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international symposium on computers and communications | 2011

Slagging Behavior of Upgraded Brown Coal and Bituminous Coal in 145 MW Practical Coal Combustion Boiler

Katsuya Akiyama; Haeyang Pak; Yoji Takubo; Toshiya Tada; Yasuaki Ueki; Ryo Yoshiie; Ichiro Naruse

The purpose of this study is to quantitatively evaluate behaviors of ash deposition during combustion of Upgraded Brown Coal (UBC) and bituminous coal in a 145 MW practical coal combustion boiler. A blended coal consisting 20 wt% of the UBC and 80 wt% of the bituminous coal was burned for the combustion tests. Before the actual ash deposition tests, the molten slag fractions of ash calculated by chemical equilibrium calculations under the combustion condition was adopted as one of the indices to estimate the tendency of ash deposition. The calculation results showed that the molten slag fraction for UBC ash reached approximately 90% at 1,523 K. However, that for the blended coal ash became about 50%. These calculation results mean that blending the UBC with a bituminous coal played a role in decreasing the molten slag fraction. Next, the ash deposition tests were conducted, using a practical pulverized coal combustion boiler. A water-cooled stainless-steel tube was inserted in locations at 1,523 K in the boiler to measure the amount of ash deposits. The results showed that the mass of deposited ash for the blended coal increased and shape of the deposited ash particles on the tube became large and spherical. This is because the molten slag fraction in ash for the blended coal at 1,523 K increased and the surface of deposited ash became sticky. However, the mass of the deposited ash for the blended coal did not greatly increase and no slagging problems occurred for 8 days of boiler operation under the present blending conditions. Therefore, appropriate blending of the UBC with a bituminous coal enables the UBC to be used with a low ash melting point without any ash deposition problems in a practical boiler.


Energy & Fuels | 2010

Ash Deposition Behavior of Upgraded Brown Coal and Bituminous Coal

Katsuya Akiyama; Haeyang Pak; Toshiya Tada; Yasuaki Ueki; Ryo Yoshiie; Ichiro Naruse


Archive | 2010

METHOD FOR SUPPRESSING ADHESION OF ASH AND DEVICE FOR SUPPRESSING ADHESION OF ASH IN BOILER

Katsuya Akiyama; Haeyang Pak


Fuel | 2011

Effect of MgO addition to upgraded brown coal on ash-deposition behavior during combustion

Katsuya Akiyama; Haeyang Pak; Yasuaki Ueki; Ryo Yoshiie; Ichiro Naruse


Archive | 1997

Melt treatment apparatus

Yasuo Higashi; Katsuya Akiyama; Tsuyoshi Noura; Akiyoshi Yamane


Archive | 2010

Method for reducing adhesion of ash in boiler and device for the same

Katsuya Akiyama; Haeyang Pak


Archive | 1997

Melting treatment device

Katsuya Akiyama; Yasuo Azuma; Takeshi Noura; Akiyoshi Yamane; 朗義 山根; 康夫 東; 勝哉 秋山; 毅 能浦


Archive | 2012

Method for removing nitrogen oxides

Takeshi Yamashita; Katsuya Akiyama; Noriaki Mizutani


Archive | 2011

METHOD AND APPARATUS FOR SUPPRESSING ADHESION OF ASH TO HEATING FURNACE

Yoji Takubo; 陽司 田窪; Katsuya Akiyama; 勝哉 秋山; Umihiro Boku; 海洋 朴


Fuel and Energy Abstracts | 2011

Ash deposition behavior of upgraded brown coal in pulverized coal combustion boiler

Katsuya Akiyama; Haeyang Pak; Yoji Takubo; Toshiya Tada; Yasuaki Ueki; Ryo Yoshiie; Ichiro Naruse

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