• 제목/요약/키워드: Pb Substitution

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A Novel RGB Image Steganography Using Simulated Annealing and LCG via LSB

  • Bawaneh, Mohammed J.;Al-Shalabi, Emad Fawzi;Al-Hazaimeh, Obaida M.
    • International Journal of Computer Science & Network Security
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    • 제21권1호
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    • pp.143-151
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    • 2021
  • The enormous prevalence of transferring official confidential digital documents via the Internet shows the urgent need to deliver confidential messages to the recipient without letting any unauthorized person to know contents of the secret messages or detect there existence . Several Steganography techniques such as the least significant Bit (LSB), Secure Cover Selection (SCS), Discrete Cosine Transform (DCT) and Palette Based (PB) were applied to prevent any intruder from analyzing and getting the secret transferred message. The utilized steganography methods should defiance the challenges of Steganalysis techniques in term of analysis and detection. This paper presents a novel and robust framework for color image steganography that combines Linear Congruential Generator (LCG), simulated annealing (SA), Cesar cryptography and LSB substitution method in one system in order to reduce the objection of Steganalysis and deliver data securely to their destination. SA with the support of LCG finds out the optimal minimum sniffing path inside a cover color image (RGB) then the confidential message will be encrypt and embedded within the RGB image path as a host medium by using Cesar and LSB procedures. Embedding and extraction processes of secret message require a common knowledge between sender and receiver; that knowledge are represented by SA initialization parameters, LCG seed, Cesar key agreement and secret message length. Steganalysis intruder will not understand or detect the secret message inside the host image without the correct knowledge about the manipulation process. The constructed system satisfies the main requirements of image steganography in term of robustness against confidential message extraction, high quality visual appearance, little mean square error (MSE) and high peak signal noise ratio (PSNR).

A close look at the influence of praseodymium (III) oxide on the structural, physical, and γ-ray protection capacity of a ternary B2O3-PbO-CdO glass system

  • R.H. Shoeir;M. Afifi;Abdelghaffar S. Dhmees;M.I. Sayyed;K.A. Mahmoud
    • Nuclear Engineering and Technology
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    • 제56권6호
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    • pp.2258-2265
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    • 2024
  • The present investigation aims to study the role of Pr2O3 on the structural, physical, and radiation shielding properties of a dense cadmium lead borate glass. The XRD was used to affirm the glassy amorphous structure of fabricated sample materials. Moreover, the FTIR was used to record the change in the FT-IR spectra due to the addition of Pr2O3 in the wavenumber interval between 400 and 4000 cm-1. The features of glass surfaces and the elemental analyses for the synthesized Pr2O3-reinforced cadmium lead borate glasses were performed using a SEM, supported by an energy-dispersive spectrometer. The γ-ray protection capacity was evaluated using the Monte Carlo method in a wide energy interval ranging between 0.015 and 15 MeV. The linear attenuation coefficient (LAC) at 1 MeV was reduced by a factor of 10 % from 0.372 cm-1 to 0.340 cm-1. The decrease in the LAC values negatively affected the other shielding properties such as half-value thickness and the transmission factor. Although the linear attenuation coefficient is decreased slightly with the partial substitution of CdO by Pr2O3 compound, the fabricated glass samples still have a high shielding capacity compared to the traditional commercial glasses as well as previous similar reported glasses.

충남탄전, 대동누층군의 셰일과 탄질암에 관한 암석화학 및 환경지구화학적 특성 (Petrochemistry and Environmental Geochemistry of Shale and Coal from the Daedong Supergroup, Chungnam Coal Field, Korea)

