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公开(公告)号:US12082530B2
公开(公告)日:2024-09-10
申请号:US17111922
申请日:2020-12-04
发明人: Zhi-Yan Du , Muhammad Fadzlan Bin Kamarudzaman , Warren Purvin , Spencer Rinke , Tomo Max Saito , Chad Winner
IPC分类号: A01D44/00 , C02F1/00 , C02F3/06 , C02F3/34 , C02F103/00
CPC分类号: A01D44/00 , C02F1/001 , C02F3/06 , C02F3/347 , C02F2103/007 , C02F2203/006
摘要: The disclosure relates to a filtration system for harvesting microalgae. The filtration system includes a filter housing with modular filtration units each containing a fungal filter. The fungal filter includes a perforated support with a capture fungus on the support. The fungal filter is adapted to be removed and replaced from the modular filtration unit, for example during operation of the filtration system. The capture fungus is adapted to capture one or more types of microalgae upon contact of the capture fungus with the microalgae, for example via fungal mycelium. During use of the filtration system to treat an influent stream containing microalgae, microalgae are captured and coated on the fungal filters. The coated fungal filters can be easily removed and the microalgae is harvested directly from the perforated support. New replacement filters can be inserted into the filtration system for continuous operation.
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公开(公告)号:US20220274856A1
公开(公告)日:2022-09-01
申请号:US17631653
申请日:2020-07-31
摘要: A phyto-mediated wastewater treatment bioreactor (PWBR) for treating wastewater effluent and agricultural effluent is disclosed herein. The PWBR is used to clean and remove emerging contaminants from water. These emerging compounds include, but are not limited to, pharmaceutical compounds, steroids and hormones, and industrial and household chemicals. Plants and/or the microorganisms adhering to the plant roots and their growing medium have the ability to take up many of these contaminants and the PWBR maximizes their treatment capability in a given space and time.
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公开(公告)号:US11420888B2
公开(公告)日:2022-08-23
申请号:US16993248
申请日:2020-08-13
申请人: HUNAN SCIENTOP AUTOMATIC EQUIPMENT SHARES CO. LTD , HUNAN SAKAL ENVIRONMENTAL SCIENCE AND TECHNOLOGY CO., LTD. , Shen Wang
发明人: Shen Wang , Yunliang Liu
IPC分类号: C02F3/08 , C02F3/06 , C02F101/30
摘要: The present invention discloses a treatment process for a submerged lifting circulation type bio-membrane filter, wherein the treatment process comprises the following steps: two groups of symmetrically staggered filter curtains (2A and 2B) are adopted; the two groups of filter curtains (2A and 2B) are periodically lifted up and down in a reciprocating manner in a biofilter (1) under the action of a lifting mechanism (4), so that bio-membranes on the two groups of filter curtains (2A and 2B) are in contact with the atmosphere and sewage in turns, absorb organic matters in the sewage when lifting down for submerging, absorb oxygen when lifting up and exposing into to the atmosphere, and bring oxygen into the sewage and cause sewage turbulence in a water tank when lifting down for submerging again, so that the dissolved oxygen is uniformly distributed, thereby purifying the sewage.
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公开(公告)号:US11299414B2
公开(公告)日:2022-04-12
申请号:US16540313
申请日:2019-08-14
申请人: NEXOM
发明人: Martin Hildebrand , Merle Kroeker
摘要: Described herein are attached growth reactor systems which increase nitrifying bacteria biomass through a variety of means during warm weather. As a consequence, the attached growth reactor system contains sufficient nitrifying bacteria biomass to remove ammonia from wastewater in cold to moderate climates. In one example, there are two attached growth reactors into which wastewater is distributed discontinuously. Specifically, wastewater is transferred to the first attached growth reactor for a first period of time and then is transferred to the second attached growth reactor for a second period of time during warm weather which effectively doubles the nitrifying bacteria biomass in the system. During cold weather, approximately half of the wastewater is applied to each reactor simultaneously.
