以可持续运营为导向--基于经济、工艺和环境的大型甲醇生产厂多标准优化研究

IF 9.7 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Journal of Cleaner Production Pub Date : 2024-09-10 DOI:10.1016/j.jclepro.2024.143614
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引用次数: 0

摘要

甲醇是工业中许多基本化学品的主要原料和组成部分之一,它广泛地从合成气中生产出来。它可用作燃料、溶剂、抑制剂、防冻剂以及生产包括烯烃和石蜡在内的多种化学品。全球每年对甲醇的需求量为 7000 万吨,预计每年将以 6-8% 的速度增长,因此有必要开发一种既经济又环保的甲醇生产工艺。本研究采用多目标优化(MOO)方法,利用非支配排序遗传算法-II(NSGA-II)对大型 Lurgi 两步甲醇合成工艺进行优化,以找到涉及工艺、经济和环境目标的帕累托前沿解。目标包括甲醇生产率、总能耗、二氧化碳年排放总量和利润。五个决策变量包括合成气摩尔流量、反应器进料压力、反应器 1 温度、反应器 2 温度和甲醇蒸馏塔中的副产品质量流量。甲醇流中的乙醇摩尔分数和甲醇在水处理流中的摩尔流量设置了两个约束条件。开发了三个优化案例(两个双目标案例和一个三目标案例)。在案例 1 的研究中,二氧化碳排放量减少了 65.83%,甲醇生产率提高了 10.11%,总能耗降低了 57.55%。采用基于理想平均距离的偏好排序法(PROBID)进行帕累托排序,并报告了所有案例的最优解。
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Investigation of sustainable operation oriented- economic, process and environment based multi-criteria optimization of large scale methanol production plant

Methanol is one of the main raw materials and a building block for many essential chemicals in the industry, and it is widely produced from the synthesis gas. It is used as a fuel, solvent, inhibitor, antifreeze agent, and in producing a variety of chemicals including olefins and paraffin. The global demand for methanol is 70 million tons per year and it is estimated to grow by a factor of 6–8% per year so it is necessary to develop a methanol production process, which is economical, and environment friendly. The multi-objective optimization (MOO) approach is used to optimize the large scale Lurgi two-step methanol synthesis process using the non-dominated sorting genetic algorithm-II (NSGA-II) to find the Pareto front solutions involving the process, economic, and environmental-based objectives. Methanol production rate, total energy consumption, total annual CO2 emissions, and profit are considered as objectives. The five decision variables include syngas molar flow, reactor feed pressure, reactor 1 temperature, reactor 2 temperature, and by-product mass flow in the methanol distillation column. Two constraints are set on ethanol mole fraction in the methanol stream, and methanol mole flow in water to the treatment stream. Three optimization cases (two bi-objective and one tri-objective) are developed. In the Case 1 study, CO2 emissions decreased by 65.83%, the methanol production rate increased by 10.11%, and total energy was reduced by 57.55%. The Pareto ranking is carried out using the Preference Ranking On the Basis of Ideal-average Distance (PROBID) method and the best optimal solution is reported for all cases.

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来源期刊
Journal of Cleaner Production
Journal of Cleaner Production 环境科学-工程:环境
CiteScore
20.40
自引率
9.00%
发文量
4720
审稿时长
111 days
期刊介绍: The Journal of Cleaner Production is an international, transdisciplinary journal that addresses and discusses theoretical and practical Cleaner Production, Environmental, and Sustainability issues. It aims to help societies become more sustainable by focusing on the concept of 'Cleaner Production', which aims at preventing waste production and increasing efficiencies in energy, water, resources, and human capital use. The journal serves as a platform for corporations, governments, education institutions, regions, and societies to engage in discussions and research related to Cleaner Production, environmental, and sustainability practices.
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