Abstract
In recent years, downstream bioprocessing industries are venturing into less tedious, simple, and high-efficiency separation by implementing advanced purification and extraction methods. This review discusses the separation of proteins, with the main focus on amylase as an enzyme from agricultural waste using conventional and advanced techniques of extraction and purification via a liquid biphasic system (LBS). In comparison to other methods, such as membrane extraction, precipitation, ultrasonication, and chromatography, the LBS stands out as an efficient, cost-effective, and adaptable developing method for protein recovery. The two-phase separation method can be water-soluble polymers, or polymer and salt, or alcohol and salt, which is a simpler and lower-cost method that can be used at a larger purification scale. The comparison of different approaches in LBS for amylase purification from agricultural waste is also included. Current technology has evolved from a simple LBS into microwave-assisted LBS, liquid biphasic flotation (LBF), thermoseparation (TMP), three-phase partitioning (TPP), ultrasound-assisted LBS, and electrically assisted LBS. pH, time, temperature, and concentration are some of the significant research parameters considered in the review of advanced techniques.
Funder
the Ministry of Higher Education Malaysia under UPM Putra Grant: IPB
Subject
Plant Science,Health Professions (miscellaneous),Health(social science),Microbiology,Food Science
Reference103 articles.
1. Agro-industrial wastes and their utilization using solid state fermentation: a review
2. Agriculture and Agro-Industrial Wastes, by-Products, and Wastewaters: Origin, Characteristics, and Potential in Bio-Based Compounds Production;Petruccioli,2019
3. AGRICULTURAL WASTE CONCEPT, GENERATION, UTILIZATION AND MANAGEMENT
4. Advances in Recycling and Utilization of Agricultural Wastes in China: Based on Environmental Risk, Crucial Pathways, Influencing Factors, Policy Mechanism
5. Extraction and Utilisation of Bioactive Compounds From Agricultural Waste;Azeez,2017
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