Department of Plant Biology and Biotechnology, Faculty of Biotechnology and Horticulture, University of Agriculture in Krakow, Poland.
Department of Water Protection, Central Mining Institute, Katowice, Poland.
N Biotechnol. 2021 Mar 25;61:80-89. doi: 10.1016/j.nbt.2020.11.005. Epub 2020 Nov 14.
Bio-based solutions are expected to ensure technological circularity in priority areas such as agriculture, biotechnology, ecology, green industry or energy. Although Poland, unlike the other EU member states, has not yet adopted a precise political strategy to promote bioeconomy, it has taken several actions to enable smart, sustainable and inclusive growth. This goal can be achieved by developing selected bioeconomy-related areas such as the biogas industry together with novel technologies implemented to optimize treatment of municipal sewage and management of organic solid waste. Here, the relatively strong status of the Polish biogas sector is presented. The widely used practice of sewage sludge biomethanation has led to construction of numerous complex installations combining biological wastewater treatment plants with anaerobic digesters. Based on physico-chemical processing of biostabilized sludges, a novel method for efficient granulated soil fertilizer production is elaborated, in line with the concept of circular economy and the notion of "waste-to-product". It is also shown that anaerobic fermentation of sewage sludges can be optimized by co-digestion with properly selected co-substrates to increase bioprocess yield and improve the resultant digestate fertilizer quality. The problem of post-fermentation eutrophic sludge liquors, environmentally hazardous waste effluents requiring proper treatment prior to discharge or field application, is addressed. Attempts to optimize biological treatment of digestate liquors with complex microbial consortia are presented. The Polish innovations described show that the "zero waste" path in circular bioeconomy may bring advantageous results in terms of transformation of waste materials into commercial, added-value products together with recovery of water resources.
生物基解决方案有望确保农业、生物技术、生态学、绿色工业或能源等优先领域的技术循环性。尽管波兰与其他欧盟成员国不同,尚未采取精确的政治策略来促进生物经济,但已采取了几项行动来实现智能、可持续和包容性增长。这一目标可以通过发展选定的生物经济相关领域来实现,例如沼气行业,以及实施新的技术来优化城市污水和有机固体废物的管理。在这里,展示了波兰沼气行业相对较强的地位。广泛应用的污水污泥生物甲烷化实践导致了许多将生物废水处理厂与厌氧消化器相结合的复杂设施的建设。基于生物稳定化污泥的物理化学处理,阐述了一种新型的高效粒状土壤肥料生产方法,符合循环经济的概念和“废物变产品”的理念。还表明,通过与适当选择的共底物进行共消化,可以优化污水污泥的厌氧发酵,以提高生物过程的产量并改善所得消化物肥料的质量。解决了发酵后富营养化污泥液的问题,这些环境危害性废物废水在排放或田间应用之前需要进行适当处理。介绍了用复杂微生物群落优化消化物液生物处理的尝试。所描述的波兰创新表明,在循环生物经济中走“零废物”道路可能会带来有利的结果,即将废物转化为具有商业附加值的产品,并回收水资源。