the loss of coffee-soluble solids by continuous steam treatment is allowed.
- the apparatus and method are not particularly limited as long as steam can be substantially continuously passed.
- Steam may be intermittently or stepwise circulated. Either carry out the process with the exhaust valve always open, or if the exhaust valve is semi-continuously open and steam can pass through the roasted coffee beans.
- the type of the apparatus for performing the steam treatment is not particularly limited, and a horizontal or vertical apparatus, a batch apparatus, or a continuous apparatus that can control continuous steam processing can be used.
- a pressure vessel generally, when a target to be processed is subjected to steam treatment, when the pressure reaches a predetermined pressure or temperature, the exhaust valve is closed and a predetermined time is maintained.
- the exhaust valve performs processing in an open state continuously or semi-continuously.
- the processing flow rate of the steam per unit time is not particularly limited as long as it has a flow rate capable of removing the acid. For example, it is preferably 0.1 to 100 kg / hour per 1 kg of roasted coffee beans.
- the steam generator is not particularly limited, and a steam boiler, a Japanese pot, or the like can be used.
- the water quality of the steam is preferably pure steam, which is steam generated from pure water, but is not particularly limited as long as it can be used for food processing.
- An appropriate amount may be added to generate steam. If the quality of the processed roasted beans after treatment is within the acceptable range, steam may be partially circulated for energy saving.
- the type of steam is not particularly limited in principle, and saturated steam, superheated steam, supersaturated water steam, or the like can be used. If the effect of improving the extraction rate of roasted beans is also expected, the temperature condition of steam can be set to about 100 ° C or more. move on. As described above, under the condition where the generation of the acid occurs in the roasted beans in parallel, a highly saturated steam having a high acid removing effect, particularly a saturated water vapor can be suitably used.
- the type of steam is not particularly limited, and saturated steam, superheat Water vapor, supersaturated steam, etc. can be used.
- the temperature and pressure conditions of the steam are in principle to remove sour components and unpleasant odors.
- a flow of water vapor may be used.
- the treatment be performed under a pressurized condition, in particular, 0.1 to 3. OMPa.
- the temperature range for generating this pressure condition varies depending on the type of steam. Generally, in the case of power-saturated steam that can use steam at 100 ° C to 300 ° C, the above pressure can be obtained by setting the temperature range to about 100 ° C to 230 ° C. More preferably, the pressure (about 0.1%) is a condition for increasing the extraction efficiency of coffee soluble solids by hydrothermal reaction.
- roasted coffee beans are stored in a bean storage section provided with a steam supply path and a steam discharge path, and the water vapor is supplied at an outlet pressure higher than atmospheric pressure. Water vapor is circulated from the water vapor supply path to the water vapor discharge path so that the water vapor is discharged from the discharge path.
- a main control method it is possible to control the environmental temperature and pressure by using the correlation between the temperature and pressure of the supplied steam. Specifically, for the shape and material of any processing tank, design and select the appropriate pipe diameter, pipe material, number of pipes, etc. for the aerated water vapor, and further freely control the pipes with a control valve, etc. By using a processing tank equipped with a controllable device, it is possible to maintain the inside of the channel processing tank at a desired constant pressure environment and to aerate the steam at the required supply flow rate.
- the flow direction of the steam when the roasted coffee beans are continuously steamed and the roasted coffee beans to be processed are from top to bottom, from bottom to top, from outside to inside, and from inside. To the outside direction.
- the discharged steam uses a condenser or the like rather than exhausting it directly. It is preferable to condense and collect as an aqueous solution. In some cases, the aerated steam may be circulated and used again for processing roasted coffee beans. The condensate recovers sour components and unpleasant odor components from Robusta coffee roasted beans.
- the roasted coffee beans of the present invention thus treated with the water vapor from which the sour components have been removed are cooled, dried (vacuum dried, hot-air dried, etc.) and then stored in a silo or the like by a conventional method. be able to.
- the steamed roasted coffee beans according to the present invention are one of the coffee raw materials for coffee beverages.
