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蒙納士大學(xué)能源與環(huán)保實(shí)驗(yàn)室博士項(xiàng)目
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PhD Programs in Laboratory for Energy & Environmental Conservation (LEEC) at Monash University 蒙納士大學(xué)能源與環(huán)保實(shí)驗(yàn)室博士項(xiàng)目 Principal Investigator: Dr. Baiqian Dai www.monash.edu/engineering/leec Email: bai-qian.dai@monash.edu 1.Research on the application for the advanced catalysts synthesized from solid waste (2 PhD + 2 Masters) This project aims to obtain advanced catalysts from variety of sold waste, such as coal fly ash, slag, which were landfill waste with environment issues. Through the directional extraction of specific metals from the solid waste to cations, with the impregnation of catalytic cations (Ni, Pd), selected chemistry synthesis, and structure modification, the crystallised nanosized catalysts will be obtained. The performance on the catalytic combustion for VOCs will be investigated for the obtained catalysts. Potential electrocatalysis for the obtained catalysts will be studied. Modelling approaches including the DTF to indicate the growth of the catalysts will be involved. The successful of the project will provide innovative approach from solid waste to high-valued catalyst in an environment friendly manner. 該研究項(xiàng)目旨在以不同的固體廢棄物,如粉煤灰,鋼渣,污泥等為原料,通過定向提取和選擇合成工藝,得到良好形狀的二維材料。通過對生長過程的模擬和調(diào)控,及對合成過程的摻雜和修飾,得到高性能的催化劑,用于二氧化碳還原,有機(jī)廢氣的催化燃燒等, 該項(xiàng)目成果實(shí)現(xiàn)對廉價(jià)的固廢無害化處理的同時(shí),形成高附加值的催化劑產(chǎn)品應(yīng)用。 2.Innovative approaches for sludge high temperature conversion (2 PhDs + 2 Masters) This project aims to establish an efficient integrated process to produce building materials from sludge. The process simulation and energy analysis will be investigated for the integrated process, including the pretreatment, high-temperature conversion, the synergistic reactions for the ash-forming metals and inorganic compounds. The completion of this project aims to establish an economic process to minimize the sludge and transfer the waste to treasure. 該項(xiàng)目針對污泥量大,能量密度低,高含水量的特點(diǎn),旨在建議一套新型的污泥高溫處理制造建筑材料工藝,集污泥的預(yù)處理,高溫轉(zhuǎn)化以及成型工藝。對轉(zhuǎn)化過程的技術(shù)經(jīng)濟(jì)性分析,不同成分之間的耦合協(xié)同作用以及灰分的燒結(jié),熔融對建材產(chǎn)品性能的影響。該項(xiàng)目將實(shí)現(xiàn)污泥減量化,無害化處理的同時(shí),形成性能穩(wěn)定的建筑材料,變廢為寶。 3.Research on the slag fluidity for low-rank fuels (1 PhDs +1 Masters) The fluidity of the slag from low-rank fuels, including biomass, sludge and lignite determine the technologies to deal with these resources. This project aims clarify the fluidity, melting, sintering mechanisms to establish a proper method to quantify the slag fluidity. Data base for low-rank fuel slags will be established based on the experiment and image identification. Reliable model will be created for accurate prediction for slag viscosity. 生物質(zhì),污泥,褐煤等燃料儲量大,能量密度低,難以實(shí)現(xiàn)大規(guī)模高效轉(zhuǎn)化。高溫轉(zhuǎn)化過程中灰渣的流動(dòng)和熔融特性的研究對建立合理的轉(zhuǎn)化途徑意義重大。該項(xiàng)目將建立一套基于低品階燃料灰渣粘度,熔融,流變性定量的理論預(yù)測模型和實(shí)驗(yàn)定量手段。 |
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