Academic literature on the topic 'Iron sulphate'

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Journal articles on the topic "Iron sulphate"

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du Preez, L. A., and J. P. Maree. "Pilot-scale biological sulphate and nitrate removal utilizing producer gas as energy source." Water Science and Technology 30, no. 12 (1994): 275–85. http://dx.doi.org/10.2166/wst.1994.0625.

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The discharge of effluents rich in sulphate and nitrate is of increasing concern, as the former leads to mineralisation of surface water, and the latter is a plant nutrient. A process is described whereby sulphate is reduced to sulphide under anaerobic conditions with producer gas as substrate. Sulphide stripped off is then converted to elemental sulphur by reacting it with biologically produced iron(III). The study consisted of laboratory batch and continuous experiments, as well as pilot scale studies. Sulphate was reduced to sulphide at a rate of 1.2 g SO4 1−1 d−1 with H2/CO as substrate, a
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Mchibwa, K. A., Sehliselo Ndlovu, and S. Iyuke. "Precipitation of Iron Oxyhydroxides and Basic Sulphates from Bioleach Liquors Generated by Thermophilic Micro-Organisms." Advanced Materials Research 71-73 (May 2009): 453–56. http://dx.doi.org/10.4028/www.scientific.net/amr.71-73.453.

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Thermophilic micro-organisms are known to oxidise pyrite and other iron sulphide minerals resulting in the production of acidic ferric sulphate solutions. In this study, the leach liquors generated from such bacterial oxidation were aged through a forced hydrolysis process to yield various iron oxyhydroxides and sulphates. The forced hydrolysis was carried out under a pH range of 1.9 to 9.0. Upon completion of aging, the precipitates generated were characterised using powder X-Ray diffractrometry. The XRD analyses revealed a production of a variety of iron oxyhydroxides and basic iron sulphate
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Dovorogwa, Hamlton, and Kevin Harding. "Exploring the Use of Tobacco Waste as a Metal Ion Adsorbent and Substrate for Sulphate-Reducing Bacteria during the Treatment of Acid Mine Drainage." Sustainability 14, no. 21 (2022): 14333. http://dx.doi.org/10.3390/su142114333.

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Treatment of acid mine drainage (AMD) was successfully demonstrated using tobacco waste (dust and stem) as a metal cation adsorbent, pH modifier and carbon source for sulphate-reducing bacteria (SRB). Synthetic and industrial AMD wastewaters were used in batch adsorption and SRB facilitated bioremediation experiments. Up to absorbent loading of 80 g/L, metal removal increased. However, increases above 160 g/L did not offer a proportional increase. At an adsorbent loading of 80 g/L, the highest metal removals of 38, 41, 31 and 43% for iron, nickel, copper and zinc respectively were achieved. Th
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VIKASH KUMAR, DINESH KUMAR, Y.V. SINGH, and RISHI RAJ. "Effect of iron fertilization on dry-matter production, yield and economics of aerobic rice (Oryza sativa)." Indian Journal of Agronomy 60, no. 4 (2001): 547–53. http://dx.doi.org/10.59797/ija.v60i4.4491.

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A field experiment was conducted during the rainy (kharif) seasons of 2011 and 2012 at the research farm of the Indian Agricultural Research Institute, New Delhi, to study the effect of iron fertilization on dry-matter produc- tion, yield and economics of aerobic rice (Oryza sativa L.) varieties. The experiment was laid out in a randomized block design with 3 replications. Treatments comprised 2 rice varieties (PRH 10 and PS 5) and 8 sources and modes of iron fertilizationcontrol (no iron), iron sulphate @ 50 kg/ha + 1 foliar spray of 2.0% iron sulphate, iron sulphate @ 50 kg/ha + 1 foliar spr
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Jakobsen, U. H. "Hydrated iron sulphate occurrences at Navarana fjord, Central North Greenland." Bulletin of the Geological Society of Denmark 37 (April 10, 1989): 175–80. http://dx.doi.org/10.37570/bgsd-1988-37-15.

