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    • 4. 发明公开
    • CIGARETTE HEATING DEVICE
    • EP3799730A1
    • 2021-04-07
    • EP19934339.3
    • 2019-07-12
    • China Tobacco Guangdong Industrial Co., Ltd.
    • ZHAO, RuifengHU, JingLI, FengWU, GuizhouZHANG, YanjunLIU, YiboYE, Rongfei
    • A24F13/02A24F13/08
    • The invention relates to the field of electrically heated tobacco devices, and more particularly, to a cigarette heating device. The cigarette heating device includes a cigarette holder, a heating cavity and a base which are connected in sequence, a top end of the heating cavity is communicated with the cigarette holder, the heating cavity is connected with a power supply device, and the power supply device is disposed at the base. The heating cavity includes a shell and a heating assembly for heating and baking a cigarette, the heating assembly is electrically connected with the power supply device, the shell surrounds an outer side of the heating assembly, and two ends of the shell are connected with the cigarette holder and the base, respectively; and an air passage is disposed at a bottom end of the shell, and the heating cavity is communicated with an external environment through the air passage for air to enter and exit the heating cavity. The design of the invention allows the air to enter and exit from the bottom end of the heating cavity of the cigarette heating device, has a short air channel path, and reserves sufficient air reserves and smoke reserves; and meanwhile, an effective heat insulation structure is further disposed for heat insulation of the cigarette heating device.
    • 10. 发明公开
    • METHOD FOR DETERMINING PECTIN CONTENT IN PLANT SAMPLE
    • EERER PFLANZENPROBE VERFAHREN ZUR BESTIMMUNG DES PECTINGEHALTS
    • EP2664909A1
    • 2013-11-20
    • EP11855821.2
    • 2011-12-12
    • China Tobacco Guangdong Industrial Co., Ltd.
    • KONG, HaohuiHUANG, YifeiJIN, Baofeng
    • G01N21/33G01N21/78G01N1/34
    • G01N21/78C12Q1/34G01N1/4005G01N1/4044G01N2333/415G01N2333/42G01N2333/924Y02E50/17
    • Disclosed is a method for determining pectin content in a plant sample, comprising the following steps: 1) adding an acidic alcohol solution to the plant sample, then heating the resulting mixture to reflux in a water bath, followed by a first filtration; 2) soaking the filtered residue obtained from the first filtration with an acidic solution, then heating the resulting mixture to reflux in a water bath, followed by a second filtration, then bringing to volume after cooling, obtaining filtrate for later use; 3) adding an acetic acid/sodium acetate buffer solution to treat the filtered residue obtained from the second filtration, then adding a pectinase solution and heating the resulting mixture under vibration in a water bath, followed by a third filtration to obtain a filtrate for later use; 4) sequentially adding an acetic acid/sodium acetate buffer solution and a pectinase solution to the filtrate obtained in step 2) and heating the resulting mixture under vibration in a water bath to obtain an enzymatic hydrolysate, then adding the filtrate obtained in step 3) to the enzymatic hydrolysate followed by bringing to volume, obtaining a test solution; and 5) drawing the test solution into a continuous flow analyzer to perform analysis. The method disclosed has the advantage of providing accurate analysis results.
    • 公开了一种测定植物样品中果胶含量的方法,包括以下步骤:1)向植物样品中加入酸性醇溶液,然后将所得混合物在水浴中加热回流,然后进行第一次过滤; 2)用酸性溶液浸渍从第一次过滤获得的过滤残留物,然后在水浴中将所得混合物加热回流,然后进行第二次过滤,然后冷却后使其体积,得到滤液供以后使用; 3)加入乙酸/乙酸钠缓冲溶液处理从第二次过滤获得的过滤残渣,然后加入果胶酶溶液,并在水浴中振动加热所得混合物,然后进行第三次过滤,得到滤液 使用; 4)依次向步骤2)中得到的滤液中加入乙酸/乙酸钠缓冲液和果胶酶溶液,并在水浴中振动加热所得混合物,得到酶水解产物,然后加入步骤3)中得到的滤液, 到酶水解产物,然后体积,得到测试溶液; 和5)将测试溶液拉入连续流量分析仪进行分析。 所公开的方法具有提供精确分析结果的优点。