Vauris Amélie, Valcauda Sophie, Husson Florence, Coninck Joëlle De
Univ. Bourgogne Franche-Comté, L'institut Agro Dijon, PAM UMR A 02.102, 1 esplanade Erasme, Dijon F-21000, France.
Eurogerm, Parc d'activités bois Guillaume, 2 rue champ doré, Saint-Apollinaire F-21850, France.
Biotechnol Rep (Amst). 2022 Sep 19;36:e00764. doi: 10.1016/j.btre.2022.e00764. eCollection 2022 Dec.
Heat production during fermentation is undesirable. It can affect the growth of biomass, sporulation, products formation and the scaling-up. Physico-chemical properties of substrates influence heat and mass transfer in Solid State Fermentation. Heat is chemically produced into substrates without micro-organism to allow better reproducibility. A 2 fractional factorial design is chosen to study the influence of four physicochemical parameters on heat transfer: Granulometry, Bulk Density, Carr Index (compressibility index) and Water Absorption Capacity. Results show that the two main physicochemical parameters which influence heat transfer are Granulometry and Carr Index. High Granulometry and low Carr Index have influence on maximum temperature reached during the test, warm-up speed and cooling speed. These two parameters allow efficient air flow through the substrate bed with large interparticle spaces enhancing exchange surface between air and particles. A substrate with these characteristics facilitates heat transfers in forced-aerated reactors.
发酵过程中产热是不理想的。它会影响生物质的生长、孢子形成、产物生成以及放大过程。底物的物理化学性质会影响固态发酵中的传热和传质。在没有微生物的情况下,通过化学反应在底物中产生热量,以实现更好的可重复性。采用二水平部分因子设计来研究四个物理化学参数对传热的影响:粒度、堆积密度、卡尔指数(压缩性指数)和吸水能力。结果表明,影响传热的两个主要物理化学参数是粒度和卡尔指数。高粒度和低卡尔指数对测试过程中达到的最高温度、升温速度和冷却速度有影响。这两个参数能使空气有效地流过具有较大颗粒间空隙的底物床,从而增加空气与颗粒之间的交换表面积。具有这些特性的底物有利于在强制通风反应器中进行热传递。