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Several occurrences of readily soluble hydrated sulphate minerals were found at Navarana Fjord in the northeastern part of Freuchen Land, central North Greenland. The sulphate minerals are copiapite, fibroferrite, gypsum, rozenite, melanterite and roemerite. In addition, limonite and pyrite are found. The mineralization occurs in faults and is found with the minerals in the above succession with a yellow crust of copiapite at the surface down to roemerite at a depth of 1.35 m. The generation of these sulphate minerals are considered to be a result of oxidation and hydration of pyrite. The sulp
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Devi, N. Maheswari, and Umesha C. "Effect of Priming of Micronutrients on Growth and Yield of Linseed." International Journal of Environment and Climate Change 13, no. 10 (2023): 2000–2006. http://dx.doi.org/10.9734/ijecc/2023/v13i102858.

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The field study took place in rabi season 2022 at the CRF, Naini Agricultural Institute, Sam Higgin bottom University of Agriculture, Technology, and Sciences, Prayagraj (U.P.). To ascertain the “Effect of Priming of Micronutrients on Growth and Yield of Linseed.” The soil of experimental plot was sandy loamy in texture, nearly neutral in soil reaction (pH 7.8), low in organic carbon (0.35%). The experiment was laid out in Randomized Block Design with ten treatments which are replicated thrice. The treatment combinations are T1: Iron Sulphate 2500 ppm + Ammonium Molybdenum 3000 ppm T2: Iron Su
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Soumya, B., K. P. Vani, and K. Surekha. "Effect of Iron Nutrition on Growth and Productivity of Aerobic Rice (Oryza sativa)." International Journal of Bio-resource and Stress Management 13, Dec, 12 (2022): 1403–10. http://dx.doi.org/10.23910/1.2022.3276.

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A field experiment was conducted during kharif seasons (June–October) of 2012 and 2013 at College Farm, College of Agriculture, Professor Jayashankar Telangana State Agricultural University, Hyderabad, Telengana, India to evaluate the response of rice cultivars and iron nutrition on growth and yield of aerobic rice. Experiment comprising of three rice cultivars (Tellahamsa, MTU 1010 and KRH 2) and twelve sources and modes of iron nutrition i.e. control (no iron), basal application of iron sulphate @ 25 kg ha-1, basal application of Iron chelate @ 25 kg ha-1, 3 foliar sprays of 2% iron sulphate
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Grudinsky, Pavel, Ekaterina Podjelnikova, and Valery Dyubanov. "Study of Sulphatizing Roasting Process Using Iron Sulphates for the Treatment of Zinc Leach Residue." Materials Science Forum 989 (May 2020): 448–55. http://dx.doi.org/10.4028/www.scientific.net/msf.989.448.

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The paper presents the results of the investigation of zinc leach residue (ZLR) processing by sulphatizing roasting with iron sulphates FeSO4 and Fe2(SO4)3 followed by water leaching. The elemental and phase compositions of ZLR of JSC "Chelyabinsk Zinc Plant" were studied. Based on the thermodynamic calculations using HSC Chemistry 9.9 software, the temperature ranges of the sulphatizing roasting and the required amounts of iron sulphate additives for the sulphation of zinc and copper were determined. Subsequent experiments showed that recovery rates of zinc and copper reached 99.5% and 89.1%
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Pirman, Tatjana, Ajda Lenardič, Alenka Nemec Svete, and Simon Horvat. "Supplementation with >Your< Iron Syrup Corrects Iron Status in a Mouse Model of Diet-Induced Iron Deficiency." Biology 10, no. 5 (2021): 357. http://dx.doi.org/10.3390/biology10050357.

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The objective of this study was to compare the effects of &gt;Your&lt; Iron Syrup, a novel oral liquid iron-containing food supplement, with the commonly prescribed iron sulphate (Fe-sulphate) in a mouse model of diet-induced iron deficiency. Standard inbred BALB/cOlaHsd mice were fed low-iron diet for 11 weeks to induce significant decrease in blood haemoglobin and haematocrit and were then supplemented by gavage with either &gt;Your&lt; Iron Syrup or Fe-sulphate for two weeks. In &gt;Your&lt; Iron Syrup group, several markers of iron deficiency, such as serum iron concentration, transferrin
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Trudinger, P. A., L. A. Chambers, and J. W. Smith. "Low-temperature sulphate reduction: biological versus abiological." Canadian Journal of Earth Sciences 22, no. 12 (1985): 1910–18. http://dx.doi.org/10.1139/e85-207.

