论文研究了芽孢杆菌属微生物(Bacillus sp.)B1菌对偶氮染料酸性红B(Acid Red B,ARB)的脱色能力。在最佳脱色条件下,通过对比底物ARB诱导,考察不同磁场(HMF)条件(1.00T、5.00T、10.0T)诱导下菌株对偶氮染料降解能力的变化情况,结果显示磁场作用效果与ARB诱导的效果相似:诱导均能缩短B1菌的适应期的时间,增强其脱色能力,且磁场诱导更具有无生物毒性的优越性。为探求磁场生物效应,利用数理统计方法分析各因素的显著性影响,确定磁场诱导对ARB脱色能力的主要影响因素为磁场强度;磁场强度为10.0T,作用时间为20min,菌液量为50mL,磁场对菌株的生物效应最为显著。 相似文献
Hydraulic simulation is one of the critical methods to research the filling mechanism of molten metal in the casting process. However, it only performs on test pieces with relatively simple structures due to the limitation of the preparation method. In this study, the method of photocuring additive manufacturing was used to prepare the complex casting mould from transparent photosensitive resin. The pouring test was carried out under different centrifugal conditions, and the filling process of the gating system, support bars and other positions in the vertical direction was recorded and analyzed. The experimental results show that the internal liquid level and the filling process of the test piece prepared by this method can be observed clearly. The angle between the liquid surface and the horizontal plane in the test piece gradually increases as the centrifugal rotational speed increases, which means the filling process is carried out from outside to inside at high rotational speed. The velocity of the fluid entering the runner increases with the increase of rotational speed, but the filling speeds is less affected by the centrifugal speed at other positions. The liquid flow is continuous and stable during the forward filling process, without splashing or interruption of liquid droplets.
In the past decade, multi-principal element high-entropy alloys (referred to as high-entropy alloys, HEAs) are an emerging alloy material, which has been developed rapidly and has become a research hotspot in the fi eld of metal materials. It breaks the alloy design concept of one or two principal elements in traditional alloys. It is composed of fi ve or more principal elements, and the atomic percentage (at.%) of each element is greater than 5%but not more than 35%. The high-entropy eff ect ca... 相似文献