Sustainable Oleo Polymers: A promising Alternative Resource for Petro-Energy

Sharif Ahmad
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Abstract

The growth and development of all countries, in terms of their economic infrastructure and the quality of their citizen’s life, depend on energy. Particularly, in developing economies, the demand for energy is high in various sectors including residential, agricultural, industrial, medical and economy. The energy for these sectors comes from conventional (e.g. fossil fuels) and non-conventional (e.g. wind, solar, biomass, biofuels) sources. The production of petroleum-based products, i.e. the main conventional resource, was increased by 2.2 million b/d (barrels per day), while the natural gas consumption grew by 195 billion cubic meters. Thus, the annual growth in the consumption of conventional sources of energy favors their exhaustion in the near future. Besides, their extensive consumption causes severe environmental pollutions that risks the health of human as well as other beings. Therefore, we must switch from the consumption of polluting-conventional resources to green and renewable ones. In this regard, the production of biodiesel/biofuels, which are produced from the green and environmentally friendly resources, like vegetable and animal oils, have attracted the attention of various sectors. Among these, the utilization of vegetable oils as feedstock for the production of biodiesels is found to be more effective, owing to their availability, diversity, and their versatile properties. According to Statista, the annual production of various vegetable oils was ~ 204 million metric tons (mmt) in 2018-19, which was higher than 2017-18 by ~ 6.7 mmt. The extensive production of these vegetable oils (VOs) has also facilitated their application in the production of functional materials and compounds, which directly reduced the production cost and consumption of fossil-based products. During the past decades, our group has extensively utilized vegetable oils as active materials and synthetic medium for the synthesis and development of functional polymers, paints, nanomaterials, hydrogels, artificial tissues, etc. that confirms the diversity and applicability of VOs as promising alternates. This suggest “that everything made from fossil fuels (materials) today can be made from a tree (sustainable resource) tomorrow”.
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可持续油质聚合物:一种有前途的石油能源替代资源
所有国家的经济基础设施和国民生活质量的增长和发展都依赖于能源。特别是在发展中经济体,包括住宅、农业、工业、医疗和经济在内的各个部门对能源的需求都很高。这些部门的能源来自常规能源(如化石燃料)和非常规能源(如风能、太阳能、生物质能、生物燃料)。主要常规资源石油产品产量增加220万桶/日,天然气消费量增加1950亿立方米。因此,传统能源消费的年增长有利于它们在不久的将来枯竭。此外,它们的大量消费造成严重的环境污染,危及人类和其他生物的健康。因此,我们必须从消耗有污染的传统资源转向绿色和可再生资源。在这方面,利用植物油和动物油等绿色环保资源生产的生物柴油/生物燃料引起了各界的关注。其中,利用植物油作为生产生物柴油的原料被认为是更有效的,因为它们的可用性、多样性和多用途特性。根据Statista的数据,2018-19年各种植物油的年产量约为2.04亿吨,比2017-18年高出约670万吨。这些植物油的大量生产也促进了它们在功能材料和化合物生产中的应用,直接降低了化石基产品的生产成本和消耗。在过去的几十年里,我们的团队已经广泛使用植物油作为活性材料和合成介质,用于合成和开发功能聚合物、涂料、纳米材料、水凝胶、人工组织等,这证实了挥发性有机化合物作为有前途的替代品的多样性和适用性。这表明“今天所有由化石燃料(材料)制成的东西,明天都可以由树木(可持续资源)制成”。
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