Skip to content

Opening book details…

Can I read Acid-treated Waste Red Mud as an Efficient Catalyst for Catalytic Fast Copyrolysis of Lignin and Polyproylene and Ozone-catalytic Conversion of Toluene on EtoBox?

Acid-treated Waste Red Mud as an Efficient Catalyst for Catalytic Fast Copyrolysis of Lignin and Polyproylene and Ozone-catalytic Conversion of Toluene by Sumin Ryu; Jechan Lee; Hari Prasad Reddy Kannapu; Seong-Ho Jang; Yeonjoon Kim; Hoyeon Jang; Jeong-Myeong Ha; Sang-Chul Jung; Young-Kwon Park is a Environmental Science article available to read on EtoBox.

What is Acid-treated Waste Red Mud as an Efficient Catalyst for Catalytic Fast Copyrolysis of Lignin and Polyproylene and Ozone-catalytic Conversion of Toluene about?

The Zn-30wt.%Bi alloys are solidified under different Electric-Magnetic-Compound fields. Results show that a homogeneous solid structure can be achieved when the magnitude of Electric Magnetic Body Forces (EMBF, caused by AC currents interacting with static magnetic field) is 85N/cm 3 and the frequency is 50Hz. This is the first time obtaining a homogeneous hypermonotectic alloy by bulk solidification at a relative low cooling rate, 25K/min. The corresponding physical simulations are performed, which reveal that EMBF can mix the layered melt and slow down the droplet motion. Moreover, two physical models are proposed to illustrate how EMBF reduce the droplets' velocities.

Who reads Acid-treated Waste Red Mud as an Efficient Catalyst for Catalytic Fast Copyrolysis of Lignin and Polyproylene and Ozone-catalytic Conversion of Toluene?

It is typically read by researchers, students, and practitioners in Environmental Science.

Author
Sumin Ryu; Jechan Lee; Hari Prasad Reddy Kannapu; Seong-Ho Jang; Yeonjoon Kim; Hoyeon Jang; Jeong-Myeong Ha; Sang-Chul Jung; Young-Kwon Park
Publisher
Elsevier Science; Elsevier ; Elsevier Inc.; Publons; Elsevier BV (ISSN 0013-9351)
Published
2020
Language
EN
Field
Environmental Science (Physical Sciences)