Correction: Shin et al. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315
1. Addition of Authors
2. Additional Affiliations
3. Author Contributions Correction
- Author Contributions: Conceptualization, T.-S.S., K.C. and H.-I.Y.; methodology, T.-S.S., K.C. and H.-I.Y.; validation, T.-S.S.; formal analysis, T.-S.S. and J.-C.L.; investigation, J.-C.L.; Resources, I.-K.K.; data curation, S.-Y.Y. and I.-K.K.; Pilot Plant design verification, H.-B.L.; Pilot Plant test results analysis and verification, N.K. and S.K.; writing—original draft preparation T.-S.S.; writing—review and editing, K.C., J.-C.L. and H.-I.Y.; supervision, H.-I.Y.; Project administration, K.C.; funding acquisition, N.K. and S.K. All authors have read and agreed to the published version of the manuscript.
4. Error in Figure/Table
Reaction Condition | Lab-Scale Results | ||
---|---|---|---|
Time (h) | Temperature (°C) | HHV (kJ/kg) | Mass Yield (%) |
1 | 200 | 20,373 | 78.0 |
210 | 21,629 | 74.9 | |
220 | 23,082 | 67.5 | |
1.5 | 200 | 21,265 | 76.0 |
210 | 21,914 | 71.2 | |
220 | 23,266 | 66.4 |
Input Condition | Reaction Condition | Lab-Scale Results | ||
---|---|---|---|---|
Catalyst | Time (h) | Temperature (°C) | HHV (kJ/kg) | Mass Yield (%) |
None | 1 | 220 | 23,082 | 67.5 |
Catalyst #1 | 1 | 220 | 26,687 | 61.3 |
1.5 | 220 | 27,369 | 61.0 | |
Catalyst #2 | 1 | 220 | 25,263 | 67.4 |
1.5 | 220 | 26,038 | 65.3 |
Biosolid Fuel Production Condition | Lab-Scale Results | |||||
---|---|---|---|---|---|---|
List | Unit | On-Site Standard | Waste Wood (Raw Material) | HTC (Non) | Catalytic HTC (Catalyst #1) | Catalytic HTC (Catalyst #2) |
Cl | wt% | 0.5 | 0.02 | 0.06 | 0.75 (excess) | 0.17 |
S | wt% | 0.6 | 0.0161 | 0.04 | 0.06 | 0.03 |
Hg | ppm | 0.6 | 0.00289 | 0.001 | 0.002 | 0.001 |
Cd | ppm | 5 | 0.1 | 0.1 | 0.1 | 0.1 |
Pb | ppm | 100 | 0.52 | 0.96 | 1.15 | 1.45 |
As | ppm | 5 | 0.1 | 0.1 | 0.15 | 0.11 |
Cr | ppm | 70 | 3.6 | 4.34 | 30 | 28.1 |
Reaction Condition | Laboratory-Scale Results | Pilot-Scale Results | |||
---|---|---|---|---|---|
Time (h) | Temperature (°C) | HHV (kJ/kg) | Mass Yield (%) | HHV (kJ/kg) | Mass Yield (%) |
1 | 220 | 23,082 | 67.5 | 22,960 | 67 |
1.5 | 220 | 23,266 | 66.4 | 23,236 | 65 |
Reaction Condition | Pilot-Scale Results | ||||
---|---|---|---|---|---|
Catalyst | Catalytic Density Ratio | Time (h) | Temperature (°C) | HHV (kJ/kg) | Mass Yield (%) |
Non | 0 | 1.5 | 220 | 23,027 | 65 |
Catalyst #2 | 2 | 1.5 | 220 | 23,697 | 64 |
3 | 1.5 | 220 | 25,787 | 61.2 | |
4 | 1.5 | 220 | 27,189 | 60 |
Biosolid Fuel Production Condition | Laboratory-Scale Results | Pilot-Scale Results | ||
---|---|---|---|---|
List | Unit | On-Site Standard | Catalytic HTC (Catalyst #2) | Catalytic HTC (Catalyst #2) |
Cl | wt% | 0.5 | 0.17 | 0.2 |
S | wt% | 0.6 | 0.03 | 0.02 |
Hg | ppm | 0.6 | 0.001 | 0.0022 |
Cd | ppm | 5 | 0.1 | 0.1 |
Pb | ppm | 100 | 1.45 | 1.44 |
As | ppm | 5 | 0.11 | 0.1 |
Cr | ppm | 70 | 28.1 | 29.8 |
5. Text Correction
6. Missing Funding
7. Missing Conflicts of Interest
Reference
- Shin, T.-S.; Yoo, S.-Y.; Kang, I.-K.; Kim, N.; Kim, S.; Lim, H.-B.; Choe, K.; Lee, J.-C.; Yang, H.-I. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315. [Google Scholar] [CrossRef]
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© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
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Shin, T.-S.; Yoo, S.-Y.; Kang, I.-K.; Kim, N.; Kim, S.; Lim, H.-B.; Choe, K.; Lee, J.-C.; Yang, H.-I. Correction: Shin et al. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315. Processes 2023, 11, 1333. https://doi.org/10.3390/pr11051333
Shin T-S, Yoo S-Y, Kang I-K, Kim N, Kim S, Lim H-B, Choe K, Lee J-C, Yang H-I. Correction: Shin et al. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315. Processes. 2023; 11(5):1333. https://doi.org/10.3390/pr11051333
Chicago/Turabian StyleShin, Tae-Sung, Seong-Yeun Yoo, In-Kook Kang, Namhyun Kim, Sanggyu Kim, Hun-Bong Lim, Kangil Choe, Jae-Chul Lee, and Hyun-Ik Yang. 2023. "Correction: Shin et al. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315" Processes 11, no. 5: 1333. https://doi.org/10.3390/pr11051333
APA StyleShin, T.-S., Yoo, S.-Y., Kang, I.-K., Kim, N., Kim, S., Lim, H.-B., Choe, K., Lee, J.-C., & Yang, H.-I. (2023). Correction: Shin et al. Analysis of Hydrothermal Solid Fuel Characteristics Using Waste Wood and Verification of Scalability through a Pilot Plant. Processes 2022, 10, 2315. Processes, 11(5), 1333. https://doi.org/10.3390/pr11051333