B01D46/003

Separation device and oil separating air filter assembly comprising such separation device as well as method for separating fluid from a gas stream deriving from a connecting device

A separation device for separating fluid from a gas stream has a housing replaceably connected to a connector head of a connecting device. The housing has a housing corpus with an axial end covered by a housing cover non-detachably connected to the housing corpus. A filter insert is received in the housing in a flow path of the gas stream from a raw gas inlet to a clean gas outlet of the housing. The filter insert has a main separator element with ring-shaped support body and cylindrical coalescing filter medium with coalescer material removing fluid from the gas stream. A preliminary separator element is arranged concentrically to the main separator element in the housing in the flow path of the gas stream between raw gas inlet and main separator element. The preliminary separator element has a cylindrical coalescing filter medium with coalescer material removing fluid from the gas stream.

Axial flow centrifugal separator

Rotating coalescer elements that maximize the radial-projected separation surface area in a given (rotating) cylindrical volume, where flow to be cleaned is passing axially upward or downward through a separating media of the rotating coalescer element. Various example package assemblies are provided with various types of rotating configurations including cylindrical coiled media packs, frustum coiled media packs, concentric cylinders, coiled metal or polymer films with and without perforations, and/or alternating layers of different materials. The described rotating coalescers may be driven by hydraulic turbine, electric motor, belt, gear or by mounting on rotating machine components, such as rotating engine shafts or connected components.

SURFACE MODIFIED FILTER MEDIA

Surface modified filter media, including surface modified filter media having enhanced performance characteristics, are provided. In some embodiments, a filter media may comprise two or more layers designed to enhance fluid separation efficiency. One or more of the layers may have at least a portion of a surface that is modified to alter and/or enhance the wettability of the surface with respect to a particular fluid. In certain embodiments involving a filter media including more than one surface modified layer, at least one surface modified layer may have a greater air permeability and/or mean flow pore size than that of another surface modified layer. Such a configuration of layers may result in the media having enhanced fluid separation properties compared to filter media that do not include such modified layers or configuration of layers, all other factors being equal. The filter media may be well-suited for a variety of applications, including filtering fuel, air, and lube oil.

SEPARATOR FOR SEPARATING A LOWER DENSITY LIQUID FROM A FLUID STREAM
20220249981 · 2022-08-11 ·

The invention relates to a separator for separating a lower density liquid, in particular an oil, from a fluid stream containing a mixture of a gas, the lower density liquid and a higher density liquid, in particular water, the separator having a supply, through which the fluid stream can flow under overpressure, and a decompression chamber having a decompression opening, which can be connected via the decompression opening to an environment in which a pressure level lower than the overpressure of the fluid stream prevails, and a coalescence filter arranged in the decompression chamber and an interior space surrounded by a coalescence filter medium, the supply opening into the interior, and a separation chamber, which is arranged below the decompression chamber and having an upper outlet for lower density liquid and a lower outlet for a residual product, and having a dip tube having a first opening in the lower region of the decompression chamber and a second opening in the separation chamber.

REFRIGERATOR DRAWER WITH CASSETTE FILTER
20220243978 · 2022-08-04 ·

A crisper drawer for a refrigerator having a refrigerated compartment is disclosed. The crisper drawer includes a plurality of side walls defining a storage chamber, an opening in a side wall to provide fluid communication between the storage chamber and the refrigerated compartment, and a multi-function filter cassette configured to be positioned within the opening. The multi-function filter cassette includes a first filter configured to remove contaminants from a first air flow within the refrigerated compartment, a second filter configured to remove contaminants and/or moisture from a second air flow within the storage chamber, and a central wall configured to prevent fluid communication between the refrigerated compartment and the storage chamber.

Filter Insert for Installation in a Liquid Separator, Liquid Separator, Method for Providing the Aforementioned Filter Insert as well as Use of the Filter Insert in a Liquid Separator

A filter insert to be installed in a housing of a liquid separator has a hollow cylindrical separation element in the form of a coalescer for separating a liquid from a gas flow. A flange at an end face of the hollow cylindrical separation element can be arranged exchangeably between a cover and a cylindrical body of the housing. The flange has a support surface at a radially outer rim of the flange to be supported on an upper support region of the housing facing the cover of the housing. The flange has a guide structure determining a position of the flange on the upper support region of the housing. The guide structure is to receive a counter structure of the liquid separator. The guide structure has an axial elevation projecting away from the end face of the separation element. A liquid separator is provided with such a filter insert.

SYSTEM AND METHOD FOR TREATING GAS TO FUEL TURBINES

A system and method for treating gas to fuel turbines by passing raw gas through an inlet pressure reducing valve to adjust the gas pressure and through a scrubber to capture liquids from the gas. Next, the gas is passed through a compressor to bring it to a pressure above that required by an inlet of a turbine and then to a post-compression aerial cooler that cools the gas to a temperature lower than a required dewpoint at fuel delivery pressure. Next, natural gas liquids are removed from the gas by passing it through a separator. A first portion of the cooled compressed gas is sent through a gas-to-gas heat exchanger, creating heated compressed gas, and a second portion of the cooled compressed gas passes through a backpressure valve. The heated compressed gas is blended with the second portion to create a fuel gas stream with a desired delivery temperature.

OIL SEPARATOR
20220241707 · 2022-08-04 ·

An oil separator includes a container and a filter assembly. The filter assembly can include a casing, a valve guide, and a valve body. First and second chambers can be defined by a lower casing body. The valve guide can guide the valve body's movement between first and second positions in the first chamber or the second chamber. A first valve can be closed by a prong of the valve body in the first position such that unfiltered fluid enters an inlet of the oil separator, waste byproducts collect in a reservoir defined by the container, and filtered fluid is output from an outlet. The valve body can move from first to second positions with an accumulation of byproducts in the reservoir. In the second position unfiltered fluid may pass from the inlet to the outlet.

Cabin air filtering and dehumidifying apparatus
11420501 · 2022-08-23 ·

A vehicle cabin air filter apparatus for dehumidifying air within its vicinity prior to filtering particulates from air that flows through it along the normal path of flow from the HVAC system into the vehicle passenger cabin.

Catalytic hot-gas filtration of biomass pyrolysis vapors

The present disclosure relates to a device that includes a filter element and a catalyst, where the filter element is configured to remove particulate from a stream that includes at least one of a gas and/or a vapor to form a filtered stream of the gas and/or the vapor, the catalyst is configured to receive the filtered stream and react a compound in the filtered stream to form an upgraded stream of the gas and/or the vapor, further including an upgraded compound, and both the filter element and the catalyst are configured to be substantially stable at temperatures up to about 500° C.