Instituto de Desenvolvimento Rural do Paraná - IAPAR-EMATER, Rod Celso Garcia Cid, km 375, P. O. Box 1030, Londrina, Paraná, Zip Code 86047-902, Brazil.
Centro Universitário Filadélfia - UniFil, Londrina, Brazil.
Environ Sci Pollut Res Int. 2022 Mar;29(15):22708-22720. doi: 10.1007/s11356-021-17427-0. Epub 2021 Nov 19.
The aim of this study was to provide a bibliometric analysis and mapping of existing scientific papers, focusing on microalgae cultivation coupled with biomass production and bioremediation of wastewater from agricultural industries, including cassava, dairy, and coffee. Using the Web of Science (WoS) database for the period 1996-2021, a search was performed using a keyword strategy, aiming at segregating the papers in groups. For the first search step, the keywords "wastewater treatment", AND "microalgae", AND "cassava" OR "dairy" OR "coffee" were used, resulting in 59 papers. For the second step, the keywords "wastewater treatment" AND "biomass productivity" AND "microalgae" AND "economic viability" OR "environmental impacts" were used, which resulted in 34 articles. In these papers, keywords such as "carbon dioxide biofixation" and "removal of nutrients by the production of biomass by microalgae" followed by "environmental and economic impacts" were highlighted. Some of these papers presented an analysis of the economic feasibility of the process, which reveal the state-of-the-art setup required to make the cultivation of microalgae economically viable. Researches focusing on the efficiency of microalgae biomass harvesting are needed to improve the integration of microalgae production in industrial eco-parks using wastewater to achieve the global goal of bioremediation and clean alternatives for renewable energy generation.
本研究旨在对现有科学文献进行文献计量分析和绘制图谱,重点研究微藻培养与农业产业废水的生物量生产和生物修复相结合,包括木薯、乳制品和咖啡。使用 Web of Science(WoS)数据库,检索时间为 1996 年至 2021 年,使用关键词策略进行搜索,旨在将文献分组。在第一步搜索中,使用了“废水处理”、“微藻”、“木薯”或“乳制品”或“咖啡”的关键词,共得到 59 篇论文。在第二步搜索中,使用了“废水处理”、“生物量生产力”、“微藻”和“经济可行性”或“环境影响”的关键词,共得到 34 篇文章。在这些论文中,突出了“二氧化碳生物固定”和“通过微藻生产生物质去除营养物质”以及“环境和经济影响”等关键词。其中一些论文对该过程的经济可行性进行了分析,揭示了使微藻培养具有经济可行性所需的最新设置。需要研究微藻生物量收获的效率,以改善利用废水在工业生态园区中进行微藻生产的集成,从而实现生物修复和可再生能源生产的清洁替代物的全球目标。