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Unlocking the potential of pulp and paper industry to achieve carbon-negative emissions via calcium looping retrofit

机译:解锁纸浆和造纸工业的潜力通过钙循环改造来实现碳负排放

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Pulp and paper is considered to be the fourth most energy-intensive industry (EII) worldwide. However, as most of the CO2 emissions are of biomass origin, this sector has the potential to become a carbon negative industry. This study proposes a new concept for conversion of the pulp and paper industry to carbon negative that relies on the inherent CO2 capture capability of the Kraft process. The technoeconomic performance of the proposed carbon-negative system, based on calcium looping (CaL) retrofitted to a pulp and paper plant, was evaluated. The effect of CaL design specifications and cost assumptions on the thermodynamic and economic performance were evaluated. Under the initial design assumptions, the reference pulp and paper plant was shown to turn from electricity importer to electricity exporter with the cost of CO2 avoided equal to 39.0 Euro/tCO2. The parametric study showed that an increase in the fresh limestone make-up rate resulted in a linear increase of the specific primary energy consumption for CO2 avoided (SPECCA) and a reduction in the amount of electricity exported to the electric grid. This translates into an increase in the price of pulp and newsprint, and the cost of CO2 avoided. This study has also demonstrated that the pulp and paper industry has high potential to become carbon negative. It has been shown that carbon capture and storage would become economically viable in this industry if the negative CO2 emissions are recognised and a negative CO2 emissions credit of at least 41.8 Euro/tCO(2) is implemented. (c) 2020 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:纸浆和纸被认为是全球第四个最能集中的行业(EII)。然而,由于大多数二氧化碳排放是生物质来源的,该部门具有成为碳负面行业的潜力。本研究提出了一种新的概念,用于将纸浆和造纸工业转化为碳负数,依赖于牛皮纸过程的固有二氧化碳捕获能力。评估了基于钙和造纸厂改装的钙和造纸植物的碳阴性系统的技术经济性能。评估了CAL设计规范和成本假设对热力学和经济性能的影响。在初始设计假设下,参考纸浆和造纸厂被证明从电力进口商转向电量出口商,CO2的成本避免等于39.0欧元/ TCO2。参数研究表明,新鲜石灰石化妆率的增加导致CO2的特定初级能量消耗的线性增加避免(SPECCA),并且输出到电网的电量的减少。这转化为纸浆和新闻纸的价格增加,二氧化碳的成本避免了。本研究还表明,纸浆和造纸工业具有高潜力的碳负性。已经表明,如果承认负二氧化碳排放,则碳捕获和储存将在该行业中经济上可行,并实施至少41.8欧元/ TCO(2)的负二氧化碳排放信贷。 (c)2020作者。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommomons.org/licenses/by/4.0/)。

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