18467133. GAS SEPARATION MEMBRANE AND METHOD OF PRODUCING GAS SEPARATION MEMBRANE simplified abstract (SEIKO EPSON CORPORATION)

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GAS SEPARATION MEMBRANE AND METHOD OF PRODUCING GAS SEPARATION MEMBRANE

Organization Name

SEIKO EPSON CORPORATION

Inventor(s)

Taisuke Nakashima of CHINO-SHI (JP)

Yasutaka Matsumoto of Suwa-shi (JP)

GAS SEPARATION MEMBRANE AND METHOD OF PRODUCING GAS SEPARATION MEMBRANE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18467133 titled 'GAS SEPARATION MEMBRANE AND METHOD OF PRODUCING GAS SEPARATION MEMBRANE

Simplified Explanation

The gas separation membrane described in the patent application consists of a porous layer with a first resin layer containing an organopolysiloxane on one side, and a second resin layer with an organopolysiloxane on the opposite side of the first resin layer. The first resin layer has higher porosity than the second resin layer, and the two layers are chemically bonded together.

  • The gas separation membrane includes a porous layer.
  • A first resin layer with an organopolysiloxane is on one side of the porous layer.
  • A second resin layer with an organopolysiloxane is on the opposite side of the first resin layer.
  • The first resin layer has higher porosity than the second resin layer.
  • The second resin layer is chemically bonded to the first resin layer.

Potential Applications

The technology can be applied in gas separation processes, such as in the separation of different gases for industrial purposes.

Problems Solved

The gas separation membrane helps in efficiently separating gases based on their properties, which can be crucial in various industries.

Benefits

The membrane offers improved gas separation capabilities, enhanced durability, and chemical resistance due to the unique composition of the resin layers.

Potential Commercial Applications

  • Gas separation in industrial processes
  • Environmental protection technologies

Possible Prior Art

Prior art may include gas separation membranes with different compositions or structures, but the specific combination of organopolysiloxane resin layers as described in this patent application may be novel.

Unanswered Questions

How does the gas separation membrane perform under high-pressure conditions?

The article does not provide information on the membrane's performance under high-pressure conditions. This aspect is crucial for applications in industries where gas separation occurs at elevated pressures.

What is the expected lifespan of the gas separation membrane in continuous operation?

The article does not mention the expected lifespan of the membrane in continuous operation. Understanding the durability and longevity of the membrane is essential for assessing its cost-effectiveness in various applications.


Original Abstract Submitted

A gas separation membrane includes a porous layer, a first resin layer provided at a surface on one side of the porous layer, the first resin layer including an organopolysiloxane, and a second resin layer provided at a surface of the first resin layer on a side opposite to that of the porous layer, the second resin layer including an organopolysiloxane. The first resin layer has a porosity greater than that of the second resin layer. The second resin layer is chemically bonded to the first resin layer.