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SYSTEM AND METHOD FOR WASTEWATER TREATMENT THROUGH MICROORGANISM BIOCHEMICAL PATHWAY OPTIMIZATION

机译:通过微生物生物化学途径优化废水处理的系统和方法

摘要

Increased control and efficiency over the wastewater purification can be achieved through creating conditions that allow the operator to selectively prioritize the digestive function of microorganism in the activated sludge. The gas-dispersion return sludge is created using pure oxygen or oxygen containing trace amounts of ozone as a reactive gas, which is blended with return sludge to create a mixture of gas and liquid, which is passed through an atomizer or a cavitation pump to instantly render the reactive gas to an ultra-fine bubble state. At least a portion of the ultra-fine bubbles dissolve within the gas-dispersion return sludge, activating the dormant microorganisms. Due to a complete or an almost complete absence of biodegradable material in the gas-dispersion return sludge, the microorganism prioritize their digestive function, and when exposed to biodegradable pollutants present in wastewater, digest the pollutants using biochemical pathways different from the ones used in nature.
机译:通过创造条件,可以使操作员有选择地优先处理活性污泥中微生物的消化功能,从而提高对废水净化的控制和效率。使用纯氧气或含微量臭氧的氧气作为反应气体来生成气体分散回流污泥,将其与回流污泥混合以生成气体和液体的混合物,该混合物通过雾化器或空化泵立即使反应气体变为超细气泡状态。至少一部分超细气泡溶解在气体分散回流污泥中,从而激活休眠的微生物。由于气体分散回流污泥中完全或几乎完全没有可生物降解的物质,因此微生物优先考虑其消化功能,并且当暴露于废水中存在的可生物降解的污染物时,请使用与自然界不同​​的生化途径来消化污染物。

著录项

  • 公开/公告号US2020270155A1

    专利类型

  • 公开/公告日2020-08-27

    原文格式PDF

  • 申请/专利权人 AKIYOSHI OHKI;WHITNEY RICH;

    申请/专利号US202016866434

  • 发明设计人 AKIYOSHI OHKI;WHITNEY RICH;

    申请日2020-05-04

  • 分类号C02F3/26;C02F3/20;C02F3/28;B01F11/02;C02F3/12;

  • 国家 US

  • 入库时间 2022-08-21 11:23:35

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