Consumer Acceptability and Temporal Sensory Evaluation of Beans Across Cooking Methods
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Abstract
Dry beans have gained so much popularity in many local, regional and global cuisines
because of their nutritional value. A diet that includes beans is an excellent source of minerals and
essential nutrients and provides numerous health benefits. Replacing meat with beans is considered
a nutritious alternative because of their high protein content and overall nutritional value. Hence,
beans are regarded as a suitable alternative in vegan and plant-based diets. In addition, because
beans are both nutritious and affordable they have long been recognized as an economical
alternative to animal protein. However, one of the key sensory characteristics associated with
beans and bean-based food is their beany aroma. This characteristic is considered undesirable by
many consumers and limits the full utilization and potential of the crop despite its rich nutritional
profile. Beany aroma is influenced by compounds such as hexanal, 2-pentyl furan, 1-octen-3-one
that contribute to this undesirable flavor. Cooking has been shown to reduce the intensity of beany
aroma, thereby improving the sensory quality of bean products. This work investigates how
different cooking methods affect the sensory profiles of various beans. The specific objectives of
this study were: 1) to evaluate overall consumer acceptability and sensory profiles of selected bean
varieties subjected to different cooking methods; 2) to utilize the Temporal Check All That Apply
(TCATA) method to evaluate the evolution/dynamic perception of aroma and flavor attributes of
dry beans prepared using different cooking methods; and 3) to integrate CATA (a method where
panelists check all attributes they perceive from a predefined list after the product has been
evaluated) and TCATA methods to evaluate the degree of alignment between consumer
perceptions and the temporal sensory perceptions provided by a semi-trained panel.
Three different bean types (i.e. black bean, pinto bean and Bambara bean) were subjected to four
different cooking methods: slow cooking, baking, pressure cooking and boiling. A consumer study
(n=76) was conducted to determine consumer acceptability and sensory profiles of each bean type
subjected to all the cooking methods. Also, TCATA (n=10) was conducted to determine the
evolution of attributes over time during evaluation.
The results from the consumer study showed significant sensory differences among beans
subjected to different cooking methods. Samples with low beany aroma intensity ratings were
subsequently rated higher in overall liking, indicating consumers prefer richer, cooked, less beany
flavors. This implies and emphasizes that cooking method plays an important role in shaping flavor
profiles. Results from the TCATA evaluation, which captured the evolution of attribute perception
over time, indicated that beany and potato/starchy attributes were dominant throughout the
evaluation period. Although these two attributes were dominant, cooking method influenced the
complexity and expression of secondary attributes, resulting in distinct sensory profiles among the
samples. Integration of the CATA and TCATA data showed some degree of alignment, suggesting
that TCATA may help identify sensory characteristics associated with consumer perceptions.
Overall, this work offers meaningful insights into the effects of processing on the sensory profile
of the three bean types; however, future studies should examine additional bean varieties and
processing conditions to further expand these findings.