Academic literature on the topic 'Sodium perchlorate'

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Journal articles on the topic "Sodium perchlorate"

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Matsubara, Toshitaka, Kosuke Fujishima, Chad W. Saltikov, Satoshi Nakamura, and Lynn J. Rothschild. "Earth analogues for past and future life on Mars: isolation of perchlorate resistant halophiles from Big Soda Lake." International Journal of Astrobiology 16, no. 3 (2016): 218–28. http://dx.doi.org/10.1017/s1473550416000458.

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AbstractThe Martian regolith is known to contain a maximum of 0.5% (w/v) perchlorate (ClO4−) that is toxic for most living organisms. With such high concentrations of perchlorates on Mars, is there any possibility of life? Here, in order to search and identify potential organisms on Earth, which could survive the perchlorate levels on Mars, we have isolated four perchlorate resistant, halophilic/halotolerant bacterial species from Big Soda Lake (BSL) in Nevada, USA. The 16S ribosomal RNA sequences revealed that these halophiles belong to the genera Bacillus, Alkalibacillus and Halomonas. Growt
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Menon, Sananth H., G. Madhu, and J. Mathew. "Compact Flow-Through Electrochemical Cell - A Novel Perspective in Industrial Manufacture of Perchlorates." Open Chemical Engineering Journal 13, no. 1 (2019): 23–32. http://dx.doi.org/10.2174/1874123101913010023.

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Background: Sodium Perchlorate is one of the major starting intermediate product for the manufacture of various Perchlorates viz, Ammonium perchlorate as solid oxidizer and Strontium Perchlorate as Secondary Injection Thrust Vector Control (SITVC) in launch vehicles. This critical product is manufactured industrially by electrochemical oxidation of Sodium Chlorate solution at the anodic surface. Lead dioxide is preferred in various perchlorate cells because of its low cost. Infrequent detachment of Lead dioxide deposits from the substrate during electrolysis is a grave issue confronted by asso
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Jung, Yu-Kyung, Alam Venugopal Narendra Kumar, Byong-Hun Jeon, Eun Young Kim, Taewoo Yum, and Ki-Jung Paeng. "Exploration of Zero-Valent Iron Stabilized Calcium–Silicate–Alginate Beads’ Catalytic Activity and Stability for Perchlorate Degradation." Materials 15, no. 9 (2022): 3340. http://dx.doi.org/10.3390/ma15093340.

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Perchlorate contamination in groundwater poses a serious threat to human health, owing to its interference with thyroid function. The high solubility and poor adsorption of perchlorate ions make perchlorate degradation a necessary technology in groundwater contaminant removal. Here, we demonstrate the perchlorate degradation by employing nano zero-valent iron (nZVI) embedded in biocompatible silica alginate hybrid beads fabricated using calcium chloride (1 wt%) as a crosslinker. The concentration of precursors (sodium alginate, sodium silicate) for bead formation was standardized by evaluating
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Ahmed D. Wiheeb. "THE MANUFACTURE OF PERCHLORATE BY DIRECT METHOD USING GRAPHITE SUBSTRATE LEAD DIOXIDE (GSLD) ANODE." Diyala Journal of Engineering Sciences 2, no. 1 (2009): 66–79. http://dx.doi.org/10.24237/djes.2009.01105.

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Sodium perchlorate has been prepared electrochemically from sodium chloride solutions in one step by passing a direct current through the solution , in the presence of certain addition agents (like sodium fluoride). A laboratory electrolytic cell has been designed to obtain experimental results for the preparation of sodium perchlorate. A solution of sodium chloride (290 g/l ) and sodium fluoride (2 g/l ) is electrolyzed in a batch wise. A stainless steel cathode and Graphite substrate lead dioxide (GSLD) anode are satisfactory . The influence of anodic current density , temperature ,and pH of
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Knop, Jim-Marcel, Sanjib K. Mukherjee, Stewart Gault, Charles S. Cockell, and Roland Winter. "Structural Responses of Nucleic Acids to Mars-Relevant Salts at Deep Subsurface Conditions." Life 12, no. 5 (2022): 677. http://dx.doi.org/10.3390/life12050677.

