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作 者:Xiaofei Wu Wenyu Zhao Xuan Wang Zhaohai Bai Lin Ma
机构地区:[1]Key Laboratory of Agricultural Water Resources,Hebei Key Laboratory of Soil Ecology,Center for Agricultural Resources Research,Institute of Genetic and Developmental Biology,Chinese Academy of Science,286 Huaizhong Road,Shijiazhuang 050021,Hebei,China [2]Xiong’an Institute of Innovation,Chinese Academy of Sciences,Xiongan 071700,Hebei,China
出 处:《Circular Agricultural Systems》2023年第1期13-21,共9页循环农业系统(英文)
基 金:supported by Key R&D Program of Hebei(21327315D,21373804D);the Special Research Assistant Funding Project of Chinese Academy of Sciences(E129ST15);the Strategic Priority Research Program of the Chinese Academy of Sciences(XDA28030302-4);Key Laboratory of Agricultural Water Resources-CAS(ZD201802);Strategic Priority Research Program of the Chinese Academy of Sciences(XDA28030302);Youth Innovation Promotion Association CAS(2021095);Hebei Dairy Cattle Innovation Team of Modern Agro-industry Technology Research System(HBCT2018120206).
摘 要:An economic and feasible way to use black soldier fly larvae consists of treating livestock manure to convert it into high value-added protein feed.This study was aimed to investigate the effects of different pretreatments on the physiochemical properties of pig manure and its potential in promoting the growth and nutrient accumulation of black soldier fly larvae(BSFL).Fresh pig manure was pretreated by aerobic fermentation(AE),anaerobic fermentation(AN)and high temperature anaerobic fermentation(HAN)for 2 or 5 d,and then inoculated with BSFL.Results indicate that EC value,DOC,DON,TN,NH_(4)^(+)-N and protein content were the highest in HAN pretreated manure.The individual body weight and protein content of BSFL fed with HAN pretreated manure increased by 20%and 30%,respectively,compared with those fed with AE pretreated manure.In terms of performance,BSFL fed with HAN pretreated manure showed the highest waste reduction,bioconversion rate,waste conversion efficiency and protein conversion efficiency.The conclusion of the present study may be helpful for further research on the conversion of organic waste by BSFL.
分 类 号:X713[环境科学与工程—环境工程]
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