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    • 2. 发明申请
    • FINE DIRECT REDUCED IRONS CONTAINING IRON CARBIDE AND PREPARATION APPARATUS THEREOF
    • 含有碳化铁的细直接还原铁及其制备装置
    • WO2012047041A3
    • 2012-05-31
    • PCT/KR2011007412
    • 2011-10-06
    • POSCOKIM HYUN SOOYI SANG-HOCHO MINYOUNG
    • KIM HYUN SOOYI SANG-HOCHO MINYOUNG
    • C22B1/16
    • C21B13/00C21B13/0073C21B13/0086Y02P10/136
    • Disclosed are fine direct reduced irons containing iron carbide and a preparation apparatus thereof. The fine direct reduced irons containing iron carbide of the present invention contains 20-30 wt% of iron carbide by reducing poorly reducible ultrafine ore in a reduction furnace and forming iron carbide on the surface by carbonization in a carbonization furnace. The apparatus for preparing fine direct reduced irons containing iron carbide of the present invention can effectively reduce and carbonize fine iron ore by selectively using hydrogen sulfide contained in a reducing gas in a carbonization furnace and a reduction furnace. The carbon content in fine direct reduced irons is increased by applying fine direct reduced irons containing iron carbide of the present invention, thereby improving melting properties, and it is possible to reduce fuel costs due to the increase of reduction and melting velocities.
    • 公开了含有碳化铁的精细直接还原铁及其制备装置。 本发明的含有碳化铁的细直接还原铁在还原炉中还原难还原性超细矿石,并通过在碳化炉中碳化而在表面形成碳化铁,从而含有20〜30重量%的碳化铁。 本发明的用于制备含有碳化铁的细直接还原铁的设备能够通过选择性地使用还原气体中包含的硫化氢在碳化炉和还原炉中有效地还原和碳化细铁矿石。 通过使用含有本发明的碳化铁的细直接还原铁,可以提高精细直接还原铁中的碳含量,从而提高熔融性能,并且由于还原速度和熔化速度的增加,可以降低燃料成本。
    • 4. 发明申请
    • METHOD FOR ISSUING AN ELECTRONIC RECEIPT
    • 用于发出电子接收的方法
    • WO2012064026A3
    • 2012-07-19
    • PCT/KR2011007837
    • 2011-10-20
    • KIM HYUN SOOFAR EAST EMPIRE GROUP KOREAHAN DAE HEEKIM DONG HUN
    • KIM HYUN SOOHAN DAE HEEKIM DONG HUN
    • G06Q20/00H04B5/02
    • G06Q20/0453
    • The present invention relates to a method for issuing an electronic receipt, and more particularly, to a method for issuing an electronic receipt without a paper receipt, which involves transmitting an electronic receipt, including payment details or a key value corresponding to the electronic receipt information, to the mobile terminal of a customer after a product is purchased or a service is received. The method for issuing an electronic receipt according to the present invention includes: making a payment by transmitting payment detail information from the terminal of the merchant to a payment server, and requesting payment authorization when the customer purchases a product or receives a service from the merchant; transmitting payment detail information from the payment server to an operating server when the payment at the terminal of the merchant is completed by the payment server; generating and storing an electronic receipt on the basis of the payment detail information in the operating server; and confirming the electronic receipt information by transmitting the electronic receipt from the operating server to the mobile terminal of the customer and receiving said electronic receipt at the mobile terminal of the customer.
    • 本发明涉及一种用于发行电子收据的方法,更具体地说,涉及发送无纸收据的电子收据的方法,该方法涉及发送包括支付细节或与电子收据信息对应的键值的电子收据 在购买产品或接收服务之后向客户的移动终端发送。 根据本发明的发行电子收据的方法包括:通过从商家的终端向支付服务器发送支付详细信息进行支付,并且在客户购买产品或从商家接收服务时请求支付授权 ; 当由所述支付服务器完成所述商户的终端的支付时,将支付详细信息从所述支付服务器发送到操作服务器; 基于操作服务器中的支付详细信息生成和存储电子收据; 以及通过将来自操作服务器的电子收据发送到客户的移动终端并在客户的移动终端处接收所述电子收据来确认电子收据信息。
    • 5. 发明申请
    • ETHANOL-, HEAT- OR FURFURAL- RESISTANT YEAST STRAIN, AND GENE THEREOF
    • 乙醇,热或糠醛抗性酵母菌株及其基因
    • WO2011132835A3
    • 2011-12-22
    • PCT/KR2010007863
    • 2010-11-09
    • UNIV EWHA IND COLLABORATIONCHOI WON JAKIM HYUN SOO
    • CHOI WON JAKIM HYUN SOO
    • C12N1/19C12N15/31C12N15/81C12P7/06C12R1/85
    • C12P7/06C07K14/395C12N9/0006C12P7/10C12Y101/01205C12Y302/01015Y02E50/16Y02E50/17Y02P20/125
    • The present invention relates to an ethanol-, heat- or furfural- resistant transformed yeast strain comprising: inactivated CMP2 or IMD4 gene (Tn-1); SSK2 or PPG1 gene (Tn-2); PAM1 gene (Tn-3); DLD3 gene (Tn-4); or MSN2 gene (Tn-5), and a use thereof. The yeast strain of the present invention can grow in high concentrations of ethanol, preferably in high concentrations of ethanol (for example, 5-15%). In addition, the yeast strain of the present invention includes a yeast strain capable of growing even at a high temperature (for example, 42 ? or 43 ?) or even in a high concentration of furfural (for example, 15-50 mM). Therefore, the yeast strain of the present invention can more effectively produce ethanol in conditions of high temperature, high concentration of ethanol and high concentration of furfural which are necessary for an integrated process for overcoming existing ineffective multistep processes.
    • 本发明涉及抗乙醇,耐热或糠醛转化的酵母菌株,其包含:灭活的CMP2或IMD4基因(Tn-1); SSK2或PPG1基因(Tn-2); PAM1基因(Tn-3); DLD3基因(Tn-4); 或MSN2基因(Tn-5)及其用途。 本发明的酵母菌株可以在高浓度的乙醇中生长,优选在高浓度的乙醇(例如5-15%)中生长。 另外,本发明的酵母菌株包含即使在高温(例如42℃或43℃)下甚至在高浓度糠醛(例如15-50mM)下也能够生长的酵母菌株。 因此,本发明的酵母菌株可以在高温,高浓度乙醇和高浓度糠醛的条件下更有效地生产乙醇,这是用于克服现有的无效多步骤过程的综合过程所必需的。