Department of Biology, College of Science in Zulfi, Majmaah University, Majmaah, ah-11952, Saudi Arabia.
Environ Sci Pollut Res Int. 2023 Nov;30(51):109955-109972. doi: 10.1007/s11356-023-30190-8. Epub 2023 Oct 6.
Due to human activity and natural processes, heavy metal contamination frequently affects the earth's water resources. The pollution can be categorized as resistant and persistent since it poses a significant risk to terrestrial and marine biological systems and human health. Because of this, several appeals and demands have been made worldwide to try and clean up these contaminants. Through bioremediation, algal cells are frequently employed to adsorb and eliminate heavy metals from the environment. Bioremediation is seen as a desirable strategy with few adverse effects and low cost. Activities and procedures for bioremediation involving algal cells depend on various environmental factors, including salinity, pH, temperature, the concentration of heavy metals, the amount of alga biomass, and food availability. Additionally, the effectiveness of removing heavy metals from the environment by assessing how environmental circumstances affect algal activities. The main issues discussed are (1) heavy metal pollution of water bodies, the role of algal cells in heavy metal removal, the methods by which algae cells take up and store heavy metals, and the process of turning the algae biomass produced into biofuel. (2) To overcome the environmental factors and improve heavy metals bioremediation, many strategies are applied, such as immobilizing the cells, consortium culture, and using dry mass rather than living cells. (3) The processes for converting produced algal biomass into biofuels like biodiesel and biomethanol. The present study discusses the life cycle assessment and the limitations of biofuel products from algae biomass.
由于人类活动和自然过程,重金属污染经常影响地球的水资源。这种污染具有抗性和持久性,因为它对陆地和海洋生物系统以及人类健康构成重大风险。因此,全世界发出了几项呼吁和要求,试图清理这些污染物。通过生物修复,藻类细胞经常被用来从环境中吸附和去除重金属。生物修复被视为一种具有较少负面影响和低成本的理想策略。涉及藻类细胞的生物修复活动和程序取决于各种环境因素,包括盐度、pH 值、温度、重金属浓度、藻类生物量的数量和食物供应。此外,通过评估环境条件如何影响藻类活动来评估从环境中去除重金属的效果。讨论的主要问题包括:(1)水体重金属污染,藻类细胞在重金属去除中的作用,藻类细胞吸收和储存重金属的方法,以及将产生的藻类生物质转化为生物燃料的过程。(2)为了克服环境因素并改善重金属生物修复,应用了许多策略,例如固定化细胞、共生培养和使用干物质而不是活细胞。(3)将产生的藻类生物质转化为生物燃料(如生物柴油和生物甲醇)的过程。本研究讨论了藻类生物质生物燃料的生命周期评估和局限性。