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澳洲坚果应用ASLT法预测食品保质期 被引量:3
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作者 陈震东 《食品安全导刊》 2022年第18期114-116,共3页
澳洲坚果素有“干果皇后”之称,其含有丰富的油脂及不饱和脂肪酸,储存时易氧化变质,温度、湿度、氧含量等因素都对保质期有影响,应用ASLT法可对澳洲坚果的保质期进行预测。本文对澳洲坚果应用ALST法预测保质期的原理进行简要阐述,并以Q_... 澳洲坚果素有“干果皇后”之称,其含有丰富的油脂及不饱和脂肪酸,储存时易氧化变质,温度、湿度、氧含量等因素都对保质期有影响,应用ASLT法可对澳洲坚果的保质期进行预测。本文对澳洲坚果应用ALST法预测保质期的原理进行简要阐述,并以Q_(10)法(阿伦尼乌斯模型)测试奶香味澳洲坚果的保质期。 展开更多
关键词 澳洲坚果 保质期预测 ALST q_(10)
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Seasonal and diurnal variation in ecosystem respiration and environmental controls from an alpine wetland in arid northwest China
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作者 Hu Yao Haijun Peng +5 位作者 Bing Hong Hanwei Ding Yetang Hong Yongxuan Zhu Jie Wang Cheng Cai 《Journal of Plant Ecology》 SCIE CSCD 2022年第5期933-946,共14页
Wetlands store large amounts of carbon stocks and are essential in both global carbon cycling and regional ecosystem services.Understanding the dynamics of wetland carbon exchange is crucial for assessing carbon budge... Wetlands store large amounts of carbon stocks and are essential in both global carbon cycling and regional ecosystem services.Understanding the dynamics of wetland carbon exchange is crucial for assessing carbon budgets and predicting their future evolution.Although many studies have been conducted on the effects of climate change on the ecosystem carbon cycle,little is known regarding carbon emissions from the alpine wetlands in arid northwest China.In this study,we used an automatic chamber system(LI-8100A)to measure ecosystem respiration(ER)in the Bayinbuluk alpine wetland in northwest China.The ER showed a significant bimodal diurnal variation,with peak values appearing at 16:30 and 23:30(Beijing time,UTC+8).A clear seasonal pattern in ER was observed,with the highest value(19.38μmol m-2 s-l)occurring in August and the lowest value(0.11μmol m-2 s-1)occurring in late December.The annual ER in 2018 was 678 g C m-2 and respiration during the non-growing season accounted for 13%of the annual sum.Nonlinear regression revealed that soil temperature at 5 cm depth and soil water content(SwC)were the main factors controlling the seasonal variation in ER.The diurnal variation in ER was mainly controlled by air temperature and solar radiation.Higher temperature sensitivity(Qio)occurred under conditions of lower soil temperatures and medium SWC(25%≤SWC≤40%).The present study deepens our understanding of CO,emissions in alpine wetland ecosystems and helps evaluate the carbon budget in alpine wetlands in arid regions. 展开更多
关键词 alpine wetland ecosystem respiration environmental factors automatic chamber q_(10)
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