Ethane chemical looping oxidative dehydrogenation(CL-ODH)to ethylene is a new technology for ethylene preparation.Fe_(2)O_(3)/MgO oxygen carrier was prepared using the co-precipitation method.The influence of added Ni...Ethane chemical looping oxidative dehydrogenation(CL-ODH)to ethylene is a new technology for ethylene preparation.Fe_(2)O_(3)/MgO oxygen carrier was prepared using the co-precipitation method.The influence of added NiO and its different loadings on Fe_(2)O_(3)/MgO were investigated.Then,a series of oxygen carriers were applied in the CL-ODH of the ethane cycle system.Brunauer-Emmett-Teller(BET),X-ray diffractometry(XRD),X-ray photoelection spectroscopy(XPS),and H2-temperature programmed reduction(TPR)were used to characterize the physicochemical properties of these oxygen carriers.It was confirmed that an interaction between NiO and Fe_(2)O_(3) occurred based on the XPS and H2-TPR results.Based on the CL-ODH activity performance tests conducted in a fixed-bed reactor,it was revealed that ethylene selectivity was significantly improved after NiO addition.Fe_(2)O_(3)-10%NiO/MgO showed the best activity performance with 93%ethane conversion and 50%ethylene selectivity at a reaction temperature of 650℃,atmospheric pressure,and space velocity of 7500 mL/(g·h).展开更多
为了研究富含GABA萌发红小豆对2型糖尿病(Diabetes Mellitus Type 2,T2DM)小鼠血糖水平及肠道菌群的影响,采用C57BL/6J小鼠为研究对象,通过高脂膳食+链脲菌素(Streptozocin,STZ)注射构建T2DM模型,选择不同剂量的富含GABA萌发红小豆对T2D...为了研究富含GABA萌发红小豆对2型糖尿病(Diabetes Mellitus Type 2,T2DM)小鼠血糖水平及肠道菌群的影响,采用C57BL/6J小鼠为研究对象,通过高脂膳食+链脲菌素(Streptozocin,STZ)注射构建T2DM模型,选择不同剂量的富含GABA萌发红小豆对T2DM小鼠连续膳食干预6周,并利用16S rRNA测序技术对T2DM小鼠盲肠内容物的菌群结构和分布进行鉴定。结果显示:不同剂量富含GABA红小豆膳食干预可使T2DM小鼠FBG值明显下降,其中高剂量富含GABA红小豆(TF3)组FBG值为8.36±0.78 mmol/L,相比模型组(M)下降54.09%,干预效果最好。此外,TF3膳食可引起T2DM小鼠肠道菌群丰度发生显著(P<0.05)改变,门水平上Firmicutes丰度为35.96%,比M模型组下降53.17%,并可显著上调Bacteroidetes、Verrucomicrobia的菌群丰度(P<0.05)。表明TF3膳食改善糖脂代谢与Bacteroidetes、Verrucomicrobia优势菌丰度呈正相关,暗示高剂量富含GABA红小豆膳食可通过增加有益菌来缓解T2DM小鼠高血糖症状,为进一步解释T2DM与肠道菌群的关系提供参考。展开更多
文摘Ethane chemical looping oxidative dehydrogenation(CL-ODH)to ethylene is a new technology for ethylene preparation.Fe_(2)O_(3)/MgO oxygen carrier was prepared using the co-precipitation method.The influence of added NiO and its different loadings on Fe_(2)O_(3)/MgO were investigated.Then,a series of oxygen carriers were applied in the CL-ODH of the ethane cycle system.Brunauer-Emmett-Teller(BET),X-ray diffractometry(XRD),X-ray photoelection spectroscopy(XPS),and H2-temperature programmed reduction(TPR)were used to characterize the physicochemical properties of these oxygen carriers.It was confirmed that an interaction between NiO and Fe_(2)O_(3) occurred based on the XPS and H2-TPR results.Based on the CL-ODH activity performance tests conducted in a fixed-bed reactor,it was revealed that ethylene selectivity was significantly improved after NiO addition.Fe_(2)O_(3)-10%NiO/MgO showed the best activity performance with 93%ethane conversion and 50%ethylene selectivity at a reaction temperature of 650℃,atmospheric pressure,and space velocity of 7500 mL/(g·h).