20 cubic meters PEM electrolysis hydrogen production equipment
SDQY-20
Hydrogen Energy — Under normal temperature and pressure, hydrogen gas is a highly flammable, colorless, transparent, odorless, and tasteless gas. Hydrogen is a clean, renewable energy source with very high energy density.
The combustion product of hydrogen gas is water, and hydrogen can also be produced from water, making it the cleanest and most environmentally friendly fuel, capable of achieving complete zero emissions.
01 Hydrogen energy is a secondary energy source, requiring certain methods for production rather than being directly mined.
02 Hydrogen energy is a recognized clean energy source. In the 21st century, China, the United States, Japan, Canada, the European Union, and others have all formulated hydrogen energy development plans.
03 Hydrogen energy has the highest heating value among all fuels except nuclear fuel, three times that of gasoline.
04 Hydrogen has good combustion performance, a high ignition point, and fast combustion speed.
05 Hydrogen energy can be utilized in multiple forms: it can produce thermal energy through direct combustion, generating mechanical work in thermal engines, and can also serve as an energy material in fuel cells.
06 Hydrogen fuel cell technology has always been considered one of the ways to utilize hydrogen energy and solve the human energy crisis.
The combustion product of hydrogen gas is water, and hydrogen can also be produced from water, making it the cleanest and most environmentally friendly fuel, capable of achieving complete zero emissions.
01 Hydrogen energy is a secondary energy source, requiring certain methods for production rather than being directly mined.
02 Hydrogen energy is a recognized clean energy source. In the 21st century, China, the United States, Japan, Canada, the European Union, and others have all formulated hydrogen energy development plans.
03 Hydrogen energy has the highest heating value among all fuels except nuclear fuel, three times that of gasoline.
04 Hydrogen has good combustion performance, a high ignition point, and fast combustion speed.
05 Hydrogen energy can be utilized in multiple forms: it can produce thermal energy through direct combustion, generating mechanical work in thermal engines, and can also serve as an energy material in fuel cells.
06 Hydrogen fuel cell technology has always been considered one of the ways to utilize hydrogen energy and solve the human energy crisis.
Delivery
EXW
minimum order
1 piece
Supply Ability
20piece / Month
Country of Origin
China
Quantity
US $17,820.00
To
via
自有物流
Estimated Delivery on
8-15


Core advantage
Core material - Proton Exchange Membrane
Tianji Hydrogen Source and Harbin Institute of Technology's Chongqing Research Institute signed a strategic cooperation agreement, and the project of industry-university-research collaboration was implemented. They also jointly developed the key material for PEM hydrogen production - a new generation proton exchange membrane. This membrane has excellent electrical conductivity, good electrochemical stability, low water molecule electro-osmosis effect in the membrane, good dry-wet conversion performance, certain mechanical strength, good processability, etc. Thus, it breaks the problem where domestic core materials rely on imports and are controlled by foreign enterprises.
Tianji Hydrogen Source and Harbin Institute of Technology's Chongqing Research Institute signed a strategic cooperation agreement, and the project of industry-university-research collaboration was implemented. They also jointly developed the key material for PEM hydrogen production - a new generation proton exchange membrane. This membrane has excellent electrical conductivity, good electrochemical stability, low water molecule electro-osmosis effect in the membrane, good dry-wet conversion performance, certain mechanical strength, good processability, etc. Thus, it breaks the problem where domestic core materials rely on imports and are controlled by foreign enterprises.
The principle of hydrogen production by PEM: H20 = H2 + O2
For this reaction to proceed normally, additional energy needs to be applied.
The positive electrode produces oxygen, the negative electrode produces hydrogen. The water at the positive electrode gains electrons and reacts to form oxygen,
The negative electrode gains protons and generates hydrogen gas. Electrons are transmitted through the external circuit, and protons pass through the proton exchange membrane.
The proton exchange membrane serves to separate the positive and negative electrodes. Under the same conditions of positive and negative electrode catalysts, the proton exchange membrane plays a decisive role in hydrogen production.
For this reaction to proceed normally, additional energy needs to be applied.
The positive electrode produces oxygen, the negative electrode produces hydrogen. The water at the positive electrode gains electrons and reacts to form oxygen,
The negative electrode gains protons and generates hydrogen gas. Electrons are transmitted through the external circuit, and protons pass through the proton exchange membrane.
The proton exchange membrane serves to separate the positive and negative electrodes. Under the same conditions of positive and negative electrode catalysts, the proton exchange membrane plays a decisive role in hydrogen production.

Comprehensive score