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High pressure deep subsurface environments of Mars may harbor high concentrations of dissolved salts, such as perchlorates, yet we know little about how these salts influence the conditions for life, particularly in combination with high hydrostatic pressure. We investigated the effects of high magnesium perchlorate concentrations compared to sodium and magnesium chloride salts and high pressure on the conformational dynamics and stability of double-stranded B-DNA and, as a representative of a non-canonical DNA structure, a DNA-hairpin (HP), whose structure is known to be rather pressure-sensi
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Pica, Andrea, and Giuseppe Graziano. "Effect of sodium thiocyanate and sodium perchlorate on poly(N-isopropylacrylamide) collapse." Physical Chemistry Chemical Physics 22, no. 1 (2020): 189–95. http://dx.doi.org/10.1039/c9cp05706d.

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Riekeles, Max, Berke Santos, Sherif Al-Morssy Youssef, and Dirk Schulze-Makuch. "Viability and Motility of Escherichia coli Under Elevated Martian Salt Stresses." Life 14, no. 12 (2024): 1526. http://dx.doi.org/10.3390/life14121526.

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This study investigates the effects of three Martian-relevant salts—sodium chlorate, sodium perchlorate, and sodium chloride—on the viability and motility of Escherichia coli, a model organism for understanding microbial responses to environmental stress. These salts are abundant on Mars and play a crucial role in forming brines, one of the few sources of stable liquid water on the planet. We analyze the survivability under different salt concentrations using colony plating. Additionally, we perform a semi-automated motility analysis, analyzing microbial speeds and motility patterns. Our resul
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Kunteppa H, Kunteppa H. "Ac Conductivity of Sodium perchlorate doped PEO composites: Battery Application." Indian Journal of Applied Research 3, no. 7 (2011): 568–69. http://dx.doi.org/10.15373/2249555x/july2013/178.

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Vachon, C., M. Vasco, M. Perrier, and J. Prud'homme. "Microphase separation in amorphous polyethers complexed with lithium perchlorate, sodium perchlorate and sodium iodide." Macromolecules 26, no. 15 (1993): 4023–31. http://dx.doi.org/10.1021/ma00067a045.

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Keaney, Daniel, Venkata V. B. Yallapragada, Liam O’Faolain, Ganga Chinna Rao Devarapu, Karen Finn, and Brigid Lucey. "Investigating Terrestrial and Extraterrestrial Bioremediation through Microbial Action Using Raman Spectroscopy." Challenges 15, no. 1 (2024): 4. http://dx.doi.org/10.3390/challe15010004.

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Sodium perchlorate is a toxic salt-based compound found both terrestrially, (due to pollution) and extraterrestrially on the surface of Mars. Perchlorate pollution poses a risk to agricultural-based activities as once it enters soils/waterways it can be passed through the food chain via bioaccumulation. The purpose of the current study was to observe the perchlorate reduction potential of putative candidate bioremediation strains; Escherichia coli 25922 and E. coli 9079, Paraburkholderia fungorum, Deinococcus radiodurans and Dechloromonas aromatica both independently and in co-cultures, when e
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Dissertations / Theses on the topic "Sodium perchlorate"

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Pisarenko, Aleksey N. "Analytical Measurements and Predictions of Perchlorate Ion Concentration in Sodium Hypochlorite Solutions and Drinking Water: Kinetics of Perchlorate Ion Formation and Effects of Associated Contaminants." Oxford, Ohio : Miami University, 2009. http://rave.ohiolink.edu/etdc/view?acc%5Fnum=miami1258154594.

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Zhang, Mengxue. "INFLUENCE OF SODIUM SALTS ON THE SWELLING AND RHEOLOGY OF HYDROPHOBICALLY CROSSLINKED, NON-IONIC HYDROGELS DETERMINED BY QCM-D." University of Akron / OhioLINK, 2019. http://rave.ohiolink.edu/etdc/view?acc_num=akron1555682656086202.

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Almeida, Cecilia Maria Villas Bôas de. "Estudo eletroquímico das interfases estanho/perclorato e estanho/perclorato, ácido cítrico." Universidade de São Paulo, 1995. http://www.teses.usp.br/teses/disponiveis/46/46132/tde-30032009-145220/.

