Working fire in Union, IL – June 19, 2023

Photos from Michael Paige capturing the fire at the Illinois Railway Museum, located at 7000 Olson Road in Union, Illinois. These images provide a rare and powerful glimpse into the scene as emergency crews responded to the incident.
#chicagoareafire.com; #MichaelPaige; #BooneCountyFPD; #firetruck; #IllinoisRailwayMuseum;

Michael Paige photo

#chicagoareafire.com; #MichaelPaige; #BooneCountyFPD; #firetruck; #IllinoisRailwayMuseum;

Michael Paige photo

#chicagoareafire.com; #MichaelPaige; #UnionFPD; #fire; #IllinoisRailwayMuseum;

Michael Paige photo

Michael Paige photo

#chicagoareafire.com; #MichaelPaige; #UnionFPD; #fire; #IllinoisRailwayMuseum;

Michael Paige photo

#chicagoareafire.com; #MichaelPaige; #UnionFPD; #fire; #IllinoisRailwayMuseum;

Michael Paige photo

These photos offer a compelling visual record of the event, showing both the intensity of the flames and the dedication of first responders working to contain the blaze. The Illinois Railway Museum is a historic site known for its collection of vintage trains and rail equipment, making this incident particularly significant for local history enthusiasts and rail fans alike.

Benzocyclobutenone Micro Electro-mechanical Systems

Benzocyclobutenone micro electro-mechanical systems (MEMS) are a type of microelectromechanical system that uses benzocyclobutenone as a material for the fabrication of MEMS devices. Benzocyclobutenone is a small molecule that has a unique combination of properties, including high thermal stability, low dielectric constant, and high mechanical strength.

The use of benzocyclobutenone in MEMS devices has several advantages over other materials. For example, it can be used to fabricate devices with high aspect ratios, which are important for many MEMS applications. Additionally, benzocyclobutenone is compatible with a wide range of fabrication processes, including photolithography, etching, and deposition.

Benzocyclobutenone MEMS devices have been used in a variety of applications, including microfluidics, chemical sensing, and optical communications. One example is the development of a benzocyclobutenone-based microcantilever sensor for detecting volatile organic compounds (VOCs) in gas samples.

Overall, benzocyclobutenone MEMS offer a promising avenue for the development of high-performance microdevices with unique properties.



1-Bromobenzocyclobutene,CAS No. 3469-06-5,Molecular Formula: C8H6O,CAS No. 21120-91-2,Molecular Formula: C8H5Br,CAS No. 195730-31-5,CAS No. 694-87-1,Molecular Formula: C8H8,Molecular Formula: C8H7BO2,Molecular Formula: C8H7N,CAS No. 55716-66-0

Chemtarget Technologies Co., Ltd. , https://www.dgtbcb.com

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