Bermúdez-Gómez Patricia, Fernández-López Juana, Pérez-Clavijo Margarita, Viuda-Martos Manuel
Mushroom Technological Research Center of La Rioja (CTICH), Carretera Calahorra, km 4, 26560 La Rioja, Spain.
IPOA Research Group, Institute for Agri-Food and Agri-Environmental Research and Innovation (CIAGRO-UMH), Miguel Hernández University, 03312 Alicante, Spain.
Foods. 2024 Dec 14;13(24):4046. doi: 10.3390/foods13244046.
Stems are a major by-product of mushroom production. This study optimizes the transformation of stems (ABS) and stems (POS) into flour. ABS are attached to the peat, so, the process was divided into two steps. First, four cleaning methods were tested for ABS: pre-drying, brushing, abrasive peeling, and immersion in chlorinated water and brushing. Abrasive peeling was the most effective, showing the lowest color difference (9.18), total aerobic count (3.48 log cfu/g), and the highest profitability (1 kg/h). In the second step, ABS and POS were dried using a freeze-dryer, a dehydrator, and an oven. Dehydration resulted in stems with a lower browning index (24.57 in ABS and 29.95 in POS) than the oven, and a smaller energy consumption than the freeze-dryer. Finally, three dehydration temperatures (40, 50, and 60 °C) were compared. Dehydration at 50 °C resulted in faster moisture loss (24 h) and similar phenolic compound concentrations (3.35 and 7.69 mg GAE/100g fresh ABS and POS, respectively) than at 40 °C (32 h in ABS and 28 h in POS). In conclusion, the transformation of ABS and POS into flours requires processes that influence their chemical composition, physicochemical characteristics, and the profitability of their production. In this project, the optimal process involved cleaning ABS through abrasive peeling and dehydrating both ABS and POS at 50 °C for 24 h.
菌柄是蘑菇生产的主要副产品。本研究优化了将废弃菌柄(ABS)和优质菌柄(POS)转化为面粉的过程。ABS附着在泥炭上,因此,该过程分为两个步骤。首先,对ABS测试了四种清洁方法:预干燥、刷洗、磨砂去皮以及浸泡在加氯水中并刷洗。磨砂去皮是最有效的方法,其色差最低(9.18),总需氧菌数最低(3.48 log cfu/g),且生产率最高(1 kg/h)。在第二步中,使用冷冻干燥机、脱水机和烤箱对ABS和POS进行干燥。脱水处理得到的菌柄褐变指数低于烤箱处理的(ABS为24.57,POS为29.95),且能耗低于冷冻干燥机。最后,比较了三个脱水温度(40、50和60°C)。50°C脱水比40°C脱水导致水分损失更快(24小时),酚类化合物浓度相似(新鲜ABS和POS分别为3.35和7.69 mg GAE/100g)(ABS为32小时,POS为28小时)。总之,将ABS和POS转化为面粉需要影响其化学成分、物理化学特性及其生产利润率的工艺。在本项目中,最佳工艺包括通过磨砂去皮清洁ABS,并在50°C下将ABS和POS脱水24小时。