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Direct energy recovery from primary and secondary sludges by supercritical water oxidation

机译:通过超临界水氧化从一次和二次污泥中直接回收能量

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摘要

Supercritical water oxidation (SCWO) oxidizes organic and biological materials virtually completely to benign products without the need for stack gas scrubbing. Heavy metals are recovered as stabilized solid, along with the sand and clay that is present in the feed. The technology has been under development for twenty years. The major obstacle to commercialization has been developing reactors that are not clogged by inorganic solid deposits. That problem has been solved by using tubular reactors with fluid velocities that ire high enough to keep solids in suspension. Recently, system designs have been created that reduce the cost of processing sewage sludges below that of incineration. At 10 wt-% dry solids, sludge can be oxidized with virtually complete recovery of the sludge heating value as hot water or highpressure steam. Liquid carbon dioxide of high purity can be recovered from the gaseous effluent and excess oxygen can be recovered for recycle. The net effect is to reduce the stack to a harmless vent with minimal flow rate of a clean gas. Complete simulations have been developed using physical property models that accurately simulate the thermodynamic properties of sub- and supercritical water in mixtures with O-2, N-2, CO2, and organics. Capital and operating cost estimates are given for sewage sludge treatment, which are less costly than incineration. The scenario of direct recovery of energy from sludges has inherent benefits compared to other gasification or liquefaction options.
机译:超临界水氧化(SCWO)实际上将有机和生物材料完全氧化为良性产品,而无需进行烟道气洗涤。重金属与进料中存在的沙子和粘土一起以稳定的固体形式回收。该技术已经发展了二十年。商业化的主要障碍是开发不会被无机固体沉积物堵塞的反应器。通过使用具有足够高的流速以将固体保持在悬浮状态的管式反应器解决了该问题。最近,已经建立了系统设计,可以将处理污泥的成本降低到低于焚化的成本。在干固体含量为10 wt%的情况下,污泥可以被氧化,几乎可以完全回收污泥的热值,如热水或高压蒸汽。可以从气态废水中回收高纯度的液态二氧化碳,并可以回收过量的氧气进行循环利用。最终效果是以最小的清洁气体流速将烟囱减少到无害的通风口。已使用物理特性模型开发了完整的模拟,该模型可以精确模拟O-2,N-2,CO2和有机物混合物中亚临界水和超临界水的热力学性质。给出了污水污泥处理的资本和运营成本估算,其成本低于焚烧。与其他气化或液化方案相比,直接从污泥中回收能量的方案具有固有的优势。

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