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Microwave vacuum co-pyrolysis of waste plastic and seaweeds for enhanced crude bio-oil recovery: Experimental and feasibility study towards industrialization

机译:用于加强原油生物油回收的废塑料和海藻的微波真空共热:工业化的实验性和可行性研究

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Waste-to-energy is a promising approach to tackle the energy shortage and reduce the environmental pollution. The present study aimed to evaluate the technical and economic feasibility of microwave vacuum co-pyrolysis of seaweeds and low-density polyethylene (LDPE). Although the three studied seaweeds namely; Ulva intestinalis, Sargassum polycystum, and Hypnea valentiae showed similar thermal weight loss profile, U. intestinalis showed the highest biomass and bio-oil yields which resulted in superior bio-oil areal productivity of 30.1 g m(-2). Therefore, it was selected for co-pyrolysis with LDPE at different blend ratios. Compared to individual pyrolysis of U. intestinalis, the increase inLDPE ratio enhanced the crude bio-oil production with simultaneous reduction in bio-char yield. The experimental bio-oil yields from co-pyrolysis showed higher values than the corresponding theoretical values, confirming a synergistic effect between the two feedstocks. The bio-oil produced from copyrolysis at 75% LDPE blend ratio showed better characteristics compared to the individual pyrolysis. Van Krevelen plot suggested that LDPE produces hydrogen radicals during co-pyrolysis reactions, which increased the H/C ratio and reduced the O/C ratio. GC/MS analysis confirmed that the increase in LDPE stimulates hydrocarbons proportion up to 51.2% at 75% blend ratio with significant reduction in N-containing compounds, carboxylic acids, furans, aldehydes/ketones, saccharides, and phenols. The economic feasibility analysis at a feedstock feeding rate of 11.4 ton h(-1) using Aspen Plus showed estimated net profit of 23.17 million US$ for a 20-years life time plant. The present study provides a potential approach for sustainable energy recovery from waste plastic/seaweeds blend using microwave vacuum co-pyrolysis.
机译:浪费能量是一种有希望的方法来解决能量短缺,减少环境污染。本研究旨在评估海藻和低密度聚乙烯(LDPE)微波真空共热解的技术和经济可行性。虽然这三个研究了海藻。 Ulva Intestinalis,Sargassum Polycystum和Hypnea Valentiae显示出类似的热量损失曲线,U. intestinalis显示出最高的生物量和生物油产率,导致卓越的生物油生产率为30.1g m(-2)。因此,选择以不同的混合比用LDPE共热解水。与U. intestinalis的单独热解相比,Intestpe的增加率高,增强了粗生物油生产,同时降低生物炭产率。来自共热分解的实验生物油产量显示出比相应的理论值更高的值,确认两个原料之间的协同效应。与单独的热解相比,从75%LDPE混合比中产生的生物油显示出更好的特性。 van Krevelen Plot建议LDPE在共热分解反应期间产生氢基,这增加了H / C比并降低了O / C比。 GC / MS分析证实,LDPE的增加刺激烃比例为75%的混合物比例,在含N含N的化合物,羧酸,呋喃,醛/酮,糖类和酚类中的显着降低。使用Aspen Plus的11.4吨H(-1)原料喂养率的经济可行性分析显示,20年生活时间厂的估计净利润为2317万美元。本研究提供了一种潜在的方法,用于使用微波真空共热来自废塑料/海藻共混物的可持续能量回收。

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