MindMap Gallery Membrane electrode
The membrane electrode is an electrode equipped with a specific membrane combination in its structure, such as a glass electrode, an ion exchange electrode or an oxygen electrode, and is the most core component of a hydrogen fuel cell. It introduces application, R
Edited at 2025-01-16 13:16:21Rumi: 10 dimensions of spiritual awakening. When you stop looking for yourself, you will find the entire universe because what you are looking for is also looking for you. Anything you do persevere every day can open a door to the depths of your spirit. In silence, I slipped into the secret realm, and I enjoyed everything to observe the magic around me, and didn't make any noise. Why do you like to crawl when you are born with wings? The soul has its own ears and can hear things that the mind cannot understand. Seek inward for the answer to everything, everything in the universe is in you. Lovers do not end up meeting somewhere, and there is no parting in this world. A wound is where light enters your heart.
Chronic heart failure is not just a problem of the speed of heart rate! It is caused by the decrease in myocardial contraction and diastolic function, which leads to insufficient cardiac output, which in turn causes congestion in the pulmonary circulation and congestion in the systemic circulation. From causes, inducement to compensation mechanisms, the pathophysiological processes of heart failure are complex and diverse. By controlling edema, reducing the heart's front and afterload, improving cardiac comfort function, and preventing and treating basic causes, we can effectively respond to this challenge. Only by understanding the mechanisms and clinical manifestations of heart failure and mastering prevention and treatment strategies can we better protect heart health.
Ischemia-reperfusion injury is a phenomenon that cellular function and metabolic disorders and structural damage will worsen after organs or tissues restore blood supply. Its main mechanisms include increased free radical generation, calcium overload, and the role of microvascular and leukocytes. The heart and brain are common damaged organs, manifested as changes in myocardial metabolism and ultrastructural changes, decreased cardiac function, etc. Prevention and control measures include removing free radicals, reducing calcium overload, improving metabolism and controlling reperfusion conditions, such as low sodium, low temperature, low pressure, etc. Understanding these mechanisms can help develop effective treatment options and alleviate ischemic injury.
Rumi: 10 dimensions of spiritual awakening. When you stop looking for yourself, you will find the entire universe because what you are looking for is also looking for you. Anything you do persevere every day can open a door to the depths of your spirit. In silence, I slipped into the secret realm, and I enjoyed everything to observe the magic around me, and didn't make any noise. Why do you like to crawl when you are born with wings? The soul has its own ears and can hear things that the mind cannot understand. Seek inward for the answer to everything, everything in the universe is in you. Lovers do not end up meeting somewhere, and there is no parting in this world. A wound is where light enters your heart.
Chronic heart failure is not just a problem of the speed of heart rate! It is caused by the decrease in myocardial contraction and diastolic function, which leads to insufficient cardiac output, which in turn causes congestion in the pulmonary circulation and congestion in the systemic circulation. From causes, inducement to compensation mechanisms, the pathophysiological processes of heart failure are complex and diverse. By controlling edema, reducing the heart's front and afterload, improving cardiac comfort function, and preventing and treating basic causes, we can effectively respond to this challenge. Only by understanding the mechanisms and clinical manifestations of heart failure and mastering prevention and treatment strategies can we better protect heart health.
Ischemia-reperfusion injury is a phenomenon that cellular function and metabolic disorders and structural damage will worsen after organs or tissues restore blood supply. Its main mechanisms include increased free radical generation, calcium overload, and the role of microvascular and leukocytes. The heart and brain are common damaged organs, manifested as changes in myocardial metabolism and ultrastructural changes, decreased cardiac function, etc. Prevention and control measures include removing free radicals, reducing calcium overload, improving metabolism and controlling reperfusion conditions, such as low sodium, low temperature, low pressure, etc. Understanding these mechanisms can help develop effective treatment options and alleviate ischemic injury.
Membrane electrode
application
Application areas
Hydrogen production
ALKFC
AEMFC
PEMFC
Hydrogen fuel cell
high temperature
High performance and low cost
High durability
other
Flow battery
CO2 Restoration
SOFC
SOEC
Phosphoric acid/alkaline fuel cell
Air-cooled electric reservoir
Cost Requirements
Performance metrics
Pile Sor
Membrane electrode drawing
Other requirements - Materials
Project plan
Timeline
Production capacity and demand
Project implementation plan
Sub-theme
R&D
Material
Establishment of supplier development system
Core raw material selection and matching
R&D equipment
Slurry dispersion
Stir
Mechanical stirring
Planetary stirring
Ultrasonic stripper
Magnetic stirring
Roller mixer
High energy dispersion
Ball mill dispersion
High energy shock ball mill
Planetary Grinder
Sand mill
Sub-theme
High shear equipment
Emulsifier
Homogenization machine
Sub-theme
High pressure dispersion
High pressure nanodispersion
Film disperser
Ultrasonic dispersion
Slurry defoaming
Membrane electrode packaging
Preparation process
CCM process
Deposition in the membrane
Electrospinning/spraying
Spraying
Screen printing
Fitting to the film
GDE
Thermal transfer printing
Double-sided transfer
Hot pressing parameters/proton membrane thermal properties
Coating DECAL
Slurry development
One-step method
1.5 steps
Two-step method
Grinding and redispersing of the catalyst mixture
Catalytic layer parameters
Thickness/porosity
Load capacity
Platinum density/platinum utilization rate
Slit/DB/wire rod
Coating parameters
Coating speed
Drying process
Cast/Defect/Coating Accuracy
DECAL substrate selection
Coated film
Double-sided direct coating
Cathode direct coating/anode transfer printing
Packaging process
Integrated packaging-single-border
Double border
Four-layer border
New material synthesis
Catalyst development
Porous/mesoporous
Alloy Catalyst
Mass production consistency and capacity
Proton membrane development
Homogenous membrane
Reinforcement film
High temperature proton membrane
GDL development
With runner GDL
Micropore-free layer GDL
Non-carbon material GDL
Production
Process route
According to the CCM catalytic layer process
Transfer
Direct coating
Spraying
Production equipment
Slurry production
Coating
Transfer
Border Packaging
GDL Package
Airtightness detection
Production capacity/scheduling/beat
Mass production equipment selection
Mass production flexibility capacity building
Cost/standardization/high efficiency of quality inspection
Matching of materials/site/energy
Production quality system
Standardized production system
Quality system construction
Process details/flowability
Testing capability
Material testing
Slurry Test
Catalytic layer characterization
Membrane electrode cell test
RDE test
Software and hardware capabilities
Simulation capability
Workwear development
patent
Smart factory construction-AI big data refined production
High-precision technical cooperation in schools and enterprises