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公开(公告)号:US20210155515A1
公开(公告)日:2021-05-27
申请号:US17100619
申请日:2020-11-20
发明人: Dandan ZHOU , Yuanyu SU , Shuangshi DONG , Liang FU , Chen ZHOU , Bruce RITTMANN
摘要: An organic industrial tailwater treatment method based on simultaneous combination of ozonation and biodegradation (SCOB), includes: placing a sponge carrier that is internally attached and grown with a biofilm in a recycle reactor; introducing air into an ozone generator to generate ozone; and introducing the ozone into the recycle reactor; where the ozone output of the recycle reactor is adjusted through a flow meter and an ozone generator adjustment knob, the sponge carrier is uniformly fluidized under the action of the ozone, and microorganisms loaded on the sponge carrier cooperate with the ozone to degrade pollutants. Easily degradable organic substances produced from the ozonation of the present disclosure can be quickly utilized by the microorganisms in the internal pores of the composite carrier, which improves the degradation and mineralization efficiency of pollutants.
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公开(公告)号:US10960443B2
公开(公告)日:2021-03-30
申请号:US16625079
申请日:2018-06-14
申请人: ENTSORGAFIN S.P.A.
IPC分类号: B09B3/00 , B01D53/85 , C02F3/06 , C02F103/06
摘要: A method and plant for waste disposal are provided. A recirculating arrangement recirculates leachates generated by the processes of waste treatment into the plant itself, namely into a biofilter. The leachates are treated without need for providing a dedicated arrangement for purification and disposal. In addition, the recirculated leachates introduced into the biofilter represents an additional irrigation system for the filtering material of the biofilter and contributes to maintain its humidity advantageously high. Preferably, the leachates are introduced into the biofilter at an intermediate height of the biofiltering material bed, so as to obtain a kind of “submerged irrigation” of the biofilter. More preferably, the leachates are introduced into the biofilter as homogeneously and dispersedly as possible, so as to obtain a kind of “micro-irrigation” system for the biofilter.
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公开(公告)号:US20200267948A1
公开(公告)日:2020-08-27
申请号:US16790000
申请日:2020-02-13
发明人: Kiyofumi Saito
摘要: A water purification system for an ornamental aquarium is easily assembled as either a canister or a hang-on-back type model with a water tank or aquarium without compromising with an aesthetic appearance and low noise. The filtration element includes filtration blocks connectible in series for function and can be disassembled into a plurality of blocks that are reassembled to form the canister model and the hang-on-back model with a secure positioning feature.
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公开(公告)号:US20200156972A1
公开(公告)日:2020-05-21
申请号:US16752130
申请日:2020-01-24
发明人: Jeffrey John Hanson
摘要: Embodiments of the present disclosure are directed towards a bioreactor, a floating bioremediation platform system, and a process for reducing sulfates, in surface water.
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公开(公告)号:US20190297859A1
公开(公告)日:2019-10-03
申请号:US16367547
申请日:2019-03-28
发明人: Liping LIU , Kang LI , Wenzhi SHI
摘要: Disclosed is a pond culture circulation system based on a bio-toilet module including a culture pond and an annular treatment channel surrounding the culture pond. The annular treatment channel is sequentially provided with a sedimentation zone, a biological purification zone and a water storage zone along a direction of water flow. The culture pond includes a plurality of culture pond units. Each of the plurality of culture pond units is provided with a bio-toilet module in communication with the sedimentation zone through a sewage pipe. The water storage zone communicates with each of the plurality of culture pond units through a gravity-flow culvert. The invention further discloses a use method of the pond culture circulation system based on the bio-toilet module.
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公开(公告)号:US10421680B2
公开(公告)日:2019-09-24
申请号:US15966575
申请日:2018-04-30
申请人: NEXOM
发明人: Martin Hildebrand , Merle Kroeker
摘要: Described herein are attached growth reactor systems which increase nitrifying bacteria biomass through a variety of means during warm weather. As a consequence, the attached growth reactor system contains sufficient nitrifying bacteria biomass to remove ammonia from wastewater in cold to moderate climates. In one example, there are two attached growth reactors into which wastewater is distributed discontinuously. Specifically, wastewater is transferred to the first attached growth reactor for a first period of time and then is transferred to the second attached growth reactor for a second period of time during warm weather which effectively doubles the nitrifying bacteria biomass in the system. During cold weather, approximately half of the wastewater is applied to each reactor simultaneously.
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