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Environmental performance of end-of-life handling alternatives for paper-and-pulp-mill sludge: Using digestate as a source of energy or for biochar production

机译:纸浆厂污泥的报废处理替代品的环境绩效:使用消化液作为能源或生物炭生产

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This paper evaluates the environmental impacts of different alternatives for handling of sludge from paper and pulp mills in Sweden, using Life Cycle Assessment (LCA). The common practice of incineration of biosludge with energy recovery followed by landfilling of ash (System A) was compared with the alternative of digesting sludge anaerobically to produce biogas using different digestate residue management options. The digestate produced from anaerobic digestion (AD) was assumed to be incinerated for heat energy recovery in System B or pyrolyzed for biochar production in System C to be mixed with forest soils. The impact categories considered in this work are climate change, non-renewable energy use, mineral extraction, aquatic ecotoxicity, carcinogens and non-carcinogens. The LCA results demonstrate that the two proposed systems significantly reduce the environmental impacts of biosludge management relative to incineration. An 85% reduction in the aquatic ecotoxicity impact is achieved in System C, due to the reduced mobility of heavy metals in biochar relative to ash. System C, on the whole, outperformed the other two, leading the authors to the recommendation that the use of pulp and paper mill biosludge in biogas-biochar production systems is preferable to merely recovering energy from it. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文使用生命周期评估(LCA)评估了瑞典造纸厂和纸浆厂处理污泥的不同替代方法对环境的影响。比较了使用能量回收焚化生物污泥,然后将其填埋灰烬(系统A)的常见做法,以及使用不同的消化残余物管理选项厌氧消化污泥以生产沼气的替代方法。假定厌氧消化(AD)产生的消化物在系统B中被焚化以回收热能,或在系统C中被热解以生产生物炭与森林土壤混合。在这项工作中考虑的影响类别是气候变化,不可再生能源的使用,矿产开采,水生生态毒性,致癌物和非致癌物。 LCA结果表明,相对于焚烧而言,这两个拟议系统显着降低了生物污泥管理对环境的影响。由于重金属在生物炭中的迁移率相对于灰分降低,因此在系统C中对水生生态毒性的影响降低了85%。总体而言,系统C的表现优于其他两个系统,这促使作者提出以下建议:在沼气生物炭生产系统中使用纸浆和造纸厂生物污泥比仅从中回收能量更可取。 (C)2019 Elsevier Ltd.保留所有权利。

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