Zobrazeno 1 - 10
of 38
pro vyhledávání: '"Hidekatsu Fujishima"'
Autor:
Haruhiko YAMASAKI, Yuta MIZUGUCHI, Koki MAEDA, Hidekatsu FUJISHIMA, Tomoyuki KUROKI, Hashira YAMAMOTO, Masaaki OKUBO
Publikováno v:
Mechanical Engineering Journal, Vol 8, Iss 2, Pp 20-00519-20-00519 (2021)
The semi-dry plasma and chemical hybrid process (PCHP) has been used for the simultaneous removal of NOx and SOx emitted from a glass melting furnace. In this study, PCHP was conducted through a laboratory-scale model experiment that simulated the af
Externí odkaz:
https://doaj.org/article/cd7ff4b240264240903fbfe75c6d6534
Autor:
Hashira YAMAMOTO, Tomoyuki KUROKI, Hidekatsu FUJISHIMA, Yuri YAMAMOTO, Kouta YOSHIDA, Masaaki OKUBO
Publikováno v:
Nihon Kikai Gakkai ronbunshu, Vol 82, Iss 843, Pp 16-00255-16-00255 (2016)
Laboratory-scale experiments were carried out on simultaneous removal of NOx and SOx from a glass melting furnace using a semi-dry plasma and chemical hybrid process (PCHP). The experimental apparatus is simulated to the aftertreatment system for a f
Externí odkaz:
https://doaj.org/article/88892abd8dc54c689c449d96ae9031fe
Publikováno v:
Mechanical Engineering Journal, Vol 3, Iss 1, Pp 15-00549-15-00549 (2016)
A novel technology for the simultaneous removal of NOx (= NO + NO2) and SOx (= SO2 + SO3) in the flue gas of a glass manufacturing system is described using a plasma-chemical hybrid process (PCHP). The exhaust gas is produced by combustion of liquefi
Externí odkaz:
https://doaj.org/article/b93bf8a5b2fa4474a884a9f4498726b9
Autor:
Yuta Fukuda, Tomoyuki Kuroki, Ryosuke Nishioka, Hidekatsu Fujishima, Haruhiko Yamasaki, Hashira Yamamoto, Masaaki Okubo
Publikováno v:
Ozone: Science & Engineering. 44:453-463
Autor:
Masaaki Okubo, Haruhiko Yamasaki, Koki Maeda, Hidekatsu Fujishima, Tomoyuki Kuroki, Yuta Mizuguchi, Hashira Yamamoto
Publikováno v:
Mechanical Engineering Journal, Vol 8, Iss 2, Pp 20-00519-20-00519 (2021)
The semi-dry plasma and chemical hybrid process (PCHP) has been used for the simultaneous removal of NOx and SOx emitted from a glass melting furnace. In this study, PCHP was conducted through a laboratory-scale model experiment that simulated the af
Publikováno v:
IEEE Transactions on Industry Applications. 55:6295-6302
As NOx and SOx have significant environmental impacts, advanced treatments are required to remove them from the exhaust gas of a glass melting furnace. Here, we investigate a plasma-chemical hybrid process (PCHP) for this purpose. A pilot-scale exper
Autor:
Kota Yoshida, Yuri Yamamoto, Tomoyuki Kuroki, Hidekatsu Fujishima, Hashira Yamamoto, Masaaki Okubo
Publikováno v:
IAS
A pilot-scale simultaneous removal of ${\text{NO}}_{x}$ and ${\text{SO}}_{x}$ , as a nonthermal plasma and chemical hybrid process (PCHP), is carried out on combustion exhaust gas in a glass manufacturing system. The PCHP is implemented in an actual
Publikováno v:
Mechanical Engineering Journal, Vol 3, Iss 1, Pp 15-00549-15-00549 (2016)
A novel technology for the simultaneous removal of NOx (= NO + NO2) and SOx (= SO2 + SO3) in the flue gas of a glass manufacturing system is described using a plasma-chemical hybrid process (PCHP). The exhaust gas is produced by combustion of liquefi
Autor:
Yuri Yamamoto, Hashira Yamamoto, K. Yoshida, Tomoyuki Kuroki, Masaaki Okubo, Hidekatsu Fujishima
Publikováno v:
Transactions of the JSME (in Japanese). 82:16-00255
Autor:
Masaaki Okubo, Yuta Mizuguchi, Tomoyuki Kuroki, Haruhiko Yamasaki, Hashira Yamamoto, Hidekatsu Fujishima, Koki Maeda
Publikováno v:
The Proceedings of the Symposium on Environmental Engineering. :302