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首页> 外文期刊>Chemical engineering journal >Activated carbon from co-pyrolysis of particle board and melamine (urea) formaldehyde resin: A techno-economic evaluation
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Activated carbon from co-pyrolysis of particle board and melamine (urea) formaldehyde resin: A techno-economic evaluation

机译:刨花板与三聚氰胺(脲)甲醛树脂共热解制得的活性炭:技术经济评价

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The disposal and environmental problems associated with waste resin produced during the production of melamine (urea) formaldehyde and wood waste (i.e. particle board) containing these aminoplasts requires a processing technique which results in products of added value and which meets both ecological and economical needs. Several published results demonstrate that nitrogen incorporation in activated carbon can play a significant role as a key parameter for the adsorption properties, as well as for the catalytical activity and the dispersion of carbon supported catalysts. The production of high value nitrogenised activated carbon, after thermal treatment in an oxygen deficient environment and subsequent activation, is considered as a possible opportunity. This research paper investigates the feasibility of a process design for the production of a high added value nitrogenised activated carbon by co-pyrolysing a mix of particle board and melamine (urea) formaldehyde waste. A process design and an economical model for estimating the total capital investment, the production costs, the possible revenues, the net present value and the internal rate of return is developed based on various literature sources. In addition, Monte Carlo sensitivity analysis has been carried out to determine the importance of the main input variables on the net present value. It is assumed that the manufacturing facility obtains its waste from various sources and operates continuously during 7000 h a year. The study investigates the plant's profitability in function of processing rate and mixing ratio. Even though the current assumptions rather start from a pessimistic scenario (e.g. a zero gate fee for the melamine (urea) formaldehyde waste, a first plant cost, etc.) encouraging results for a profitable production of activated carbon are obtained. Moreover, the ability to reuse two waste streams and possible production of a specialty carbon enhances the value or usefulness of the activated carbon manufacturing facility.
机译:与在生产三聚氰胺(脲)甲醛过程中产生的废树脂和含有这些氨基塑料的木材废料(即刨花板)相关的处置和环境问题需要一种加工技术,该技术可产生具有附加值的产品,并满足生态和经济需求。若干公开的结果表明,在活性炭中掺入氮可以作为吸附性能以及碳载体催化剂的催化活性和分散性的关键参数发挥重要作用。在缺氧环境中进行热处理并随后活化后,生产高价值的氮化活性炭被认为是可能的机会。该研究论文调查了通过共同热解刨花板和三聚氰胺(脲)甲醛废料的混合物来生产高附加值氮化活性炭的工艺设计的可行性。基于各种文献资料,开发了用于估算总资本投资,生产成本,可能的收入,净现值和内部收益率的过程设计和经济模型。此外,还进行了蒙特卡罗敏感性分析,以确定主要输入变量对净现值的重要性。假设制造工厂从各种来源获得废物,并且在每年7000小时内连续运转。该研究从加工速率和混合比的角度研究了工厂的获利能力。即使当前的假设是从悲观的情况开始的(例如三聚氰胺(尿素)甲醛废料的零门费,第一工厂的成本等),却获得了令人鼓舞的活性炭生产利润的结果。此外,再利用两种废物流的能力以及特种碳的可能生产提高了活性炭生产设备的价值或实用性。

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