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    • 1. 发明申请
    • SYSTEM AND METHOD FOR PRODUCTION OF MEMBRANE
    • 膜生产系统及方法
    • WO2013164840A2
    • 2013-11-07
    • PCT/IN2013/000145
    • 2013-03-12
    • YADAV GANAPATI DADASAHEB CHEMICAL ENGINEERING DEPARTMENT, INSTITUTE OF CHEMICAL TECHNOLOGY
    • KUNDE GAJANAN BHIMROAJIBABU C.ANAND
    • B01D67/00
    • B01D67/0048B01D71/024B01D2323/42C04B35/111C04B35/46C04B35/486C04B35/50C04B35/624C04B2235/3217C04B2235/441C04B2235/443C04B2235/444C04B2235/449C04B2235/6023C04B2235/606C04B2235/6562C04B2235/6565
    • System and method for production of membrane having high strength, enhanced thermal stability and chemical resistance comprising of at least two furnace plates, at least one heating coils encased in ceramic disc housing, metal sheet and base. Perforated ceramic discs of the invention are mounted on a movable stand and equipped with heating mantle, insulation and is encased in a metallic cover. The pores present on ceramic disc not only helps in dissipation of gases emanating from heating of wet metal oxide gel diaphragms but also conducts the heat from heating coil to it. The pores in the ceramic disc plays dual role i.e. exit of trapped water and other organic matter as well as entry of heat towards the wet gel films for faster drying. On the other hand the perforated ceramic disc has a major role to play in preventing the deformation likely to occur during sintering of semidried metal oxide gel diaphragms by putting a vertical pressure and controlling its morphology as the heating progresses towards high temperature in controlled manner. By means of this setup the semidried gel diaphragms are calcined at high temperatures to get the desired flawless plain porous ceramic membranes and all operations are done smoothly.
    • 用于制造具有高强度,增强的热稳定性和耐化学性的膜的系统和方法,包括至少两个炉板,至少一个加热线圈,其包裹在陶瓷盘壳体,金属片和基座中。 本发明的穿孔陶瓷盘安装在可移动的支架上,并配有加热套,绝缘层,并被封装在金属盖中。 陶瓷盘上存在的孔不仅有助于散发从湿金属氧化物凝胶膜片加热产生的气体,而且还将加热线圈的热量传导到其上。 陶瓷盘中的孔具有双重作用,即捕获的水和其它有机物质的出口以及向湿凝胶膜进入热量以加速干燥。 另一方面,穿孔陶瓷盘在防止半干式金属氧化物凝胶膜片烧结过程中出现的变形中起主要作用,通过放置垂直压力并控制其形态,随着加热以受控的方式朝向高温进行。 通过该设置,半干凝胶膜在高温下煅烧,得到所需的无瑕疵的普通多孔陶瓷膜,所有操作都顺利进行。
    • 2. 发明申请
    • EVOLVED BIOMETRIC SYSTEM WITH ENHANCED FEATURE AND METHOD FOR THE SAME
    • 具有增强特征的演化生物测定系统及其方法
    • WO2013051019A1
    • 2013-04-11
    • PCT/IN2012/000433
    • 2012-06-18
    • GHATALIA, Jinav Sandeep
    • GHATALIA, Jinav SandeepGHATALIA, Sandeep HarshadDESAI, Neetin ShivajiraoTHAKAR, Devang Kaushik
    • G07C9/00G06K19/00G06Q20/00
    • G06F21/32G06Q20/108G06Q20/206G06Q20/40145G07C9/00158H04L63/0861
    • Thus according to the basic aspect of the present invention there is provided an evolved biometric authentication system providing more than 99% accuracy and is precise as it uses multiple biometrics to identify and authenticate a live individual. This evolved biometric system provides real time verification and authentication. The biometrics characteristic data obtained from the individual at the time of identification and authentication is compared with the previously registered biometrics characteristic data at the time of user registration, said system comprises of multiple biometric instruments, a processing unit, a database, and means of access (output), and the method of biometric identification using multimodal biometric authentication device for authenticating a user enrolled/captured biometric and its means of access (output) with more than 99% accuracy, where initially characteristics image of a biometric feature an individual are captured, then the captured image/information undergoes process of converting, encrypting, and storing the above images in a computer/central processing unit with the help of software program in an integrated method which avoids overlapping of the multiple images an Individual as well as different individuals enabling easy, concise and fast retrieval of the desired biometric data pertaining to an individual. Further this captured data/image/information is matched or compared and verified with the enrolled data to identify or authenticate his or her identification. Then the means of access (output) is used as application in various field as token based identification system or knowledge based identification system.
    • 因此,根据本发明的基本方面,提供了一种演进的生物统计认证系统,该系统提供超过99%的准确度,并且因为其使用多个生物统计学来识别和认证活的个体而精确。 这个演变生物识别系统提供实时验证和认证。 将在识别和认证时从个体获得的生物特征数据与在用户注册时的先前注册的生物特征数据进行比较,所述系统包括多个生物测量仪器,处理单元,数据库和访问装置 (输出)以及使用多模式生物认证装置进行生物特征识别的方法,用于以超过99%的准确度对用户登记/捕获的生物特征及其访问(输出)的装置进行认证,其中最初捕获个体的生物特征的特征图像 ,那么在软件程序的帮助下,所采集的图像/信息经历了将上述图像转换,加密和存储在计算机/中央处理单元中的过程,该综合方法避免了多个图像个体以及不同个体 使简单,简洁和快速检索所需的生物特征 有关个人的ric数据。 此外,捕获的数据/图像/信息与登记的数据匹配或比较并验证,以识别或验证他或她的识别。 然后,访问(输出)手段被用作各种领域的应用程序,如基于标记的识别系统或基于知识的识别系统。
    • 10. 发明申请
    • NOVEL AMINO ACID/PEPTIDE-ZINC HYBRID NANOMATERIALS AND PROCESS OF PREPARATION THEREOF
    • 新型氨基酸/多肽 - 杂化纳米材料及其制备方法
    • WO2017068548A1
    • 2017-04-27
    • PCT/IB2016/056356
    • 2016-10-21
    • BHANAGE, Bhalchandra Mahadeo
    • BHANAGE, Bhalchandra MahadeoAHIRE, Jayendra PanditBHOSALE, Manohar Atmaram
    • B82Y30/00
    • B82Y30/00B01J20/28007
    • The present invention relates to a novel amino acid/polypeptide-zinc oxide/ hydroxide hybridized nanomaterials and a preparation method thereof. The present invention further discloses the different type of hybrid nanomaterials comprising at least one amino acids and zinc oxide/hydroxide. The said nanomaterials are of definite crystal morphology. The process provided by the invention is simple, economic, and environmentally friendly and it has the advantage of providing controlled crystal morphology over uniform size. These hybrid materials may be further use in photodiodes and solar cells. The safety of metal- peptide complexes is enhanced by the use of natural amino acids and by improving its bioavailability to minimize the amount of metal added to the feed to meet the nutritional requirements of animals.
    • 本发明涉及新型氨基酸/多肽 - 氧化锌/氢氧化物杂化纳米材料及其制备方法。 本发明进一步公开了包含至少一种氨基酸和氧化锌/氧化锌的不同类型的混合纳米材料。 所述纳米材料具有确定的晶体形态。 本发明提供的方法简单,经济并且对环境无害,并且具有提供均匀大小的受控晶体形态的优点。 这些混合材料可能会进一步用于光电二极管和太阳能电池。 金属 - 肽复合物的安全性通过使用天然氨基酸和提高其生物利用度来增强,从而最大限度地减少添加到饲料中的金属的量以满足动物的营养需求。