  • 이찬희;이현구;김경웅
    • 자원환경지질
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    • 제30권5호
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    • pp.417-431
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    • 1997
  • Characteristics of sedimentary rocks and enrichment of toxic elements in shale and coal from the Chungnam coal field were investigated based upon geochemistry of major, trace and rare earth elements. Shale and coal of the area are interbedded along the Traissic to the Jurassic Daedong Supergroup, which can be subdivided into grey shale, black shale and coal. The coal had been mined, however all the mines are abandonded due to the economic problems. The shale and coal are characterized by relatively low contents of $SiO_2$, and $Al_2O_3$ and high levels of loss-on-ignition (LOI), CaO and $Na_2O$ in comparison with the North American Shale Composite (NASC). Light rare earth elements (La, Ce, Yb and Lu) are highly enriched with the coal. Ratios of $Al_2O_3/Na_2O$ and $K_2O/Na_2O$ in shale and coal range from 30.0 to 351.8 and from 4.2 to 106.8, which have partly negative correlations against $SiO_2/Al_2O_3$ (1.24 to 6.06), respectively. Those are suggested that controls of mineral compositions in shale and coal can be due to substitution and migration of those elements by diagenesis and metamorphism. Shale and coal of the area may be deposited in terrestrial basin deduced from high C/S (39 to 895) and variable composition of organic carbon (0.39 to 18.40 wt.%) and low contents of reduced sulfur (0.01 to 0.05 wt.%). These shale and coal were originated from the high grade metamorphic and/or igneous rocks, and the rare earth elements of those rocks are slightly influenced with diagenesis and metamorphism on the basis of $Al_2O_3$ versus La, La against Ce, Zr versus Yb, the ratios of La/Ce (0.38 to 0.85) and Th/U (3.6 to 14.6). Characteristics of trace and rare earth elements as Co/Th (0.07 to 0.86), La/Sc (0.31 to 11.05), Se/Th (0.28 to 1.06), V/Ni (1.14 to 3.97), Cr/V (1.4 to 28.3), Ni/Co (2.12 to 8.00) and Zr/Hf (22.6~45.1) in the shale and coal argue for inefficient mixing of the simple source lithologies during sedimentation. These rocks also show much variation in $La_N/Yb_N$ (1.36 to 21.68), Th/Yb (3.5 to 20.0) and La/Th (0.31 to 7.89), and their origin is explained by derivation from a mixture of mainly acidic igneous and metamorphic rocks. Average concentrations in the shale and coal are As=7.2 and 7.5, Ba=913 and 974, Cr=500 and 145, Cu=20 and 26, Ni=38 and 35, Pb=30 and 36, and Zn=77 and 92 ppm, respectively, which are similar to those in the NASC. Average enrichment indices for major elements in the shale (0.79) and coal (0.77) are lower than those in the NASC. In addition, average enrichment index for rare earth elements in coal (2.39) is enriched rather than the shale (1.55). On the basis of the NASC, concentrations of minor and/or environmental toxic elements in the shale and coal were depleted of all the elements examined, excepting Cr, Pb, Rb and Th. Average enrichment indices of trace and/or potentially toxic elements (As, Cr, Cu, Ni, Pb, U and Zn) are 1.23 to 1.24 for shale and 1.06 to 1.22 for coal, respectively.

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중국 Zhenzigou 연-아연 광상의 백색운모 산상과 화학조성 (Occurrence and Chemical Composition of White Mica from Zhenzigou Pb-Zn Deposit, China)

