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INDONESIA
Indonesian Journal of Physics and Nuclear Applications
ISSN : 2549046X     EISSN : -     DOI : -
Core Subject : Science, Social,
Indonesian Journal of Physics and Nuclear Applications is an international research journal, which publishes top level work from all areas of physics and nuclear applications including health, industry, energy, agriculture, etc. It is inisiated by results on research and development of Indonesian Boron Neutron Capture Cancer Therapy (BNCT) Consortium. Researchers and scientists are encouraged to contribute article based on recent research. It aims to preservation of nuclear knowledge; provide a learned reference in the field; and establish channel of communication among academic and research expert, policy makers and executive in industry, commerce and investment institution.
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Articles 5 Documents
Search results for , issue "Vol 5 No 1 (2020)" : 5 Documents clear
The Dose Evaluation Of In Vitro and In vivo Test In Kartini Research Reactor Facility Using PHITS Code Helga Dea Puspita
Indonesian Journal of Physics and Nuclear Applications Vol 5 No 1 (2020)
Publisher : Fakultas Sains dan Matematika Universitas Kristen Satya Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24246/ijpna.v5i1.23-26

Abstract

Dose Evaluation of In Vitro and In Vivo Test In Kartini Reasearch Reactor BNCT Facility Using PHITS Code. this research is about dose analysis for in vitro and in vivo test by using PHITS program. The source of the neutron comes from a reactor that has been modified by previous researchers. In this research used mouse model. Modeling is done by modeling a mouse into a simple cylindrical geometry with a tumor modeled with the sphere geometry inside the cylinder
Beams Characteristic in Water Phantom Irradiation by Epithermal Neutron Beam from Double Layer Beam Shaping Assembly Bilalodin Bilalodin; Kusminarto Kusminarto; Arief Hermanto; Yohannes Sardjono
Indonesian Journal of Physics and Nuclear Applications Vol 5 No 1 (2020)
Publisher : Fakultas Sains dan Matematika Universitas Kristen Satya Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24246/ijpna.v5i1.18-22

Abstract

A Double Layer Beam Shaping Assembly (DLBSA) is designed to produce epithermal neutrons for BNCT purposes. The MCNPX program is utilized as the software to design the DLBSA and phantom. Distribution of epithermal neutron and gamma flux in the DLBSA and phantom and absorbed dose in phantom are computed using the Particle and Heavy Ion Transport System (PHITS) program. Testing results of epithermal neutron beams irradiation on water phantom shows that epithermal neutrons are thermalized and penetrate the phantom up to 12 cm in depth. Maximum value of absorbed dose is 2 x 10-3 Gy at a depth of 2 cm in phantom.
ROCKWELL HARDNESS TESTING ON PURE NICKEL KOLIMATOR FOR BNCT APPLICATION erasmus prakas ita
Indonesian Journal of Physics and Nuclear Applications Vol 5 No 1 (2020)
Publisher : Fakultas Sains dan Matematika Universitas Kristen Satya Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24246/ijpna.v5i1.9-17

Abstract

In this study, Rockwell is used in material hardness examination. It caused by those characteristics. Those are, fast, away from human error, from this examination it can be known and compared the characteristics of nickel porosity before sentrifugal casting and after sentrifugal casting through hardness testing. To discover the element of nickel 99% porosity in Boron Neutron Capture Therapy (BNCT). the component used in BNCT in cylindrical shape and created in Sentrifugal casting method. The method which is used in this this project is hardness testing.
NDT TESTING USING NEUTRON RADIOGRAPHY METHOD ON PURE NICKEL COLLIMATOR FOR BNCT APPLICATION Ricky Fajar Adiputra
Indonesian Journal of Physics and Nuclear Applications Vol 5 No 1 (2020)
Publisher : Fakultas Sains dan Matematika Universitas Kristen Satya Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24246/ijpna.v5i1.1-8

Abstract

Boron neutron capture therapy (BNCT) is a targeted radiotherapy technique developed to treat patients with selected malignant tumors without any side effect. Colimator is one of important component used in BNCT. In this research collimator made by centrifugal casting processes which can cause any defect. Purpose of the research is to detect any defect in collimator made by 99% pure nickel with Neutron Radiography and processing with MNCP5 for imaging the defect. The expected result of this research is displayed an image of defect caused by centrifugal casting in collimator.
The STATE-OF-THE-ART ON RADIOACTIVE SLUDGE FROM SPENT FUEL REPROCESSING Agung Prastowo
Indonesian Journal of Physics and Nuclear Applications Vol 5 No 1 (2020)
Publisher : Fakultas Sains dan Matematika Universitas Kristen Satya Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24246/ijpna.v5i1.27-30

Abstract

Radioactive sludge has been produced from the co-precipitation process of spent nuclear fuel reprocessing, which is derivative waste that requires special attention in waste management methods. This study examines the development of research applied by countries with the civilian nuclear program. Proper methods regarding radioactive sludge conditioning are used as a reference for waste management determining radioactive sludge which is one of the main focuses in waste recovery and conditioning (RCD) projects at Orano la Hague, France. Radioactive sludge has been conditioned using bitumen, where the French nuclear safety authority does not permit it because of the radiolysis issue in the waste storage package. Therefore, new methods for bitumen replacement and radioactive sludge storage packages are needed to replace it by the provisions of the French Nuclear Safety Agency. A systematic literature review method is used to provide an analysis of the methods for radioactive sludge waste conditioning that have been synthesized from several related studies to provide an overview of the current issues. The HPing and plasma filtering methods were developed at Sellafield and Hanford with the advantage of reducing the significant volume of waste and chemical composition.

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