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Realizaram-se estudos potenciostáticos e potenciodinâmicos do comportamento eletroquímico do estanho em meio ácido de perclorato de sódio desaerado, com adições sistemáticas de ácido cítrico. Paralelamente aos ensaios eletroquímicos acompanhou-se o estado superficial do eletrodo com microscópio de luz refletida e microscópio eletrônico de varredura (SEM). Foi constatada, inicialmente, a ocorrência da redução do perclorato em presença do eletrodo de estanho. A redução do perclorato de sódio 0,5 M no eletrodo de estanho ocorre durante catodizações em meio ácido, no intervalo de potenciais de -0,
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Chao, Shuo, and 趙碩. "The Production of Sodium Perchlorate on the Lead Dioxide Electrode and Its Corrosion Behavior." Thesis, 1994. http://ndltd.ncl.edu.tw/handle/88089766044093839974.

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碩士<br>國立成功大學<br>化學工程研究所<br>82<br>The content of this thesis can be majorly divided into two parts. The effect ofelectrolysis conditions on the NaClO4 produc- tion current efficiency and PbO2 corrosion during NaClO4 produc- tion was studied in the first part. The corrosion behaviorof PbO2 anode in O3 and HClO producction process as well asthe effect of H2O2 concentration on PbO2 corrosion were alsoreported in the se- cond part.The effect of such electrolysis conditions as NaClO3 co centratio
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Redick-Harris, Melinda Suzanne. "Effects of in ovo exposure to sodium perchlorate on development, growth and reproduction of fence lizards (Sceloporus sp.)." 2006. http://digital.library.okstate.edu/etd/umi-okstate-1988.pdf.

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Al-Ghanim, Adel A. "Sodium perchlorate-induced inactivation of rabbit muscle enolase : partial inactivation of dimeric enzyme and dissociation into inactive monomers." Thesis, 1994. http://spectrum.library.concordia.ca/4250/1/MM90933.pdf.

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Books on the topic "Sodium perchlorate"

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Sunder, S. Anodic dissolution of UO2 in slightly alkaline sodium perchlorate solutions. Atomic Energy of Canada Limited, 1996.

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Book chapters on the topic "Sodium perchlorate"

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Winkelmann, J. "Diffusion of oxygen (1); water (2); sodium perchlorate (3)." In Gases in Gases, Liquids and their Mixtures. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-49718-9_1802.

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Winkelmann, J. "Diffusion of sulfur dioxide (1); water (2); sodium perchlorate (3)." In Gases in Gases, Liquids and their Mixtures. Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-49718-9_1813.

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Lauterbach, A. "Reduction of Perchlorate Levels of Sodium and Potassium Nitrates Derived from Natural Caliche Ore." In ACS Symposium Series. American Chemical Society, 2003. http://dx.doi.org/10.1021/bk-2004-0872.ch004.

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Conference papers on the topic "Sodium perchlorate"

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Dobosz, L. M. "Electrochemical Assessment of Corrosion Behavior of 316 Stainless Steel in Sodium Chlorate Solutions." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01489.

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Abstract Corrosion behavior of 316L stainless steel grade in various chlorate mixtures was tested electrochemically. Following ASTM G 61 standard for conducting cycling potentiodynamic polarization and standard surface preparation, wire coupons were used for experiments. In addition to 316L grade some polarization curves were obtained for 304L stainless steel grade and platinum, to be used as reference points. Influence of chloride, dichromate, perchlorate, hypochlorite, sulfate and hydrogen peroxide at varying pH was studied. The presence of hypochlorite or hydrogen peroxide greatly increases
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MIRONOV, V. N., O. G. PENYAZKOV, E. S. GOLOMAKO, and S. O. SHUMLYAEV. "COMBUSTION OF PSI-NACLO4 ■ H2O COMPOSITIONS WITH MICROPARTICLES OF NANOSTRUCTURED SILICON AT THE NEAR-STOICHIOMETRIC EQUIVALENCE RATIOS OF COMPONENTS." In 9TH INTERNATIONAL SYMPOSIUM ON NONEQUILIBRIUM PROCESSES, PLASMA, COMBUSTION, AND ATMOSPHERIC PHENOMENA. TORUS PRESS, 2020. http://dx.doi.org/10.30826/nepcap9a-33.

