financially supported by Strategic Priority Research Program of the Chinese Academy of Sciences (Grant No.XDA29020200)。
With increased awareness of the large-scale CO_(2) emissions from the cement industry,there has been growing focus on greenhouse gas reduction strategies.Among all these strategies,fuel substitution using biomass fuel...
This work is financially supported by“Transformational Technologies for Clean Energy and Demonstration”,Strategic Priority Research Program of the Chinese Academy of Sciences(Grant number XDA21040300);Youth Innovation Promotion Association of the Chinese Academy of Sciences(Grant number Y201642).
Nitrogen oxides(NO_(x))from cement industry have drawn more and more attention and the existing denitrification technologies can hardly meet the increasingly stringent emission requirements in China.In our previous wo...
supported by Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDA29020200)。
The co-combustion of biomass and coal can positively impact the environment and reduce the cost of power generation.However,biomass fuels have many limitations.Circulating fluidized bed(CFB)preheating combustion is su...
the General Institute of Building Materials Research of China(No.2017YFC0210801);the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)。
Based on the theory of computational fluid dynamics(CFD),pulverized coal combustion alone,and the co-combustion of pulverized coal and refuse-derived fuel(RDF)in a Trinal-sprayed calciner(TTF)precalciner were simulate...
This work was financially supported by key Research and Development Plan of China(No.2016YFB0601503)。
The quantity of NO_(x) emission from cement production is second only to thermal power generation and vehicle exhaust.In this paper,a phenomenon found by Taniguchi is used to achieve NO_(x) reduction in the cement pre...
This work was supported by the general institute of building materials research of china(No.2017YFC0210801);the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD).
The research method of computational fluid dynamics(CFD)is used to study the technology of burning sludge in cement precalciner.The simulation results show that the flow field in the TTF precalciner is stable,the spra...
This work was supported by the general institute of building materials research of china(No.2017YFC0210801);the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD).
In order to study the combustion characteristics,NOx emission and NH3 slip in a new trinal-sprayed precalciner,the simulations of combustion and aqueous urea solution based selective non-catalytic reduction(SNCR)proce...
the support provided by the National Key R&D Plan (under No.2018YFB0604103)
In order to study the combustion characteristics in a precalciner, the temperature and composition field in a typical Trinal-sprayed calciner were numerically analysed. The results obtained by simulation were compared...
The gas-solid two-phase flous of the precalciner were simulated by different multiphase models,such as mixture model,the Enderium model,including mixture and dispersed,and discrete phase model(DPM),The results of th...
The flow field in a cold model of 2500 t/d five-stage cyclone preheater and precalciner system was numerically simulated. Renault stress model (RSM) turbulent model was adopted to simulate the flow field, and a hybrid...