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高值农产品分子生物学鉴伪技术研究进展
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作者 张倩瑶 梁世君 郭亚辉 《现代食品》 2020年第17期103-104,107,共3页
随着我国高值农产品消费数量和品种的逐年增加,高值农产品的造假掺假问题日益突出。经济利益驱动型掺假对市场、产业和经济都造成了重大损失。目前国内外现行标准中农产品真伪鉴别所采用的技术主要为分子生物学检测方法,本文就高值农产... 随着我国高值农产品消费数量和品种的逐年增加,高值农产品的造假掺假问题日益突出。经济利益驱动型掺假对市场、产业和经济都造成了重大损失。目前国内外现行标准中农产品真伪鉴别所采用的技术主要为分子生物学检测方法,本文就高值农产品鉴伪技术中分子生物学方法的研究进展进行了论述。 展开更多
关键词 高值农产品 鉴伪 分子生物学 PCR
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Combustion Irreversibilities: Numerical Simulation and Analysis
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作者 Valter Silva Abel Rouboa 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第4期377-383,共7页
An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic pro... An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic process are path dependent, the combustion process was considering as resulting from different hypothetical paths each one characterized by four main sub-processes: reactant mixing, fuel oxidation, internal thermal energy exchange (heat transfer), and product mixing. The exergetic efficiency was computed using a zero dimensional model developed by using a Visual Basic home code. It was concluded that the exergy losses were mainly due to the internal thermal energy exchange sub-process. The exergy losses from this sub-process are higher when the reactants are preheated up to the ignition temperature without previous fuel oxidation. On the other hand, the global exergy destruction can be minored increasing the pressure, the reactants temperature and the oxygen content on the oxidant stream. This methodology allows the identification of the phenomena and processes that have larger exergy losses, the understanding of why these losses occur and how the exergy changes with the parameters associated to each system which is crucial to implement the syngas combustion from biomass products as a competitive technology. 展开更多
关键词 EXERGY Combustion paths Combustion sub-processes Exergetic efficiency Visual Basic SYNGAS
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