Trends in shrimp processing waste utilization: An industrial prospective

被引:118
作者
Nirmal, Nilesh Prakash [1 ]
Santivarangkna, Chalat [1 ]
Rajput, Mithun Singh [2 ]
Benjakul, Soottawat [3 ]
机构
[1] Mahidol Univ, Inst Nutr, 999 Phutthamonthon 4 Rd, Salaya 73170, Nakhon Pathom, Thailand
[2] Devi Ahilya Vishwavidyalaya, Sch Pharm, Takshshila Campus, Indore 452001, Madhya Pradesh, India
[3] Prince Songkla Univ, Fac Agroind, Dept Food Technol, Hat Yai 90110, Songkhla, Thailand
关键词
Shrimp processing waste; Active compounds; Bioactivity; Functional properties; Industrial applications; PACIFIC WHITE SHRIMP; CHITOSAN-BASED FILMS; BY-PRODUCTS; LITOPENAEUS-VANNAMEI; PHYSICOCHEMICAL PROPERTIES; ANTIOXIDANT PROPERTIES; INHIBITORY-ACTIVITY; OXIDATIVE STRESS; ALPHA-TOCOPHEROL; LIPID EXTRACT;
D O I
10.1016/j.tifs.2020.07.001
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Background: Shrimp farming and processing plants are the largest seafood industry around the world due to their high demand and market value. The shrimp processing industry produces 50-60% waste of the catch volume. These wastes contain a large quantity of bioactive compounds including chitin, protein, lipid, carotenoid and minerals. Bioactive compounds from shrimp processing waste exhibit various bioactivities, and can be used as food and feed as well as ingredient in functional food preparation. The recent trend of shrimp waste utilization focuses on the bioremediation and energy conversion sectors. Scope and approach: In this review, shrimp processing and the main bioactive compounds from shrimp waste were outlined. The recent applications of bioactive compounds from shrimp waste briefly describe in terms of different bioactivities, food and feed applications, and other industrial approach. Hurdles and future prospectus of shrimp processing waste utilization have been addressed. Key findings and conclusions: Shrimp processing industries generate tremendous amount of waste, which can be extracted to obtain active compounds including chitin, carotenoids and protein hydrolysates, etc. These active compounds act as antioxidant, antimicrobial, anti-hypertensive, anti-inflammatory and anti-proliferative agents. Moreover, due to their functional and nutritional properties, these compounds could be used as natural safe additives or functional food/feed ingredients. Active compounds in shrimp waste open the doors of energy, solid wastes, and wastewater bioremediation. Hence, the future trends of shrimp waste utilization are the movement towards eco-friendly energy conversion, bioremediation and bioplastic area.
引用
收藏
页码:20 / 35
页数:16
相关论文
共 110 条
[51]   High Pressure Extraction of Astaxanthin from Shrimp Waste (Penaeus Vannamei Boone): Effect on Yield and Antioxidant Activity [J].
Li, Jianping ;
Sun, Wei ;
Ramaswamy, Hosahalli S. ;
Yu, Yong ;
Zhu, Songming ;
Wang, Jing ;
Li, Huanhuan .
JOURNAL OF FOOD PROCESS ENGINEERING, 2017, 40 (02)
[52]  
Li-Chan Eunice C. Y., 2016, Fisheries and Aquatic Sciences, V19, P11, DOI 10.1186/s41240-016-0008-x
[53]   Effects of shrimp waste meal on growth performance and chitinase activity in juvenile cobia (Rachycentron canadum) [J].
Lu, Chih-Hui ;
Ku, Chen-Chun .
AQUACULTURE RESEARCH, 2013, 44 (08) :1190-1195
[54]  
Mahata M. E., 2012, Pakistan Journal of Nutrition, V11, P375
[55]   Comprehensive utilization of shrimp waste based on biotechnological methods: A review [J].
Mao, Xiangzhao ;
Guo, Na ;
Sun, Jianan ;
Xue, Changhu .
JOURNAL OF CLEANER PRODUCTION, 2017, 143 :814-823
[56]   Antioxidant Properties of Bio-active Substances from Shrimp Head Fermented by Bacillus licheniformis OPL-007 [J].
Mao, Xiangzhao ;
Liu, Pei ;
He, Shuai ;
Xie, Jieling ;
Kan, Feifei ;
Yu, Chunyu ;
Li, Zhaojie ;
Xue, Changhu ;
Lin, Hong .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2013, 171 (05) :1240-1252
[57]  
Marketstudyreport, 2019, GLOBAL SHRIMP MARKET
[58]   Tocopherols in the Prevention and Treatment of Atherosclerosis and Related Cardiovascular Disease [J].
Mathur, Pankaj ;
Ding, Zufeng ;
Saldeen, Tom ;
Mehta, Jawahar L. .
CLINICAL CARDIOLOGY, 2015, 38 (09) :570-576
[59]   Fat soluble vitamins and fatty acid composition of wild Black sea mussel, rapana and shrimp [J].
Merdzhanova, Albena ;
Dobreva, Diana A. ;
Stancheva, Mona ;
Makedonski, Lubomir .
OVIDIUS UNIVERSITY ANNALS OF CHEMISTRY, 2014, 25 (01) :15-23
[60]   Naturally nitrogen doped porous carbon derived from waste shrimp shells for high-performance lithium ion batteries and supercapacitors [J].
Mondal, Anjon Kumar ;
Kretschmer, Katja ;
Zhao, Yufei ;
Liu, Hao ;
Fan, Hongbo ;
Wang, Guoxiu .
MICROPOROUS AND MESOPOROUS MATERIALS, 2017, 246 :72-80