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Sulphate is considered to have been a major source of sulphide in strata-bound and stratiform base-metal sulphide deposits. Many of these deposits, however, appear to have been formed at moderate temperatures (&lt;200 °C), which poses the question, By what mechanism(s) was sulphate reduced to sulphide? Two modes of reduction have been established experimentally: (1) catalysis by sulphate-reducing bacteria, which at present is only known to occur below ca. 100 °C; and (2) abiological reduction by ferrous iron or organic matter, which has only been clearly shown above ca. 250 °C.Several attempts
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Dissertations / Theses on the topic "Iron sulphate"

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Vu, Hong Phuc. "Lead and sulphate interactions with iron (oxyhydr)oxide phases." Thesis, University of Leeds, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.521539.

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Dalzell, David James Blair. "The toxicity of iron to the brown trout, Salmo trutta L." Thesis, University of Nottingham, 1996. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.337533.

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Funk, Maryke. "Screening for childhood anaemia using copper sulphate densitometry." Diss., Access to E-Thesis, 2003. http://upetd.up.ac.za/thesis/available/etd-09192005-135937/.

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Radford, Neil Philip. "Ecotoxicological impact of iron III sulphate on chironomid cultures and profundal reservoir communities." Thesis, University of Leicester, 1997. http://hdl.handle.net/2381/29762.

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Ferric sulphate dosing has been used as a eutrophication control measure in water supply reservoirs. The dosing results in precipitation of available phosphorus to a layer overlying the natural sediments. Stream sites contaminated with iron from mine drainage exhibit impoverished fish and benthic invertebrate communities. This study investigated the potential impact of prolonged exposure to sedimented iron precipitates on chironomids (Diptera, Chironomidae), as representative of benthic invertebrates.;The distribution of chironomid taxa in relation to ferric dosing at Rutland Water, Leicesters
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Zinck, Janice M. "An investigation into the hydrolytic precipitation of iron (III) from sulphate-bearing effluents /." Thesis, McGill University, 1993. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=68062.

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The hydrolysis of iron(III) from sulphate bearing aqueous solutions was investigated to significantly improve the neutralization of acidic mineral effluents. Both theoretical and experimental studies were undertaken. A literature review and a thermodynamic analysis of the Fe(III)-SO$ sb4$-H$ sb2$O system were performed.<br>The thermodynamic analysis determined that Fe(III)-sulphato complexes dominate in the acidic pH range (pH $<$ 4) while at neutral to mild alkaline pH range Fe(OH)$ sb3 sp circ sb{ rm (aq)}$ is the dominant species. It was found that a relationship exists between the precipit
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Kajenthira, Arani. "Mercury immobilisation in situ : Interactions between charcoal, nanoscale iron, and sulphate-reducing bacteria." Thesis, University of Oxford, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.533855.

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Principe, Frank T. "Separation of iron(III) from zinc sulphate-sulphuric acid solutions using organophosphoric acid extractants." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1999. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape8/PQDD_0016/MQ55025.pdf.

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De, Klerk Richard. "Investigating the continuous circuit coprecipitation of arsenic(V) with ferric iron in sulphate media." Thesis, McGill University, 2008. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=21969.

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This thesis presents the results of an investigation on the impact of continuous circuit and solution parameters on coprecipitation of arsenic with ferric iron from acidic sulphate solution. The techniques employed were selected, or developed, to emulate industrial practice. The concept behind the work was to better understand the link between the process of precipitation and the stability of arsenic in the resultant coprecipitates. This was performed by examining the role of circuit design and co-ions on both arsenic removal during coprecipitation and arsenic retention during ageing. The
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Olivier, Michiel Casparus. "Developing a solvent extraction process for the separation of cobalt and iron from nickel sulphate solutions." Thesis, Stellenbosch : Stellenbosch University, 2011. http://hdl.handle.net/10019.1/17984.