- roasted coffee beans regular coffee beans
- instant coffee liquid coffee extract
- liquid coffee extract liquid coffee extract
- the manufacturing process of canned coffee beverages is, for example, “crushing (regi-yura-one coffee beans and roasted coffee beans)”, “extraction”, “mixing”, “filtration”, “filling”, “sealing”, “sterilization”, “cooling” It can be manufactured in a "boxing” process.
- roasted coffee beans may be used to prepare instant coffee, liquid coffee extract and the like.
- Brix was measured by using ATAGO RX-5000 ⁇ and dropping about 0.5 ml of the immersion liquid into the measuring dish. Acidity, the titratable acidity was measured and titrated immersion liquid at 0. IN NaOH until P H7, it was expressed in an amount of 0. IN Na_ ⁇ _H required for titration (ml).
- Table 1 shows the results.
- the acidity per Brix was as low as 6.1 force 9.2 for leachates at temperatures below 95 ° C, but for leachate at 100 ° C the acidity per Brix was 5
- the roasted coffee beans were steamed with water vapor (gas phase treatment) and immersed in water (liquid phase treatment).
- the treated beans and the untreated beans were extracted, and the extraction ratio and pH were measured.
- 500 ml of hot water at 95 ° C was added to 50 g of the ground beans of each bean, and extraction was performed for 5 minutes, and the pH, soluble solids (Brix), and extraction rate of the extract were evaluated.
- the extraction ratio * was calculated from the Brix (B) of the extract, the amount of the collected liquid (A), and the weight of the ground beans (C) according to the following formula.
- the sour components (organic acids) of the treated beans and the untreated beans were analyzed (Fig. 1).
- the analysis was performed by grinding each bean, extracting with 0.5% perchloric acid (taenoic acid, malic acid, succinic acid, lactic acid, formic acid, acetic acid) or water (tartaric acid, fumaric acid) and filtering. After the solution was prepared, it was performed using a high performance liquid chromatograph method, and represented by the amount of organic acid per weight of coffee beans.
- perchloric acid taenoic acid, malic acid, succinic acid, lactic acid, formic acid, acetic acid
- water tartaric acid, fumaric acid
- drain a condenser by steam treatment
- About 2 L of drain was obtained per kg of roasted coffee beans.
- the soluble solids (Brix) and sour components (organic acids) in the drain were analyzed.
- the Brix of the drain was 0.11 (solid content of 1.lgZU. When converted to the weight of roasted coffee beans, only about 0.2% (about 2.2gZkg) of soluble solid content eluted into the drain. Thus, it was found that even after the steam treatment, the loss of the soluble component was sufficiently small.
- the sour component (organic acid) of the drain was analyzed ( Figure 2).
- the analysis was performed using a high-performance liquid chromatograph after preparing a test solution from which drain was filtered, and the amount of organic acid per weight of drain was expressed.
- formic acid and acetic acid were specifically detected as sour components. From the above results, it was found that aeration of steam into roasted beans can specifically remove sour components in roasted beans, particularly formic acid and acetic acid, which impair the soluble components in roasted beans.
- Example 4 As a method for increasing the efficiency of removing sour components, a method of aerating steam was studied. At the same time, we thought that by performing a hydrothermal reaction at a high temperature in a pressure vessel, it would be possible to improve the extraction rate of soluble solids of roasted coffee beans.
- aeration treatment is not performed, that is, steam is supplied to the pressure vessel from the steam inlet pipe, and when the pressure in the vessel reaches 1.3 MPa (194 ° C), the valve of the outlet pipe is closed. Except for the treatment, the treatment was carried out under the same conditions as for the treated beans 1 to obtain control beans.
- the roasted coffee beans before being subjected to the aeration treatment with steam were regarded as untreated beans. Furthermore, in order to evaluate the properties of the steam to be subjected to the aeration treatment, superheated steam of 0.2 MPa (194 ° C) was used and passed at a flow rate of 100 kg / h per 1 kg of roasted coffee beans. 2MPa (194 ° C), 4 minutes of processing, to obtain a roasted coffee bean 2 of the present processing.
- the collected liquid is referred to as drain
- the soluble solid content (Brix) of the drain and the sour component ( Organic acid) was analyzed.
