优化制浆造纸厂的用水:科学杂志发表的精简评论

Felicia Ocklind, Kristin Liback, Lova Lundqvist, Wilma Harge, G. Venkatesh
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引用次数: 0

摘要

纸浆和造纸工业的生产流程对水和能源的影响巨大,因此需要投入资金和时间来解决这一问题。此外,水和能源之间也存在着联系,优化其中一种资源的使用也会促进另一种资源的使用。本综述主要关注期刊论文(来自世界不同地区,针对行业内的研究人员和决策者),将镜头对准(林业)生物经济这一特殊领域的水资源优化利用。不同可持续发展目标(SDGs)之间的协同作用和互补性,有望通过关注水足迹的减少产生积极的涟漪效应。总的来说,这些文章建议对工厂内的废水进行有效处理,同时对处理后的废水进行再循环,并将水流视为有价值物质的载体或承载者,这些有机物可在生物精炼厂中产生大量生物产品,包括生物能源。利用水夹水分析作为一种工具来揭示级联用水的可能性(取决于级联下游工艺对水的要求),已被证明有助于优化工厂内的用水和能源需求。例如,一项案例研究表明,通过回收水流中的余热,每吨产出的蒸汽需求量可减少约 4 千兆焦耳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of Water-Use in Pulp and Paper Mills: A Streamlined Review of Scientific Journal Publications
The water-, and energy footprints of the processes in the pulp and paper industry are sizable enough to warrant investment of money and commitment of time truncate the same. Besides, there is also a nexus between water and energy here, with optimisation of the use of one of these resoruces enabling that of the other too. This streamlined review focuses on journal publications (originating from different parts of the world, and targeted at researchers and decision-makers in the industry) which train the lens on the optimisation of water use in this particular sector of the (forestry) bioeconomy. The synergies and complementarities which exist among different sustainable development goals (SDGs) , promise positive ripple effects, caused by attending to the truncation of the water footprint. The articles, in general, recommend effective in-plant wastewater treatment in combinaton with recirculating the treated effluent, and looking upon the water streams as carriers or bearers of valorisable substances – organics which can yield a host of bio-products in bio-refineries, including bio-energy. Availing of water-pinch analysis as a tool to uncover possibilities of water use in a cascade (depending upon the requirements imposed on the water, by processes downstream in the cascade), has been shown to aid in the optimisation of both water use and energy demand within the plant. One case study, for example, showed that the demand for steam can be decreased by about 4 GJ per ton of output, by recovering the waste heat in the water streams.
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