Abstract:
A culture device is provided with a culture tank having sidewalls that are formed from a translucent material, and cultures fine algae in a culture liquid that is accommodated in the culture tank and through which light is emitted via the sidewalls. The culture device is provided with a translucent insulating part that covers the sidewalls. The insulating part forms an air layer that insulates the inside of the culture tank. A culture device is provided with a culture tank having sidewalls that are formed from a translucent material, and cultures fine algae in a culture liquid that is accommodated in the culture tank and through which light is emitted via the sidewalls. The culture device is provided with a translucent insulating part that covers the sidewalls. The insulating part forms an air layer that insulates the inside of the culture tank.
Abstract:
A double-circulation temperature-controlled cell incubator and a working method thereof. The cell incubator includes a first incubator body, a second incubator body arranged inside the first incubator body, an enclosed space formed between the first incubator body and the second body, a third incubator body arranged inside the second incubator body, a transport device, a heating device, and an insulation device arranged on an outer side or inner side of the first incubator body. An upper side, a rear side and a bottom side of the third incubator body and an inner wall of the second incubator body form a space. The transport device is configured to transport gas in the third incubator body to the space. The heating device is arranged at an inner side of a door or a side of the second incubator body.
Abstract:
The application relates to an apparatus for providing a gas for the introduction thereof into an incubation chamber, comprising an inlet port (1) for introducing a gas, an outlet port (2) for discharging a gas, a first gas path (3) connecting the inlet port (1) to the outlet port (2), a second gas path (4) branching off from the first gas path (3) and running back into the first gas path (3); a distributing element (5), configured to allow a portion of the gas introduced through the inlet port (1) to be conducted via the second gas path (4), and an enriching element (6) arranged in the second gas path for enriching the gas flow with a liquid.
Abstract:
A cell culture system for the production of cells and cell derived products includes a reusable instrumentation base device incorporating hardware to support cell culture growth. A disposable cultureware module including a cell growth chamber is removably attachable to the instrumentation base device. The base device includes microprocessor control and a pump for circulating cell culture medium through the cell growth chamber. The cultureware module is removably attached to the instrumentation base device. Cells are introduced into the cell growth chamber and a source of medium is fluidly attached to the cultureware module. Operating parameters are programmed into the microprocessor control. The pump is operated to circulate the medium through the cell growth chamber to grow cells or cell products therein. The grown cells or cell products are harvested from the cell growth chamber and the cultureware module is then disposed.
Abstract:
The invention described herein relates to photobioreactors, methods, assembly and use of such apparatus for culturing light-capturing organisms in a cost-effective manner. Various embodiments provide for a passive thermal regulation system employing selected microorganisms in a photobioreactor apparatus and methods for biological production of various fuel and chemical products from these organisms. Additional embodiments provide a solar biofactory system capable of culturing light capturing organisms to an areal productivity of 3.3 g/m2/hr. Further embodiments are directed to a photobioreactor capable of culturing light capturing organisms to an OD730 of about 14 g/L DCW. Such embodiments incorporate passive thermal regulation and systems.
Abstract translation:本文描述的本发明涉及用于以成本有效的方式培养光捕获生物体的这种装置的光生物反应器,方法,组装和使用。 各种实施例提供了在光生物反应器装置中使用选定的微生物的被动热调节系统以及用于从这些生物体生物制备各种燃料和化学产品的方法。 另外的实施方案提供能够培养光捕获生物体至3.3g / m 2 / hr的面积生产率的太阳能生物质感系统。 其它实施方案涉及能够将光捕获生物培养至约14g / L DCW的OD730的光生物反应器。 这样的实施例包括无源热调节和系统。
Abstract:
A cell culture system for the production of cells and cell derived products includes a reusable instrumentation base device incorporating hardware to support cell culture growth. A disposable cultureware module including a cell growth chamber is removably attachable to the instrumentation base device. The base device includes microprocessor control and a pump for circulating cell culture medium through the cell growth chamber. The cultureware module is removably attached to the instrumentation base device. Cells are introduced into the cell growth chamber and a source of medium is fluidly attached to the cultureware module. Operating parameters are programmed into the microprocessor control. The pump is operated to circulate the medium through the cell growth chamber to grow cells or cell products therein. The grown cells or cell products are harvested from the cell growth chamber and the cultureware module is then disposed.
Abstract:
A cell culture system for the production of cells and cell derived products includes a reusable instrumentation base device incorporating hardware to support cell culture growth. A disposable cultureware module including a cell growth chamber is removably attachable to the instrumentation base device. The base device includes microprocessor control and a pump for circulating cell culture medium through the cell growth chamber. The cultureware module is removably attached to the instrumentation base device. Cells are introduced into the cell growth chamber and a source of medium is fluidly attached to the cultureware module. Operating parameters are programmed into the microprocessor control. The pump is operated to circulate the medium through the cell growth chamber to grow cells or cell products therein. The grown cells or cell products are harvested from the cell growth chamber and the cultureware module is then disposed.
Abstract:
This invention provides a waste-processing system capable of processing high-solids wastes such as manure. This invention provides a compact U-shaped digester that allows for recycling of activated sludge to improve the efficiency of the process. Efficiency is also improved through a sludge heating design that creates a current in the digester and efficiently heats the sludge. A composter is provided to further process the sludge through aerobic digestion to create usable fertilizer. Finally, one embodiment provides a turbine that is fueled by biological gases from the digester to generate heat and electricity to be used by the system.
Abstract:
Reactor for processing biomass, e.g. into biochar or bio cokes, with a reactor enclosure (2) having a transport unit (5). In a first reactor section (6) first gas injectors (11) are positioned below the transport unit (5), and first oxidant injectors (12) are positioned above transport unit (5). In a second reactor section (7) second gas injectors (13) are positioned below the transport unit (5), and second oxidant injectors (14) are positioned above the transport unit (5). In a the third reactor section (8) third gas injectors (15) are provided below the transport unit (5). The first, second and third gas injectors (11, 13, 15) are further arranged to output a first, second, and third gas, respectively, each having a low oxygen content, and the first and second oxidant injectors (12, 14) are arranged to output an oxidizing gas only for providing radiation heat energy, using a control unit (20).
Abstract:
An integrated system of cell culture and operation and a method for controlling the same. The integrated system of cell culture and operation includes a housing, a front side of the housing being provided with operating gloves. The housing has a double-layer structure consisting of an inner layer and an outer layer. An upper wall and a lower wall of the inner layer are both provided with through holes. The outer layer has a gas inlet, a gas outlet and a humidifying port. The integrated system of cell culture and operation further includes: a heating module arranged in an interlayer, and a transport module configured to transport gas and circulate the gas in the inner layer and the interlayer, resulting in low gas consumption.