- the organic acid analysis of the drain was performed in the same manner as in Example 3, and the weight of the drain was determined. It was expressed by the amount of organic acid per unit. The results are shown in Figure 3. As is clear from the figure, formic acid and acetic acid were specifically removed as sour components.
- the treated beans 1, the treated beans 2, the control beans, and the untreated beans were dried * crushed and the extract was evaluated. That is, 500 ml of hot water at 95 ° C was added to 50 g of ground beans, and extraction was performed for 5 minutes, and the extraction rate of the extract and the contents of formic acid and acetic acid were analyzed.
- the extract of this treated bean 1 has a lower content of formic acid and acetic acid than the extract of the control bean and the untreated bean, and the extract of this treated bean 1 is the control bean.
- the acidity was lower than that of the extract of untreated beans. It is considered that the reason for this treated bean 1 was that the sour component was removed from the drain.
- the extract of the treated beans 2 also has a lower formic acid and acetic acid content than the extracts of the control beans and the untreated beans, the steam used for the aeration treatment is not only saturated steam but also superheated steam. However, it was found that the effect of removing sour components was observed.
- the aeration process is not performed, that is, steam is supplied to the pressure vessel from the steam inlet pipe, and when the pressure in the vessel reaches 1.0 MPa (180 ° C), the valve of the outlet pipe is closed to perform the process.
- 1.0 MPa 180 ° C
- the obtained treated beans and control beans are dried and pulverized, 500 ml of hot water at 95 ° C is added to 50 g of the pulverized beans, and the mixture is extracted for 5 minutes. The content was measured and the acidity was evaluated by a specialized panelist. The evaluation of sourness was made by a scoring method.
- the obtained treated beans are dried and pulverized, and 50 g of the pulverized beans are heated with 500 ml of hot water at 95 ° C and extracted for 5 minutes, and the formic acid and acetic acid content of the obtained extract is determined.
- the roasted fragrance peculiar to the arabi species was evaluated.
- the evaluation of the roasted incense was performed by the scoring method,
- Table 7 shows the results. As is clear from Table 7, the extraction rate of this treated bean was about 1.6 times higher than that of the untreated bean. From the evaluation score of the robusta odor, it can be seen that the treated product has less robusta odor than the untreated product.
- the protein is Kjeldahl method
- Lipids are obtained by Soxhlet extraction method (petroleum ether),
- Dietary fiber is an enzyme-weight method
- FIG. 4 shows the results.
- the moisture content of both beans was 2% and 3%.
- the treated beans showed a decrease in dietary fiber of about 10% or more, a 6% increase in carbohydrates and an increase in lipid power compared to untreated beans.
- the main reason why the extraction rate was improved was considered to be that the dietary fiber was degraded due to the hydrothermal reaction under high temperature and high pressure, and the sugars and lipids increased, considering the basic components.
- the extraction rate was 32.2. /. Met.
- about 800 ml of Brix 2.5 extract was obtained for the untreated beverage, and the extraction rate was 20.2%.
- the flavor was evaluated by a score method using five expert panelists, and the average score was calculated.
- Table 8 shows the results. As for the score of the flavor evaluation, the treated beverage obtained a better score than the untreated beverage. In addition, the comment that this treated beverage was rich and thick was obtained. This comment appeared to reflect an increase in the extraction rate. Further, the evaluation score of the robusta odor was such that the treated beverage had less robusta odor than the untreated beverage.
- FIG. 5 shows the results.
- the decrease in pH was 0.22 and 0.38, respectively, compared to 1 week and 2 weeks after the treatment of the untreated beverage.
- the decrease in pH was 0.13 and 0.25, respectively, indicating that the treated beverage had a lower pH decrease than the untreated beverage.
- a black coffee beverage was manufactured using the roasted coffee beans of the present invention.
- the other manufacturing conditions were the same as in Example 3, to obtain 2 kg of the processed coffee roasted beans according to the present invention.
- 40 g of the coffee roasted bean ginseng product was pulverized, drip-extracted with 400 ml of pure water at 60 ° C. for 20 minutes, and then subjected to solid-liquid separation to obtain an extract.
- the extraction rate of the extract of this processed beverage was 30.4%, which indicates that the extraction efficiency of coffee-soluble solids is high.
- it has a low acidity and an excellent body derived from coffee. I was
- roasted coffee beans can be obtained.
