INNOVATIVE METHODS OF SEPARATION OF GLYCEROL-CONTAINING RAW MATERIALS FROM BIOFUELS

Yurii Polievoda, S. Burlaka
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Abstract

Transport consumes about 20% of the world's primary energy, mainly oil. This situation is unacceptable for countries that do not have their own oil reserves and want a stable economy and energy independence. Communities in many countries recognize that these problems continue to accompany the use of road transport and have long paid serious attention to the use of alternative fuels for vehicles, including biofuels, natural gas and hydrogen. However, in the current increase in the number of food industry facilities, it is necessary to deal with food products that have a negative impact on the environment (food fats). According to some data, the amount of garbage per day can range from a few kilograms to tens of tons. Approximately 90% of diesel biofuels (DBs) are mainly derived from processed oils and raw materials, including fats and oils of animal or vegetable origin that are recyclable. Biofuel is a biologically harmless product. In contact with water, the wine does not harm aquatic flora and fauna. In water or soil, it undergoes almost complete biological decomposition. Combustion of diesel biofuels emits much less carbon dioxide (CO2) than combustion of conventional fuels. Of course, there are drawbacks. First, biofuels have low frost resistance. Undiluted biofuel damages rubber hoses and gaskets. Biofuels have a certain shelf life. Due to increased maintenance costs, deposits can contaminate fuel equipment and filters during operation. Particular attention should be paid to the free glycerin that remains during production. The article considers biofuel production technologies and methods of glycerin removal. The focus is on devices that allow you to remove glycerin mobile. As a result, a faucet was proposed in which a filter was installed to remove residual glycerin and a study of its operation using the FlowVision program was performed. The simulation model of operation of the mixer with reception of indicators of its work is executed.
从生物燃料中分离含甘油原料的创新方法
交通运输消耗了世界上大约20%的一次能源,主要是石油。对于没有自己的石油储备、希望经济稳定和能源独立的国家来说,这种情况是不可接受的。许多国家的社区认识到,这些问题继续伴随着公路运输的使用,长期以来一直认真关注车辆替代燃料的使用,包括生物燃料、天然气和氢。然而,在目前食品工业设施数量增加的情况下,有必要处理对环境有负面影响的食品(食品脂肪)。根据一些数据,每天的垃圾数量可以从几公斤到几十吨不等。大约90%的柴油生物燃料(db)主要来自加工过的油和原材料,包括可回收的动物或植物来源的脂肪和油。生物燃料是一种生物无害的产品。与水接触,对水生动植物无害。在水或土壤中,它经历几乎完全的生物分解。燃烧柴油生物燃料排放的二氧化碳(CO2)比燃烧传统燃料少得多。当然,也有缺点。首先,生物燃料的抗冻性较低。未稀释的生物燃料会损坏橡胶软管和垫圈。生物燃料有一定的保质期。由于维护成本的增加,沉积物会在运行过程中污染燃料设备和过滤器。应特别注意生产过程中残留的游离甘油。本文探讨了生物燃料的生产技术和甘油脱除方法。重点是让你去除甘油移动的设备。因此,提出了一种水龙头,其中安装了过滤器来去除残留的甘油,并使用FlowVision程序对其操作进行了研究。建立了带工作指标接收的混合器运行仿真模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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