  • 유봉철
    • 광물과 암석
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    • 제35권2호
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    • pp.83-100
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    • 2022
  • Zhenzigou 연-아연 광상은 중국 동북지역에선 가장 규모가 큰 연-아연 광상 중의 하나로 지체구조상 Jiao Liao Ji belt내 Qingchengzi mineral field에 위치한다. 이 광상의 주변지질은 시생대의 그래뉼라이트(granulite)와 이를 관입한 고원생대의 미그마타이트질 화강암과 고-중원생대의 소딕(sodic) 화강암을 부정합으로 피복한 고원생대의 Liaohe 층군 및 이들을 관입한 중생대의 섬록암과 몬조나이틱 화강암으로 구성된다. 이 광상은 고원생대의 Liaohe 층군내 Langzishan 층 및 Dashiqiao 층내에서 층상 광체 및 맥상 광체로 산출되며 층준규제 퇴적분기형 또는 퇴적분기형 광상에 해당된다. 이 광상에서 산출되는 백색운모는 층상 광체에서만 산출되며 모암의 종류, 변질 정도, 광석광물의 유무 및 광체 형태에 따라 4 가지 형(I 형 백색운모 : 약변질(쇄설성 돌로마이트질 대리암), II 형 백색운모 : 강변질(돌로마이트질 쇄설성 암석), III 형 백색운모 : 층상광체(돌로마이트질 쇄설성 암석), IV 형 백색운모 : 층상 광체(쇄설성 돌로마이트질 대리암))으로 분류된다. I 형 백색운모는 약 변질정도를 갖는 쇄설성 돌로마이트질 대리암내 돌로마이트를 열수교대작용에 의한 돌로마이트화작용에 의해 형성된 돌로마이트와 함께 산출된다. II 형 백색운모는 강 변질정도를 갖는 돌로마이트질쇄설성 암석내 열수교대작용에 의한 칼리장석의 변질물이나 돌로마이트화작용에 의해 형성된 돌로마이트, 철백운석, 석영과 함께 산출된다. III 형 백색운모는 층상 광체를 갖는 돌로마이트질 쇄설성 암석내 열수교대작용에 의한 칼리장석의 변질물이나 돌로마이트화작용에 의해 형성된 철백운석, 방해석, 석영과 함께 산출된다. IV 형 백색운모는 층상 광체를 갖는 쇄설성 돌로마이트질 대리암내 열수교대작용에 의한 칼리장석의 변질물이나 돌로마이트, 석영과 함께 산출된다. 이들 백색운모의 화학조성은 각각 (K0.92-0.80Na0.01-0.00Ca0.02-0.01Ba0.00Sr0.01-0.00)0.95-0.83(Al1.72-1.57Mg0.33-0.20Fe0.01-0.00Mn0.00Ti0.02-0.00Cr0.01-0.00V0.00Sb0.02-0.00Ni0.00Co0.02-0.00)1.99-1.90(Si3.40-3.29Al0.71-0.60)4.00O10(OH2.00-1.83F0.17-0.00)2.00, (K1.03-0.84Na0.03-0.00Ca0.08-0.00Ba0.00Sr0.01-0.00)1.08-0.85(Al1.85-1.65Mg0.20-0.06Fe0.10-0.03Mn0.00Ti0.05-0.00Cr0.03-0.00V0.01-0.00Sb0.02-0.00Ni0.00Co0.03-0.00)1.99-1.93(Si3.28-2.99Al1.01-0.72)4.00O10(OH1.96-1.90F0.10-0.04)2.00, (K1.06-0.90Na0.01-0.00Ca0.01-0.00Ba0.00Sr0.02-0.01)1.10-0.93(Al1.93-1.64Mg0.19-0.00Fe0.12-0.01Mn0.00Ti0.01-0.00Cr0.01-0.00V0.00Sb0.00Ni0.00Co0.05-0.01)2.01-1.94(Si3.32-2.96Al1.04-0.68)4.00O10(OH2.00-1.91F0.09-0.00)2.00 및 (K0.91-0.83Na0.02-0.01Ca0.02-0.00Ba0.01-0.00Sr0.00)0.93-0.83(Al1.84-1.67Mg0.15-0.08Fe0.07-0.02Mn0.00Ti0.04-0.00Cr0.06-0.00V0.02-0.00Sb0.02-0.01Ni0.00Co0.00)2.00-1.92(Si3.27-3.16Al0.84-0.73)4.00O10(OH1.97-1.88F0.12-0.03)2.00 로써 이론적인 이중팔면체형 운모류 값보다 Si가 높고 K, Na, Ca는 낮으며 모두 백운모에 해당된다. 특히, Zhenzigou 연-아연 광상에서 산출되는 백색운모의 화학조성 변화는 팬자이틱 또는 Tschermark 치환[(Al3+)VI+(Al3+)IV <-> (Fe2+ 또는 Mg2+)VI+(Si4+)IV] 메카니즘에 의해 일어났으며 백색운모의 Fe는 Fe2+와 Fe3+ 로써 존재하지만 주로 Fe2+ 우세함을 의미한다. 따라서 Zhenzigou 연-아연 광상의 층상 광체에서 산출되는 백색운모들은 고원생대의 화성활동 및 녹색편암상의 변성작용에 의한 열수교대작용으로 기존에 산출되었던 광물들의 재용융 및 재침전 과정에서 형성되었으며 이들 백색운모의 화학조성 변화는 열수교대작용 동안 모암인 돌로마이트 및 쇄설성 암석의 함량 차이, 변질 정도 및 광석광물의 유무에 따른 팬자이틱 또는 Tschermark 치환[(Al3+)VI+(Al3+)IV <-> (Fe2+ 또는 Mg2+)VI+(Si4+)IV] 메카니즘에 의해 일어났음을 알 수 있다.