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| 【有獎(jiǎng)交流】積極回復(fù)本帖子,參與交流,就有機(jī)會(huì)分得作者 chenxumeng119 的 11 個(gè)金幣 ,回帖就立即獲得 1 個(gè)金幣,每人有 1 次機(jī)會(huì) | |||
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澳洲昆士蘭大學(xué)化工方向-全額獎(jiǎng)學(xué)金
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我們招聘一個(gè)博士生,參與一個(gè)由三個(gè)國家的研究人員組織的研究團(tuán)隊(duì),研究泡沫的界面性質(zhì),開發(fā)突破性技術(shù)。見下面的獎(jiǎng)學(xué)金廣告和申請步驟。此類重點(diǎn)獎(jiǎng)學(xué)金要求申請人具有較好的GPA和較強(qiáng)的研究能力,申請人需要對界面科學(xué)和測試有所了解。根據(jù)最近的US NEWS 排名,UQ大學(xué)總體世界排名第36,UQ的化學(xué)工程和資源加工工程也是世界領(lǐng)先專業(yè) This Earmarked Scholarship project is aligned with a recently awarded Category 1 research grant. It offers you the opportunity to work with leading researchers and contribute to large projects of national significance. Froth flotation is widely used in fuel and mineral processing plants to separate value commodities into concentrates from wastes. Persistent froth in the flotation concentrates presents operational challenges in downstream processing. For example, in the sumps where flotation concentrates are pumped to the dewatering process, the liquid level sensors often fail to detect the persistent froth which may lead to flooding of the processing area or even the entire plant. In dewatering to separate the solids/oils in the concentrate from water, persistent froth significantly reduces both thickening and filtration efficiencies. Froth in wet stockpiles of the solids product can also cause sudden collapse of stockpiles, a major safety concern. As a result, persistent froth in fuel and mineral processing plants not only presents operational challenges that decrease the plant productivity, but also poses environmental risks through “l(fā)oss of containment”. The objective of this project is to understand the interfacial properties of persistent froth. Persistent froth existing in coal preparation plants, copper processing plants and oil extraction plants will be simulated in the laboratory first and then the interactions occurring at solid/liquid/gas interfaces will be determined through advanced measurement and modelling. The research outcomes will guide other researchers within the same team to develop novel technologies to destabilize persistent froth. The PhD candidate will participate in trainings and plant trials in three countries. 申請鏈接: https://graduate-school.uq.edu.a ... es-persistent-froth 任何問題請郵件: Professor Yongjun Peng School of Chemical Engineering Email: yongjun.peng@uq.edu.au |
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