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    • 75. 发明公开
    • BIOCHEMICAL MEDIA SYSTEM FOR REDUCING POLLUTION
    • 生化媒介系统减少污染
    • EP0946427A1
    • 1999-10-06
    • EP97912750.0
    • 1997-10-21
    • Reddy, Malireddy S.Reddy, Syama, M.
    • Reddy, Malireddy S.Reddy, Syama, M.
    • A61L2C02F3C05D9C05F11C05G3
    • A61L2/186A61L2/208C02F3/025C02F3/34C02F3/342C05D9/00C05F11/08C05G3/00Y02W10/15C05F3/00
    • A first media provides an oxygen inducer such as catalase, bound and stabilized in pellet form so as to dissipate slowly into aqueous surroundings. A second media provides an oxygen supplier such as a peroxide, stabilized by combination with a proteinaceous compound such as urea and bound in a matrix that limits oxygen release. The two media are combined in aqueous environment to generate nascent oxygen at a modulated rate such that the oxygen is efficiently absorbed into the surrounding aqueous environment, promoting growth of aerobic species and reducing biological pollution. Specific adaptations demonstrate benefits of use in shrimp of fish ponds, raw milk, fruit juice, fresh food, silage and animal feed, fertilizer, plumbing systems, and grease traps. When used in ponds, further adaptations reduce algae and phytoplankton populations.
    • 第一种培养基提供氧诱导剂如过氧化氢酶,以颗粒形式结合并稳定化,以缓慢地消散到含水环境中。 第二种介质提供氧气供应物,如过氧化物,通过与蛋白质化合物如尿素组合而稳定化,并结合在限制氧气释放的基质中。 两种介质在含水环境中结合,以调节的速率产生新生氧气,使得氧气被有效地吸收到周围的水环境中,促进好氧物种的生长并减少生物污染。 具体的适应证明在鱼塘,生鲜牛奶,果汁,新鲜食物,青贮饲料和动物饲料,化肥,管道系统和隔油池中使用虾的益处。 当用于池塘时,进一步的适应会减少藻类和浮游植物种群。