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Thesis (MScEng)--Stellenbosch University, 2011.<br>ENGLISH ABSTRACT: Crude NiSO4 solutions are often produced as a product of Sherrit based matte leach processes leading to iron and cobalt contaminated solutions of NiSO4. To upgrade the quality of these solutions for either, the production of NiSO4 crystals or cathode/precipitated nickel, the iron and cobalt must be removed. Conventional processes use either pure or saponified Cyanex 272 in solvent extraction to extract iron and cobalt from pregnant nickel leach solutions. These processes require the addition of an alkali like NaOH to neutral
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Kladova, Anna Vadymivna. "Metals in proteins from sulphate-reducing bacteria: adenylate kinase and ATP sulfurylase. Proteins containing cobalt, zinc, iron (II) ions." Doctoral thesis, Faculdade de Ciências e Tecnologia, 2009. http://hdl.handle.net/10362/6342.

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A Thesis submitted at the Faculty Science and Technology of the New University of Lisbon for a degree in Doctor of Philosophy in Biochemistry with specialization in Physical Biochemistry<br>(fellowship BD SFRH/BD/24744/05)- Foundation for Science and Technology
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Books on the topic "Iron sulphate"

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Knocke, William R. Chlorite ion reduction by ferrous iron addition. AWWA Research Foundation and American Water Works Association, 1993.

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Isaacson, A. E. Effect of sulfide minerals on ferrous alloy grinding media corrosion. U.S. Dept. of the Interior, Bureau of Mines, 1989.

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Isaacson, A. E. Effect of sulfide minerals on ferrous alloy grinding media corrosion. Dept. of the Interior, 1989.

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Olive, Edgar William. Killing of Mustard and Other Noxious Weeds in Grain Fields by the Use of Iron Sulphate. Creative Media Partners, LLC, 2018.

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Killing of Mustard and Other Noxious Weeds in Grain Fields by the Use of Iron Sulphate. Creative Media Partners, LLC, 2023.

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Geschwind, Lucien. The Manufacture of Alum and the Sulphates and Other Salts of Alumina and Iron. Franklin Classics Trade Press, 2018.

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Geschwind, Lucien. The Manufacture of Alum and the Sulphates and Other Salts of Alumina and Iron. Franklin Classics Trade Press, 2018.

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The Manufacture of Alum and the Sulphates and Other Salts of Alumina and Iron. Franklin Classics, 2018.

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Geschwind, Lucien. The Manufacture of Alum and the Sulphates and Other Salts of Alumina and Iron: Their Uses and Applications as Mordants in Dyeing and Calico Printing, ... Engineering, Agriculture, and Horticultu. Franklin Classics Trade Press, 2018.

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Geschwind, Lucien. The Manufacture of Alum and the Sulphates and Other Salts of Alumina and Iron: Their Uses and Applications as Mordants in Dyeing and Calico Printing, ... Engineering, Agriculture, and Horticultu. Franklin Classics Trade Press, 2018.

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Book chapters on the topic "Iron sulphate"

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Pardasani, R. T., and P. Pardasani. "Molar magnetic moment of di[diaqua(diacetylmonoximethiosemicarbazonato)iron(II)] sulphate." In Magnetic Properties of Paramagnetic Compounds, Magnetic Susceptibility Data, Volume 1. Springer Berlin Heidelberg, 2021. http://dx.doi.org/10.1007/978-3-662-62478-4_390.

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Swash, P. M., and A. J. Monhemius. "Hydrothermal precipitation from aqueous solutions containing iron(III), arsenate and sulphate." In Hydrometallurgy ’94. Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-1214-7_10.

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Jiang, Jia-Qian, and Nigel J. D. Graham. "Evaluation of Poly-Alumino-Iron Sulphate (PAFS) as a Coagulant for Water Treatment." In Chemical Water and Wastewater Treatment V. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-72279-0_2.

