Fact Snapshot
- Paper: Preparation of Eucommia ulmoides Oliver wood derived activated carbons by combined microwave hydrothermal pretreatment and microwave pyrolysis as electrode materials for super capacitive performance
- Equipment: UP-700G
- Source: Materials Today Sustainability, 2024
- Research direction: microwave hydrothermal
- Core conditions: Microwave power 500 W / 900 W, Temperature 150 °C / 170 °C / 180 °C, and Time 60 min / 6 h / 30 min
- Key results: Specific surface area 2138.3 m2/g and Content 18.23%
Research Abstract
Preparation of Eucommia ulmoides Oliver wood derived activated carbons by combined microwave hydrothermal pretreatment and microwave pyrolysis as electrode materials for super capacitive performance was published in Materials Today Sustainability (2024) and is indexed as a Xianghu Q1 application case for UP-700G. The source record connects it with microwave hydrothermal. Core operating conditions include Microwave power 500 W / 900 W, Temperature 150 °C / 170 °C / 180 °C, and Time 60 min / 6 h / 30 min. Key reported results include Specific surface area 2138.3 m2/g and Content 18.23%.
Research Background and Problem
Equipment Use and Experimental Conditions
| Item | Parameter |
|---|---|
| Microwave power | 500 W / 900 W |
| Temperature | 150 °C / 170 °C / 180 °C |
| Time | 60 min / 6 h / 30 min |
Key Result
| Metric | Result |
|---|---|
| Specific surface area | 2138.3 m2/g |
| Content | 18.23% |
Evidence Details
Then, the extractive-free powder (10 g) was mixed with deionized water (200 mL) in a microwave hydrothermal reactor (UP-700G, Xianghu, China) at a heating rate of 5 °C/min and microwave power of 500 W.
Microwave-method evidence: source values include 150 °C, 190 °C, 18.23%, 1.23%.
Similarly, the activated carbon prepared with a microwave tube furnace (UP-700G, Beijing, China) at 900 W for 30 min was labeled as MWAC(x).
Additional source evidence: source values include 150 °C, 170 °C, 180 °C, 190 °C.
Moreover, the activated carbon generated via MHTP at 170 °C (MWAC170) possessed an excellent specific surface area (2138.3 m2/g) with a higher proportion of mesoporous structure (76.15 %) and the degree of graphitization.
Time: 60 min / 6 h / 30 min
The symmetric supercapacitor (SSC) offered a maximum energy density of 30.7 Wh/kg and power density of 4481.8 W/kg.
Additional source evidence: source values include 400 °C, 6 h.
Mechanism / Method Highlights
- Method context: Microwave power 500 W / 900 W, Temperature 150 °C / 170 °C / 180 °C, and Time 60 min / 6 h / 30 min.
- Equipment and method evidence: Then, the extractive-free powder (10 g) was mixed with deionized water (200 mL) in a microwave hydrothermal reactor (UP-700G, Xianghu, China) at a heating rate of 5 °C/min and microwave power of 500 W
- Microwave-method evidence: source values include 150 °C, 190 °C, 18.23%, 1.23%
- Source evidence: Similarly, the activated carbon prepared with a microwave tube furnace (UP-700G, Beijing, China) at 900 W for 30 min was labeled as MWAC(x)
- Reported outcome: Specific surface area 2138.3 m2/g and Content 18.23%.
Application Value
- Provides a peer-reviewed SoarNova / Xianghu Q1 application case for UP-700G.
- Supports English discovery around microwave hydrothermal.
- Preserves quantitative result evidence: Specific surface area 2138.3 m2/g and Content 18.23%.
- Maintains source-level evidence details: Equipment and method evidence: Then, the extractive-free powder (10 g) was mixed with deionized water (200 mL) in a microwave hydrothermal reactor (UP-700G, Xianghu, China) at a heating rate of 5 °C/min and microwave power of 500 W, Microwave-method evidence: source values include 150 °C, 190 °C, 18.23%, 1.23%, Source evidence: Similarly, the activated carbon prepared with a microwave tube furnace (UP-700G, Beijing, China) at 900 W for 30 min was labeled as MWAC(x), and Additional source evidence: source values include 150 °C, 170 °C, 180 °C, 190 °C.
Related Equipment
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Preparation of Eucommia ulmoides Oliver wood derived activated carbons by combined microwave hydrothermal pretreatment and microwave pyrolysis as electrode materials for super capacitive performance
Materials Today Sustainability, 2024
DOI: 10.1016/j.mtsust.2023.100621
