High Speed Photography for Manuscript "On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis"

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2020-01-01
2020-12-30

Date completed

2020-12-30

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Title

High Speed Photography for Manuscript "On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis"

Published Date

2020-11-16

Author Contact

Dauenhauer, Paul
hauer@umn.edu

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Experimental Data
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Abstract

The data contains high speed photography of high temperature (500 - 650 deg C) pyrolysis of polyolefin films including low-density polyethylene and polypropylene. This is in support of the publication entitled, "On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis."

Description

This text file contains descriptions of all videos submitted as Supporting Information for the paper entitled "On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis." Original videos were taken using a high-speed Phantom eX-2 camera with a macro lens (Carl Zeiss, Makro-Planar 2/100 zf.2) attached with Nikon PK-13, PK-12, PK-13, and PK-11A extension rings. A high power direction light source (Prior, Lumen 2000) was used to illuminate reactor during visual experiments. All raw footage was captured at 1000 fps. Videos included in this Supporting Information are cut from the raw footage to encapsulate only the 2 seconds during which the reaction pulses occurred.

Referenced by

"On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis"
https://doi.org/10.1002/cssc.202002667

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Funding information

We acknowledge financial support from the ExxonMobil Chemical Company

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Suggested citation

Dauenhauer, Paul; Mastalski, Isaac; Sidhu, Nathan; Zolghadr, Ali. (2020). High Speed Photography for Manuscript "On the Method of Pulse-Heated Analysis of Solid Reactions (PHASR) for Polyolefin Pyrolysis". Retrieved from the Data Repository for the University of Minnesota (DRUM), https://doi.org/10.13020/NR5T-YG03.

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Video_S01_500 C, Side View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S01: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 500 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(12.08 MB)

Video_S02_500 C, Side View, Cut to 2 s Reaction Pulse, Playback at 1000 fps (Realtime).mp4
Video_S02: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 500 °C reaction pulse for 2 s. This video is played back at a framerate of 1000 fps (realtime) and is the same footage as Video_S01.
(11.78 MB)

Video_S03_500 C, Top View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S03: This video shows a top view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 500 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(12.26 MB)

Video_S04_550 C, Side View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S04: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 550 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(11.94 MB)

Video_S05_550 C, Side View, Cut to 2 s Reaction Pulse, Playback at 1000 fps (Realtime).mp4
Video_S05: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 550 °C reaction pulse for 2 s. This video is played back at a framerate of 1000 fps (realtime) and is the same footage as Video_S04.
(11.94 MB)

Video_S06_550 C, Top View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S06: This video shows a top view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 550 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(12.24 MB)

Video_S07_600 C, Side View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S07: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 600 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(11.98 MB)

Video_S08_600 C, Side View, Cut to 2 s Reaction Pulse, Playback at 1000 fps (Realtime).mp4
Video_S08: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 600 °C reaction pulse for 2 s. This video is played back at a framerate of 1000 fps (realtime) and is the same footage as Video_S07.
(11.96 MB)

Video_S09_600 C, Top View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S09: This video shows a top view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 600 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(12.11 MB)

Video_S10_650 C, Side View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S10: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 650 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(11.97 MB)

Video_S11_650 C, Side View, Cut to 2 s Reaction Pulse, Playback at 1000 fps (Realtime).mp4
Video_S11: This video shows a side view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 650 °C reaction pulse for 2 s. This video is played back at a framerate of 1000 fps (realtime) and is the same footage as Video_S10.
(11.97 MB)

Video_S12_650 C, Top View, Cut to 2 s Reaction Pulse, Playback at 30 fps.mp4
Video_S12: This video shows a top view of the Visual PHASR system. A 15 µm film of LDPE is subjected to a 650 °C reaction pulse for 2 s. This video is played back at a framerate of 30 fps (~33.3 times slower than realtime).
(12.2 MB)

Video Descriptions.txt
Text file containing descriptions of all videos.
(3.45 KB)

Readme.txt
Readme
(5.55 KB)

AllVideos_Description_Readme.zip
Compressed file of all videos, video descriptions, and Readme
(144.23 MB)

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