Results 11 to 20 of about 298,929 (299)

Physical, chemical and geotechnical characterization of fly ash, bottom ash and municipal solid waste from Telangana State in India

open access: yesInternational Journal of Geo-Engineering, 2018
Utilization of fly ash, bottom ash and municipal solid waste in the field of geotechnical engineering necessitates determination of its physical, chemical, morphological and engineering properties.
Chamala Surendra Reddy   +2 more
doaj   +1 more source

Water absorption and salt attack resistance of coal ash brick made of different percentage of foam content [PDF]

open access: yes, 2014
Coal ash which constitute of fly ash and bottom ash were proved to be used as main component in brick production. However, published work on the coal ash brick with addition of foam in order to produce lightweight brick is still lacking. This thesis
Ismail, Sushilawati
core   +1 more source

MECHANICAL PROPERTIES OF BOTTOM ASH AND UTILIZATION OF STABILIZED BOTTOM ASH

open access: yesDoboku Gakkai Ronbunshu, 1997
焼却灰は全国各地の焼却処理施設から排出され, 一般廃棄物として埋立処分されている. 国土の狭い我が国が, 焼却灰で埋立てられた跡地や焼却灰を有効利用することは不可欠なことである. そこで, 焼却灰を試料とした圧縮試験, 三軸試験, さらにセメント, 消石灰を用いて安定処理した焼却灰を試料とした突固めによる締固め試験, CBR試験, 一軸圧縮試験, 溶出試験を行った. これらの実験結果と従来からの研究を比較しながら, 焼却灰の土質力学特性, 安定処理した焼却灰の路床材, 路盤材への適用について検討した. その結果, 焼却灰は, 比較的大きな強度であることと, 安定処理した焼却灰は, 力学的には路床材, 路盤材に利用できることが明らかになった.
Yuji Maeno, Tokio Hirata, Hideo Nagase
openaire   +2 more sources

Study on heat transfer characteristics of air-cooled dry bottom ash removal system

open access: yesCase Studies in Thermal Engineering, 2023
This paper develops a numerical model to describe the bottom ash cooling process based on an actual power plant. By means of computational fluid dynamics, the influence of adjusting the operating parameters of the dry bottom ash removal system was ...
Yonghua Li, Zhi Fu, Wei Wang, Wenjie Liu
doaj   +1 more source

Potensi Limbah Arang Kayu Alaban (Vitex pubescens Bahl), Abu Dasar dan Abu Terbang Batubara Sebagai Bahan Briket

open access: yesJurnal Fisika Flux, 2020
Characterization of wood waste from halaban wood, bottom ash, and coal fly ash has been done includes tests of water content, ash content, calorific value, and composition as well as morphology.
Ninis Hadi Haryanti   +5 more
doaj   +1 more source

A Test Road with Unbound Base and Sub-Base Course from MSWI Bottom Ash Mixtures

open access: yesBuildings, 2023
A considerable amount of literature has been published on municipal solid waste incinerator (MSWI) bottom ash as a substitute for natural road materials.
Audrius Vaitkus   +2 more
doaj   +1 more source

A Comprehensive Review on the Properties of Coal Bottom Ash in Concrete as Sound Absorption Material

open access: yesMATEC Web of Conferences, 2017
The government is currently implementing policies to increase the usage of coal as fuel for electricity generation. At the same time, the dependency on gas will be reduced.
Ramzi Hannan Nurul Izzati Raihan   +3 more
doaj   +1 more source

Physical and Chemical Properties, Pretreatment, and Recycling of Municipal Solid Waste Incineration Fly Ash and Bottom Ash for Highway Engineering: A Literature Review

open access: yesAdvances in Civil Engineering, 2020
Municipal solid waste incineration (MSWI) has been widely used due to its benefits in reducing waste and recovering energy. However, MSWI fly ash and bottom ash are increasing rapidly, causing harm to human health and the environment.
Yong Lu   +6 more
doaj   +1 more source

A study on physical properties of mortar mixed with fly-ash as functions of mill types and milling times [PDF]

open access: yes, 2016
Coal ash, a material generated from coal-fired power plants, can be classified as fly ash and bottom ash. The amount of domestic fly ash generation is almost 6.84 million tons per year, while the amount of bottom ash generation is 1.51 million tons.
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core   +1 more source

The Effects of Bottom Ash from MSWI Used as Mineral Additions in Concrete

open access: yesMATEC Web of Conferences, 2017
Municipal solid waste incinerators (MSWI) produce by products which can be classified as bottom and fly ashes. The bottom ash accounts for 85–90 % of the solid product resulting from MSW combustion. The aimed of the present work is to study the effect of
Che Amat Roshazita   +3 more
doaj   +1 more source

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