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Moussas, P. A., and A. I. Zouboulis. "Composite Iron-Based Coagulant Synthesised by Inorganic Polyferric Sulphate and Organic, Non-Anionic Polymer." In Water Treatment Technologies for the Removal of High-Toxity Pollutants. Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-90-481-3497-7_23.

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Pardasani, R. T., and P. Pardasani. "Molar magnetic moment of di[diaqua(1-phenyl-1,2-propanedione-2-oximethiosemicarbazonato)iron(II)] sulphate." In Magnetic Properties of Paramagnetic Compounds, Magnetic Susceptibility Data, Volume 1. Springer Berlin Heidelberg, 2021. http://dx.doi.org/10.1007/978-3-662-62478-4_391.

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Verbeken, K., M. Verhaege, and E. Wettinck. "Separation of Iron from a Zinc Sulphate Electrolyte by Combined Liquid-Liquid Extraction and Electro-Reductive Stripping." In Lead-Zinc 2000. John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118805558.ch52.

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Pardasani, R. T., and P. Pardasani. "Molar magnetic moment of di{[5,9-dioxo-3,4,7,10,11,17-hexaaza-2,11,13,15,1(17)-N-pentadienebicyclo[3.11.1]heptadecane]iron(III)} sulphate." In Magnetic Properties of Paramagnetic Compounds, Magnetic Susceptibility Data, Volume 2. Springer Berlin Heidelberg, 2021. http://dx.doi.org/10.1007/978-3-662-62466-1_72.

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Yu, Chol-Jun, Un-Gi Jong, Yun-Hyok Kye, and Yun-Sim Kim. "Design of Improved Cathode Materials by Intermixing Transition Metals in Sodium-Iron Sulphate and Sodium Manganate for Sodium-Ion Batteries." In Topics in Applied Physics. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-47303-6_17.

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Ojumu, Tunde V., Jochen Petersen, and Geoffrey S. Hansford. "The Effect of Aluminium and Magnesium Sulphate on the Rate of Ferrous Iron Oxidation by Leptospirillum ferriphilum in Continuous Culture." In Advanced Materials Research. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-452-9.156.

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Gianmarco, Giordani, Roberta Azzoni, Marco Bartoli, and Pierluigi Viaroli. "Seasonal Variations of Sulphate Reduction Rates, Sulphur Pools and Iron Availability in the Sediment of a Dystrophic Lagoon (Sacca Di Goro, Italy)." In The Interactions Between Sediments and Water. Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-011-5552-6_38.

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Conference papers on the topic "Iron sulphate"

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De Turris, Antonio, Matilde de Romero, Tesfaalem G. Haile, Sankara Papavinasam, and W. Douglas. "Correlation between the Growth of a Mixed Culture of Sulphate-Reducing Bacteria Isolated from Produced Water and the Corrosion of Carbon Steel." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01126.

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Abstract In this work the corrosion of carbon steel exposed to a mixed culture of sulphate-reducing bacteria (SRB) isolated from a Venezuelan industry crude oil field was investigated. The optimum conditions for SRB growth were established and growth curves for 1 v% and 10 v% of inoculum in synthetic produced water (SPW) were constructed. Changes in solution pH, iron content, sulphide concentration, and sulphate concentration were measured. The growth of sessile and planktonic mixed culture of SRB was found to correlate with corrosion rate and corrosion morphology.
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Wylde, J. J., and I. G. Winning. "Challenges and Solutions Associated with the Development of an Iron Scale Dissolver Chemistry." In CORROSION 2004. NACE International, 2004. https://doi.org/10.5006/c2004-04730.

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Abstract Further work has been undertaken on the continued to develop a novel chemistry to dissolve iron scale deposits. Laboratory tests showed promising results when applied to actual field deposits with very high dissolution and low corrosion rates. The novel dissolver blend is based upon Tetrakishydroxymethylphosphonium sulphate (THPS), yet little is understood about this chemistry and the synergies it displays. Laboratory studies have been performed investigating the various synergies, the effect of pH, concentration of components and the use of alternative chemistries to THPS. Many types
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Anthony, G. M. "In Situ Investigations of Adsorption on Iron Oxide in Aqueous Systems." In CORROSION 1990. NACE International, 1990. https://doi.org/10.5006/c1990-90097.

