以巴西坚果仁为原料,通过粉碎、脱脂、浸提、阴离子交换层析纯化过敏原蛋白Ber e 1;利用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串联质谱联用、Western blot等方法对其进行鉴定,并通过圆二光谱仪和紫外分光光度计表征其二、三级...以巴西坚果仁为原料,通过粉碎、脱脂、浸提、阴离子交换层析纯化过敏原蛋白Ber e 1;利用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串联质谱联用、Western blot等方法对其进行鉴定,并通过圆二光谱仪和紫外分光光度计表征其二、三级结构。结果表明:纯化获得的巴西坚果过敏原Ber e 1,单轮制备量可达20 mg以上,且纯度大于95%,其蛋白质高级结构未被破坏,能够被巴西坚果过敏患者的血清准确识别。该纯化技术路线简单、对设备要求低且高效,为巴西坚果过敏原Ber e 1的相关研究奠定了一定的基础。展开更多
This paper presents numerical studies on the effects of atmospheric pressure fluctuations on hill-side coal fires and their surface anomalies. Based on the single-particle reaction–diffusion model, a formula to estim...This paper presents numerical studies on the effects of atmospheric pressure fluctuations on hill-side coal fires and their surface anomalies. Based on the single-particle reaction–diffusion model, a formula to estimate oxygen consumption rate at high temperature controlled by oxygen transport is proposed.Daily fluctuant atmospheric pressure was imposed on boundaries, including the abandoned gallery and cracks. Simulated results show that the effects of atmospheric pressure fluctuations on coal fires and surface anomalies depend on two factors: the fluctuant amplitude and the pressure difference between inlet(s) and outlet(s) of the air ventilation system. If the pressure difference is close to the fluctuant amplitude, atmospheric pressure fluctuations greatly enhance gas flow motion and temperatures of the combustion zone and outtake(s). If the pressure difference is much larger than the fluctuant amplitude, atmospheric pressure fluctuations exert no impact on underground coal fires and surface anomalies.展开更多
文摘以巴西坚果仁为原料,通过粉碎、脱脂、浸提、阴离子交换层析纯化过敏原蛋白Ber e 1;利用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、液相色谱-串联质谱联用、Western blot等方法对其进行鉴定,并通过圆二光谱仪和紫外分光光度计表征其二、三级结构。结果表明:纯化获得的巴西坚果过敏原Ber e 1,单轮制备量可达20 mg以上,且纯度大于95%,其蛋白质高级结构未被破坏,能够被巴西坚果过敏患者的血清准确识别。该纯化技术路线简单、对设备要求低且高效,为巴西坚果过敏原Ber e 1的相关研究奠定了一定的基础。
文摘This paper presents numerical studies on the effects of atmospheric pressure fluctuations on hill-side coal fires and their surface anomalies. Based on the single-particle reaction–diffusion model, a formula to estimate oxygen consumption rate at high temperature controlled by oxygen transport is proposed.Daily fluctuant atmospheric pressure was imposed on boundaries, including the abandoned gallery and cracks. Simulated results show that the effects of atmospheric pressure fluctuations on coal fires and surface anomalies depend on two factors: the fluctuant amplitude and the pressure difference between inlet(s) and outlet(s) of the air ventilation system. If the pressure difference is close to the fluctuant amplitude, atmospheric pressure fluctuations greatly enhance gas flow motion and temperatures of the combustion zone and outtake(s). If the pressure difference is much larger than the fluctuant amplitude, atmospheric pressure fluctuations exert no impact on underground coal fires and surface anomalies.