利用各种基质生产菌丝体基生物材料

Sanmugavel Saravana, Irma Ražanskė, Vykintas Baublys, Vaida Tubelytė
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引用次数: 0

摘要

本实验旨在制备一种以菌丝为主要成分和结合部分的生物材料。本研究以平菇菌丝体为主要研究对象。用于菌丝体生长的基质有:荞麦壳、洋葱壳、大蒜壳、椰子壳、咖啡渣、桦木锯末、小麦粒、磨碎的小麦、大麻壳、岩棉和聚苯乙烯。将这些不同的基质和材料与菌丝培养液混合,培养至少三个月,每周监测生长情况。将生长的生物材料块干燥并测试其吸水性、含水率和生物降解性等性能。所进行的研究表明,菌丝体可以成功地在不同的基质上定植和生长,形成具有不同性质的生物材料。底物的选择影响所得生物材料的物理特性。菌丝体可以作为一种可持续的替代品,用于生产各种生物材料。本研究的结果增加了菌丝体生物材料领域的知识,并为进一步研究和开发这一有前途的技术开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of mycelium-based biomaterial using various substrates
This experiment was carried out to create a biomaterial with mycelium as its main component and binding part. The main object of this research was mycelium of Pleurotus ostreatus. Various substrates were used for mycelium growing: buckwheat husks, onion husks, garlic husks, coconut husk substrate, coffee grounds, birch sawdust, wheat grains, ground wheat, hemp husks, rock wool, and polystyrene. These different substrates and materials were mixed with the mycelium culture and grown for at least three months, with growth monitored weekly. The blocks of grown biomaterial were dried and tested for properties such as water absorption, moisture content, and biodegradation. The conducted studies showed that mycelium can successfully colonise and grow on different substrates, forming biomaterials with different properties. The choice of substrate influenced the physical characteristics of the obtained biomaterials. Mycelium can be used as a sustainable alternative for the production of various biomaterials. The results of this study add to the knowledge in the field of mycelium-based biomaterials and open the way for further research and development of this promising technology.
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