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Currently, various groups of scientists are investigating the possibility of using nanostructured porous silicon as promising solid fuels (or additives to composite solid fuels) and as miniature energy sources for microelectromechanical systems. The results presented in the paper demonstrate the prospects of the proposed novations aimed at increasing the efficiency of nanoporous silicon as an energetic material. They are based on the use of mounds of porous silicon fragments treated with sodium perchlorate solutions and dried under low warming (MPSF-composites) as energy composites. For exampl
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Zhao, Xuesong, Shutao Wang, Minqing Tan, Hong You, and Lili Qi. "Notice of Retraction: Joint Acute Toxicity of Phenanthrene and Sodium Perchlorate to Adult Zebrafish." In 2011 5th International Conference on Bioinformatics and Biomedical Engineering. IEEE, 2011. http://dx.doi.org/10.1109/icbbe.2011.5780853.

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MIRONOV, V. N., O. G. PENYAZKOV, E. S. GOLOMAKO, and S. O. SHUMLYAEV. "FAST COMBUSTION MODES OF COMPOSITES "MOUND OF POROUS SILICON FRAGMENTS-SODIUM PERCHLORATE MONOHYDRATE" IN THE ATMOSPHERE." In 12TH INTERNATIONAL COLLOQUIUM ON PULSED AND CONTINUOUS DETONATIONS. TORUS PRESS, 2020. http://dx.doi.org/10.30826/icpcd12a16.

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Numerous studies have demonstrated the potential use of porous silicon (pSi) as an energetic material. However, there are a number of dificulties in such an application of nanostructured silicon. Here are two of the most serious dificulties.
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Svendsen, RH, V. Michalsen, TS Dogbeten, and V. Savic. "3PC-029 pH measurement: not as simple as we think? A case of sodium perchlorate injections." In 28th EAHP Congress, Bordeaux, France, 20-21-22 March 2024. British Medical Journal Publishing Group, 2024. http://dx.doi.org/10.1136/ejhpharm-2024-eahp.86.

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MIRONOV, V. N., O. G. PENYAZKOV, P. N. KRIVOSHEYEV, I. A. IVANOV, K. N. KASPAROV, and L. Yu ROSHCHIN. "ON THE MECHANISMS OF POROUS SILICON COMBUSTION IN OXYGEN AND AIR ATMOSPHERE WHEN SODIUM PERCHLORATE IS INCORPORATED IN PORES." In 8TH INTERNATIONAL SYMPOSIUM ON NONEQUILIBRIUM PROCESSES, PLASMA, COMBUSTION, AND ATMOSPHERIC PHENOMENA. TORUS PRESS, 2020. http://dx.doi.org/10.30826/nepcap2018-2-13.

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Mandygra, Yu, G. Volovik та S. Doletsky. "Санитарно-ветеринарное обеспечение благополучия птицеводства". У Scientific and practical conference with international participation: "Management of the genetic fund of animals – problems, solutions, outlooks". Scientific Practical Institute of Biotechnologies in Animal Husbandry and Veterinary Medicine, 2023. http://dx.doi.org/10.61562/mgfa2023.61.

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Thе manuscript presents data of obtaining electrochemically active (ECA) solutions with given properties. During the electrochemical activation, water that accumulates near the anode is called anode water (anolyte). By adding 0.5-1.0% NaCl solution, hypo-chloride, hypochlorous acid, sodium chlorate and perchlorate, hydrogen peroxide are formed providing strong antibacterial, antifungal and antiviral activity. After using anolyte for disinfection, it quickly dissociates into H2O and NaCl, so it does not require decontamination. Bacteria do not develop resistance to ECA solutions, even with prol
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English, Brian E., Heather H. DiBiaso, and Mark G. Allen. "Microcombustors Based on Controllable Solid Fuel Elements." In ASME 2003 International Mechanical Engineering Congress and Exposition. ASMEDC, 2003. http://dx.doi.org/10.1115/imece2003-42823.

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This paper focuses on the control of solid-fuel burn rate by controlling the solid-fuel chemistry or by controlling heat losses. Laser cutting and lamination have been used to fabricate milli-scale test structures to characterize burn rates of composite solid fuel. The base ingredients for the solid fuels tested were phase-stabilized ammonium nitrate (PSAN), ammonium perchlorate (AP), and sodium azide (SA). These base ingredients were tested alone or mixed with hydroxyl-terminated poly-butadiene (HTPB) plus various accelerants. Several experiments were performed to test the controllability of
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