scholarly journals Determination of the interface between insoluble environments using gamma scattering technique

Author(s):  
Nguyen Hoang Vo ◽  
Thanh Thien Tran ◽  
Quy Duc Bui ◽  
Minh Quoc Nguyen ◽  
Duy Hoang To ◽  
...  

In this study, we deploy and compare spectrum processing methods based on gamma scattering technique to determine the interface between insoluble fluids stored in the container. The gamma scattering measurement system included: a 5 mCi radioactive source of 137Cs, a cylindrical glass vase with a diameter of 6.5 cm containing the fluids, and a NaI(Tl) detector with a 7.62 × 7.62 cm scintillation crystal. The detector was arranged to obtain the scattered photon beam at the angle of 120o. Two of the three processing methods showed good results with the biggest difference of 5 mm. In addition, the results also show the feasibility of using SCA in gamma scattering measurement system to determine the interface between insoluble environments.

2017 ◽  
Vol 1 (T1) ◽  
pp. 106-113
Author(s):  
Kien Thach Trung Vo ◽  
Tam Duc Hoang ◽  
Nguyen Hoang Vo ◽  
Chuong Dinh Huynh ◽  
Thanh Thien Tran ◽  
...  

In this work, a gamma scattering technique using 137Cs (5mCi) source with the NaI(Tl) detector is arranged to record the scattered photon beam at scattering angle of 1200 for investigating the liquid density. We used standard liquid such as water, H2SO4, HCl, glycerol, HNO3, ethanol and A92 petrol to fit the single scattering peak, multiple scattering, and total counts versus standard liquid densities. The interpolating of the single scattering peak, multiple scattering, and total counts of the testing sample at scattering angle of 1200 is 0.702 g.cm-3, 0.783 g.cm-3, and 0.747 g.cm-3, respectively. The discrepancy of the experiment and true testing density is about 8 %, 3 %, and 2 %, respectively. The result shows that multiple scattering or total counts can be used to propose the density measurement.


2012 ◽  
Vol 132 (7) ◽  
pp. 574-579
Author(s):  
Shingo Ito ◽  
Hisashi Sakamoto ◽  
Raita Kotani ◽  
Michiaki Inomoto ◽  
Yasushi Ono ◽  
...  

2016 ◽  
Vol 1 (20) ◽  
pp. 5-15
Author(s):  
Wojciech Ludwig ◽  
Tadeusz Mączka

The purpose of this paper was presentation of the value of cores electrification during their flow in the modified Wurster apparatus, applied for dry encapsulation of pharmaceutical materials. Previous works of the authors dealt with vulnerability of the particles of different diameter, produced by SYNTAPHARM (Cellets 1000, 700 and 100) on electrification in laboratory conditions. The presented work gives the results of examination on particles electrification in real conditions of their stable circulation in a column. The measurement system, that was applied, allowed determination of electrification potential and electrification current. Those quantities, which are the measures of charge accumulation on cores were determined for several particles (Cellets 1000, 700 and 500) with the different humidity, for different mass of the bed and spouting gas velocities.


Symmetry ◽  
2021 ◽  
Vol 13 (6) ◽  
pp. 983
Author(s):  
José J. Gil ◽  
Ignacio San José

Polarimetry is today a widely used and powerful tool for nondestructive analysis of the structural and morphological properties of a great variety of material samples, including aerosols and hydrosols, among many others. For each given scattering measurement configuration, absolute Mueller polarimeters provide the most complete polarimetric information, intricately encoded in the 16 parameters of the corresponding Mueller matrix. Thus, the determination of the mathematical structure of the polarimetric information contained in a Mueller matrix constitutes a topic of great interest. In this work, besides a structural decomposition that makes explicit the role played by the diattenuation-polarizance of a general depolarizing medium, a universal synthesizer of Muller matrices is developed. This is based on the concept of an enpolarizing ellipsoid, whose symmetry features are directly linked to the way in which the polarimetric information is organized.


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