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Hybrid microalgal biofuel, desalination, and solution mining systems: increased industrial waste energy, carbon, and water use efficiencies

机译:混合微藻生物燃料,海水淡化和解决方案采矿系统:提高工业废能,碳和水的利用效率

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摘要

This work reviews retrofitting new waste energy, carbon and water intensive technologies into existing industrial facilities (including electricity generators) to increase net energy, carbon, and water use efficiencies. The three applications reviewed are microalgal ponds consuming flue gasses and providing thermal power station cooling services, thermally driven membrane distillation desalination, and hydrometallurgical solution mining processes to indirectly remove water contaminants, and additional power station cooling. The aim of this work is to explore the unique challenge of site-specificity of retrofitting any or all of the reviewed technologies within existing facilities for commercial operations. The theoretical basis behind higher aggregated efficiencies is essentially vertical integration of infrastructure, energy, and material flows, reducing total costs, net waste, and associated potential environmental contamination. Whilst solution mining and some thermal desalination technologies are not necessarily new in isolation, new technical developments enable these technologies to use waste heat and waste water by operating in parallel with industrial facilities, and effectively subsidise microalgae biofuel water pumping and dewatering. This research determines three fundamental developments are required to enable wide-scale industrial co-located vertical integration efficiencies: (1) fundamental engineering, (2) monitoring system innovation, and (3) technology/knowledge transfer.
机译:这项工作审查了将新的废能源,碳和水密集型技术改造为现有的工业设施(包括发电机),以提高净能源,碳和水的利用效率。审查的三个应用是消耗烟气并提供热电站冷却服务的微藻池,热驱动膜蒸馏脱盐以及间接去除水污染物的湿法冶金采矿工艺以及附加的电站冷却。这项工作的目的是探索针对特定地点的独特挑战,即在商业运营的现有设施中改装任何或所有经过审查的技术。更高的总体效率背后的理论基础是基础设施,能源和物料流的垂直整合,从而降低了总成本,净浪费以及相关的潜在环境污染。尽管溶液开采和某些热淡化技术不一定孤立地出现,但新的技术发展使这些技术能够通过与工业设施并行运行来利用废热和废水,并有效地补贴微藻类生物燃料的抽水和脱水。这项研究确定了实现大规模工业协同定位垂直集成效率所需的三个基本发展:(1)基础工程,(2)监控系统创新和(3)技术/知识转移。

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  • 作者

    McHenry M.P.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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