Abideen Zainul, Ansari Raziuddin, Hasnain Maria, Flowers Timothy J, Koyro Hans-Werner, El-Keblawy Ali, Abouleish Mohamed, Khan Muhammed Ajmal
Dr. Muhammad Ajmal Khan Institute of Sustainable Halophyte Utilization, University of Karachi, Karachi, Pakistan.
Department of Biotechnology, Lahore College for Women University, Lahore, Pakistan.
Front Plant Sci. 2023 Jun 2;14:1026063. doi: 10.3389/fpls.2023.1026063. eCollection 2023.
There exists a global challenge of feeding the growing human population of the world and supplying its energy needs without exhausting global resources. This challenge includes the competition for biomass between food and fuel production. The aim of this paper is to review to what extent the biomass of plants growing under hostile conditions and on marginal lands could ease that competition. Biomass from salt-tolerant algae and halophytes has shown potential for bioenergy production on salt-affected soils. Halophytes and algae could provide a bio-based source for lignoceelusic biomass and fatty acids or an alternative for edible biomass currently produced using fresh water and agricultural lands. The present paper provides an overview of the opportunities and challenges in the development of alternative fuels from halophytes and algae. Halophytes grown on marginal and degraded lands using saline water offer an additional material for commercial-scale biofuel production, especially bioethanol. At the same time, suitable strains of microalgae cultured under saline conditions can be a particularly good source of biodiesel, although the efficiency of their mass-scale biomass production is still a concern in relation to environmental protection. This review summaries the pitfalls and precautions for producing biomass in a way that limits environmental hazards and harms for coastal ecosystems. Some new algal and halophytic species with great potential as sources of bioenergy are highlighted.
在不耗尽全球资源的情况下养活世界上不断增长的人口并满足其能源需求,这是一项全球性挑战。这项挑战包括粮食生产和燃料生产对生物质的竞争。本文的目的是回顾在恶劣条件下和边际土地上生长的植物生物质在多大程度上能够缓解这种竞争。耐盐藻类和盐生植物的生物质已显示出在受盐影响土壤上生产生物能源的潜力。盐生植物和藻类可为木质纤维素生物质和脂肪酸提供基于生物的来源,或者替代目前使用淡水和农田生产的可食用生物质。本文概述了利用盐生植物和藻类开发替代燃料的机遇与挑战。利用盐水在边际和退化土地上种植的盐生植物为商业规模的生物燃料生产,特别是生物乙醇生产,提供了一种额外的原料。同时,在盐条件下培养的合适微藻菌株可能是生物柴油的特别好的来源,尽管就环境保护而言,其大规模生物质生产的效率仍然是一个问题。本综述总结了以限制对沿海生态系统的环境危害和损害的方式生产生物质的陷阱和预防措施。文中强调了一些具有作为生物能源来源巨大潜力的新藻类和盐生植物物种。