- FIG. 1 is a graph showing organic acid analysis of roasted coffee beans before and after continuous aeration.
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Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
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JP2005512492A JP4551329B2 (ja) | 2003-07-31 | 2004-07-27 | コーヒー焙煎豆の処理方法および水蒸気処理コーヒー焙煎豆 |
ES04747966.2T ES2533453T3 (es) | 2003-07-31 | 2004-07-27 | Método para tratar granos de café tostados y granos de café tostados tratados con vapor |
US10/566,896 US20070092613A1 (en) | 2003-07-31 | 2004-07-27 | Method of roasted coffee beans treatment and steam-treated roasted coffee beans |
EP04747966.2A EP1654935B1 (en) | 2003-07-31 | 2004-07-27 | Method of treating roasted coffee beans and vapor-treated roasted coffee beans |
CN2004800216778A CN1829444B (zh) | 2003-07-31 | 2004-07-27 | 焙煎咖啡豆的处理方法及水蒸气处理焙煎咖啡豆 |
US12/816,610 US20100255166A1 (en) | 2003-07-31 | 2010-06-16 | Method of roasted coffee beans treatment and steam-treated roasted coffee beans |
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JP2003-283818 | 2003-07-31 | ||
JP2003283818 | 2003-07-31 |
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US12/816,610 Continuation US20100255166A1 (en) | 2003-07-31 | 2010-06-16 | Method of roasted coffee beans treatment and steam-treated roasted coffee beans |
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WO2005011396A1 true WO2005011396A1 (ja) | 2005-02-10 |
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PCT/JP2004/010653 WO2005011396A1 (ja) | 2003-07-31 | 2004-07-27 | コーヒー焙煎豆の処理方法および水蒸気処理コーヒー焙煎豆 |
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US (2) | US20070092613A1 (ja) |
EP (1) | EP1654935B1 (ja) |
JP (1) | JP4551329B2 (ja) |
CN (1) | CN1829444B (ja) |
ES (1) | ES2533453T3 (ja) |
TW (1) | TW200505353A (ja) |
WO (1) | WO2005011396A1 (ja) |
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JP2006262835A (ja) * | 2005-03-25 | 2006-10-05 | Suntory Ltd | コーヒー焙煎豆の水蒸気処理方法 |
JPWO2006080334A1 (ja) * | 2005-01-28 | 2008-06-19 | サントリー株式会社 | オリゴ糖高含有コーヒー豆加工方法 |
WO2009081937A1 (ja) | 2007-12-26 | 2009-07-02 | Suntory Holdings Limited | 糖富化コーヒー焙煎豆の処理方法、コーヒー焙煎豆、及びコーヒー飲料 |
JP2011083282A (ja) * | 2009-09-18 | 2011-04-28 | Ogawa & Co Ltd | コーヒー抽出物の製造方法 |
WO2014104070A1 (ja) | 2012-12-28 | 2014-07-03 | 花王株式会社 | 焙煎コーヒー豆の製造方法 |
WO2015099110A1 (ja) * | 2013-12-27 | 2015-07-02 | 花王株式会社 | ソリュブルコーヒー |
JP2016104036A (ja) * | 2016-03-01 | 2016-06-09 | 花王株式会社 | 焙煎コーヒー豆 |
US9706784B2 (en) | 2011-03-07 | 2017-07-18 | Kao Corporation | Roasted coffee beans |
WO2021006205A1 (ja) | 2019-07-08 | 2021-01-14 | サントリーホールディングス株式会社 | 低カフェインコーヒー濃縮液 |
WO2022230798A1 (ja) * | 2021-04-30 | 2022-11-03 | サントリーホールディングス株式会社 | コーヒー焙煎豆、コーヒーエキス、及びその製造方法 |
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TWI469737B (zh) * | 2005-01-28 | 2015-01-21 | Suntory Beverage & Food Ltd | Can be processed into high green base of coffee beans method |
