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    • 2. 发明申请
    • PROCESS FOR MICROBIAL DECOMPOSITION OF HARMFUL SUBSTANCES IN MEDIA CHARGED WITH HARMFUL SUBSTANCES, AND MICRO-ORGANISMS SUITABLE FOR THIS PURPOSE
    • 法解SCHADSTOFFBEFRACHTETEN媒体污染物的微生物降解和合适的微生物中
    • WO1997031682A1
    • 1997-09-04
    • PCT/EP1997001017
    • 1997-02-28
    • BITOP GESELLSCHAFT FÜR BIOTECHNISCHE OPTIMIERUNG MBHBARTHOLMES, PeterHEESCHE-WAGNER, KerstinKAUFMANN, MichaelSCHWARZ, Thomas
    • BITOP GESELLSCHAFT FÜR BIOTECHNISCHE OPTIMIERUNG MBH
    • A62D03/00
    • C02F3/34B01D53/84B09C1/10Y02A50/2358
    • The invention relates to a process for microbial decomposition of harmful substances in media charged with harmful substances during cleaning of air, sewage and soil. It also relates to a device for performing said process, micro-organisms suitable for performing said process and the use thereof. The object of the invention is to improve said process in such a manner that micro-organism cultures used to break down harmful substances are established on a long-term basis, and at the same time to achieve high rates of decomposition. To attain said object, the invention proposes a process in which there is continuous decomposition fermentation in a decomposition fermenter using micro-organisms, available in the medium charged with harmful substances, and/ or a micro-organism culture added to the medium. During decomposition fermentation the concentration of harmful substances in the decomposition fermenter is controlled to make it toxin-static or toxin-dynamic using a control circuit, as a function of the vitality of the biomass. To decompose formaldehyde, the invention proposes the use of particular micro-organisms which decompose formaldehyde. To decompose phenols, the invention proposes the use of particular micro-organisms which decompose phenol.
    • 本发明涉及一种用于在媒体schadstoffbefrachteten在空气中,废水或污垢清洁污染物的微生物降解,用于执行该方法和用于执行该方法合适的微生物和它们的用途的设备的过程。 本发明的目的是改进这种方法,使得长期建立用于污染物分解微生物的培养物得以实现,同时实现了高的降解速率。 为了实现这一目的,本发明提出了在连续采矿机进行发酵使用现有的在schadstoffbefrachteten介质的微生物的方法和/或添加到微生物的降解发酵罐培养基中培养,其中所述降解的发酵过程中,污染物在降解发酵罐的帮助下浓度 控制回路是toxinostatisch或toxinodynamisch响应于生物质的生命力控制。 用于分解甲醛,本发明提出了使用某些甲醛降解微生物。 对于酚的降解,本发明提出了使用某些,苯酚降解微生物的。
    • 4. 发明申请
    • LOW-PRESSURE CHAMBER FOR A FUEL CELL SYSTEM
    • 真空室燃料电池系统
    • WO0237595A3
    • 2004-01-08
    • PCT/EP0112458
    • 2001-10-27
    • VAILLANT GMBHHOCKER THOMASBERG JOACHIMBIELSKI MARTINKEHL REINHOLDPAULUS JOCHENWAGNER KERSTIN
    • HOCKER THOMASBERG JOACHIMBIELSKI MARTINKEHL REINHOLDPAULUS JOCHENWAGNER KERSTIN
    • H01M8/06H01M8/24F24H1/00H01M8/00
    • H01M8/0625H01M8/247
    • The invention relates to a method for operating a fuel cell device (23) in a low-pressure chamber (7) comprising a reformer (2) for producing a hydrogenous gas. According to the invention, air for operating the fuel cell stack (1) and the reformer (2) is introduced into the low-pressure chamber (7), which flows around components of the fuel cell device (23) that are located inside the low-pressure chamber (7), and which is supplied to the fuel cell stack (1) and to the reformer (2). The air for operating the fuel cell stack (1) and the reformer (2) absorbs convective heat from the components of the fuel cell device (23) that are located inside the low-pressure chamber (7) and absorbs gases from possibly occurring leaks of the components of the fuel cell device (23) that are located inside the low-pressure chamber (7). In addition, the air transfers heat to a cooling circuit (8), and this cooling circuit (8), in turn, transfers heat to a heating circuit (10, 11).
    • 在真空室(7)配有一个重整器(2)一种操作燃料电池组件(23)的方法被传递,以产生含有氢气的气体,其中,所述空气用于燃料电池堆的操作(1)和在真空室中的重整器(2)(7) 围在真空室(7),其位于与所述燃料电池堆(1)和所述重整器(2)被提供,其中,所述空气用于燃料电池堆的操作(1)和所述重整器(2)的对流的燃料电池组件(23)的各组件流 负压室下吸收那些热(7)的燃料电池组件(23)和气体从负压腔的可能存在泄漏的部件(7)的燃料电池组件(23)的定位的组件和释放热量的冷却回路(8)和所述冷却回路( 8)热关闭的加热回路(10,11)输出。