研究婚姻关系动态及其行为特征的一种改进的非线性分数阶微分方程组

A. Avagyan
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引用次数: 33

摘要

我们的理论包括对自然如何运作的广义解释,这些解释得到了证据的证实,涵盖了对经济和环境可持续工业过程的进一步技术发展的预测,并提供了生物能源积累和转化的作用,以更好地理解进化、人类活动的影响,决策者的错误、技术选择、流行病预防以及创新藻类系统的必要技能。生命地貌的起源和进化的可能性是微藻生物能量积累的结果,目前,藻类在减少大气中的CO2和维持O2水平方面仍占主导地位。人口增长刺激了空气中碳和生物能源的积累。化肥的生产和应用产生了大量的温室气体排放,这是一个很大的概念需求,需要转向有机农业,包括土壤藻类施肥,以促进长期可持续性。1G生物燃料生产所使用的技术,以及通过使用化肥实现的基于生物质光养生长的微藻到生物燃料的技术,都导致了温室气体排放的大幅增加,而不是缓解。微藻生物燃料在利用废水和食物垃圾促进生物量增长方面具有巨大潜力。应对新冠肺炎等未来流行病治疗的优先策略必须是提高人类和动物对感染的免疫系统的稳定性,由于微藻中生理活性化合物的浓度很高,因此应用它们可能是最佳决定。对《京都议定书》、《巴黎气候协定》等的分析结果表明,它们的适用存在诸多弊端。新政策必须建立在承认生命保护产业是生产的新组成部分的基础上。关键词:生物能源、生物燃料、环境政策评估、进化、气候变化、马尔萨斯理论、微藻、农业、流行病、废物
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A Modified System of Nonlinear Fractional-Order Differential Equations in the Study of the Dynamics of Marital Relationships and their Behavioural Features
Our theory includes generalized explanations of how nature works, confirmed by pieces of evidence, cover predictions for further technological developments towards economically and environmentally sustainable industrial processes as well as provides the role of bioenergy accumulation and transformation for improved understanding about evolution, influences of anthropogenic activity, decision-makers errors, technological choices, pandemics prevention and the necessary skills toward the innovation algae-based system. The possibility of origination and evolution of the landforms of life were the results of bioenergy accumulation by microalgae and at present, the contribution of algae remains dominant in reducing CO2 and maintaining O2 level in the atmosphere. Population growth stimulates the accumulation of air carbon and bioenergy. The production and application of fertilizers originated large GHG emissions and it is a big conceptual need to shift on organic agriculture including algae fertilization of soil to contribute long-term sustainability. The used technologies for 1G biofuels production, as well as microalgae to biofuel based on biomass phototrophic growth by the use of fertilizers, are induced aggressively increasing GHG emission instead of their mitigation. Microalgae biofuel has big potential in case the use of wastewaters and food waste for biomass growth. The priority strategy for dealing with future pandemics treats such as COVID-19, etc. must be increasing the stability of immunity system of humans and animals to infections and due to a high concentration of physiologically active compounds in microalgae they application can be the best decision. Analyses of the Kyoto Protocol, Paris Climate Agreement, etc. results provide that their application has many disadvantages. The New policy must be founded on the admitting of the Life Conserve industry as the new part of the production. Keywords: bioenergy, biofuel, environmental policy evaluation, evolution, climate change, Malthusian theory, microalgae, agriculture, pandemics, waste
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