CN103220918B (zh) * | 2010-11-24 | 2015-05-13 | 花王株式会社 | 煎焙咖啡豆提取物的制造方法 |
DK2975948T3 (en) * | 2013-03-21 | 2017-05-08 | Novozymes As | Process for making roasted coffee beans |
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CN110463805A (zh) * | 2019-08-08 | 2019-11-19 | 李镇南 | 一种冷溶冻干咖啡及其制备方法 |
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- 2004-07-27 ES ES04747966.2T patent/ES2533453T3/es not_active Expired - Lifetime
- 2004-07-27 EP EP04747966.2A patent/EP1654935B1/en not_active Expired - Lifetime
- 2004-07-27 WO PCT/JP2004/010653 patent/WO2005011396A1/ja active Application Filing
- 2004-07-27 JP JP2005512492A patent/JP4551329B2/ja not_active Expired - Lifetime
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Cited By (17)
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JPWO2006080334A1 (ja) * | 2005-01-28 | 2008-06-19 | サントリー株式会社 | オリゴ糖高含有コーヒー豆加工方法 |
WO2006104009A1 (ja) * | 2005-03-25 | 2006-10-05 | Suntory Limited | コーヒー焙煎豆の水蒸気処理方法 |
US20090053373A1 (en) * | 2005-03-25 | 2009-02-26 | Kenji Teramoto | Processes for treating roasted coffee beans with steam |
JP4732777B2 (ja) * | 2005-03-25 | 2011-07-27 | サントリーホールディングス株式会社 | コーヒー焙煎豆の水蒸気処理方法 |
JP2006262835A (ja) * | 2005-03-25 | 2006-10-05 | Suntory Ltd | コーヒー焙煎豆の水蒸気処理方法 |
WO2009081937A1 (ja) | 2007-12-26 | 2009-07-02 | Suntory Holdings Limited | 糖富化コーヒー焙煎豆の処理方法、コーヒー焙煎豆、及びコーヒー飲料 |
JP5232172B2 (ja) * | 2007-12-26 | 2013-07-10 | サントリーホールディングス株式会社 | 糖富化コーヒー焙煎豆の処理方法、コーヒー焙煎豆、及びコーヒー飲料 |
JP2011083282A (ja) * | 2009-09-18 | 2011-04-28 | Ogawa & Co Ltd | コーヒー抽出物の製造方法 |
US9706784B2 (en) | 2011-03-07 | 2017-07-18 | Kao Corporation | Roasted coffee beans |
WO2014104070A1 (ja) | 2012-12-28 | 2014-07-03 | 花王株式会社 | 焙煎コーヒー豆の製造方法 |
JP2014140359A (ja) * | 2012-12-28 | 2014-08-07 | Kao Corp | 焙煎コーヒー豆の製造方法 |
WO2015099110A1 (ja) * | 2013-12-27 | 2015-07-02 | 花王株式会社 | ソリュブルコーヒー |
JP2015142565A (ja) * | 2013-12-27 | 2015-08-06 | 花王株式会社 | ソリュブルコーヒー |
RU2683490C2 (ru) * | 2013-12-27 | 2019-03-28 | Као Корпорейшн | Растворимый кофе |
JP2016104036A (ja) * | 2016-03-01 | 2016-06-09 | 花王株式会社 | 焙煎コーヒー豆 |
WO2021006205A1 (ja) | 2019-07-08 | 2021-01-14 | サントリーホールディングス株式会社 | 低カフェインコーヒー濃縮液 |
WO2022230798A1 (ja) * | 2021-04-30 | 2022-11-03 | サントリーホールディングス株式会社 | コーヒー焙煎豆、コーヒーエキス、及びその製造方法 |
Also Published As
Publication number | Publication date |
---|---|
EP1654935A1 (en) | 2006-05-10 |
CN1829444A (zh) | 2006-09-06 |
CN1829444B (zh) | 2010-07-21 |
JPWO2005011396A1 (ja) | 2007-10-04 |
EP1654935A4 (en) | 2006-08-30 |
TWI361049B (ja) | 2012-04-01 |
TW200505353A (en) | 2005-02-16 |
US20100255166A1 (en) | 2010-10-07 |
US20070092613A1 (en) | 2007-04-26 |
ES2533453T3 (es) | 2015-04-10 |
EP1654935B1 (en) | 2015-02-25 |
JP4551329B2 (ja) | 2010-09-29 |
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