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Abstract FT-IR and Horizontal Attenuated Total Reflectance (HATR) has been used successfully to obtain information about structures of anions and a corrosion inhibitor both in solution and at the Goethite solution interface. The technique allows information to be obtained under equilibrium conditions and with minimum sample preparation. Differences have been observed between these experiments and those reported earlier from dried samples.12,13 At pH 9 sulphate and phosphate appear to be held electro- statically at the Goethite solution interface in a fully deprotonated form, whereas the carbon
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De Turris, Antonio, Matilde de Romero, Sankara Papavinasam, and W. Douglas Gould. "Synergistic Effect of Sulphate-Reducing Bacteria and CO2 on the Corrosion of Carbon Steel in Synthetic Produced Water." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01233.

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Abstract The effect of sulphate-reducing bacteria (SRB) and carbon dioxide (CO2) on the general and localized corrosion of carbon steel in synthetic produced water (SPW) was investigated. The synthetic produced water was saturated with various concentrations of CO2. Experiments were carried out in a rotating cage apparatus using a mixed culture of sulphate-reducing bacteria obtained from an oil field in Venezuela. During the experiments the pH, planktonic bacterial count, and concentrations of sulphide, sulphate, iron, calcium and magnesium ions in the solution were measured. After the experim
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Chamritski, I. G., G. R. Burns, B. J. Webster, and N. J. Laycock. "The Influence of Iron Oxidizing Bacteria on Corrosion of Stainless Steel." In CORROSION 2001. NACE International, 2001. https://doi.org/10.5006/c2001-01254.

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Abstract Microbiologically Influenced Corrosion (MIC) of stainless steel can be caused by the action of Iron Oxidizing Bacteria (IOB) in relatively low chloride waters. One effect of the IOB can be simulated by oxidising ferrous sulphate solution to cause precipitation of a ferric oxide (or hydroxide) deposit, and then drying the precipitated film on to a stainless steel surface. This process may also replicate cooling water treatment of iron-containing waters. In-situ Raman spectroscopy has been used to characterise the deposited film, which is shown to be mainly FeOOH at open-circuit, but is
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De Turris, Antonio, Matilde de Romero, Sankara Papavinasam, and Lisseth Ocando. "Synergistic Effect of Sulphate-Reducing Bacteria and CO2 on the Corrosion of Carbon Steel and Chemical Treatment to Control it." In CORROSION 2014. NACE International, 2014. https://doi.org/10.5006/c2014-3749.

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Abstract The combined effect of sulphate-reducing bacteria (SRB) and CO2 on the corrosion of carbon steel in produced water were investigated using a rotating cage. During the experiment, pH, planktonic SRB, and concentrations of sulphide, sulphate, iron, calcium and magnesium ions were monitored. After the experiment, the sessile SRB were enumerated by serial dilution and optical microscopy, scanning electron microscopy, mass loss and laser profilometry were used to identify corrosion products, bacterial cell and corrosion rate. Both mass loss and localized pitting corrosion were two and thre
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De Turris, Antonio, Matilde de Romero, Sankara Papavinasam, and Rolando Lastra. "Effect of SRB, CO2, Crude Oil and Chemical Treatment on the Corrosivity of Synthetic Produced Water." In CORROSION 2013. NACE International, 2013. https://doi.org/10.5006/c2013-02213.

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Abstract The combined effect of sulphate-reducing bacteria (SRB), CO2 and crude oil on the corrosion of carbon steel in produced water were investigated using a rotating cage. During the experiment, pH, planktonic SRB, and concentrations of sulphide, sulphate, iron, calcium and magnesium ions were monitored. After the experiment, the sessile SRB were enumerated by serial dilution and optical microscopy, scanning electron microscopy, mass loss and laser profilometry were used to identify corrosion products, bacterial cell and corrosion rate. Both mass loss and localized pitting corrosion were t
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de Romero, Matilde F., Lisseth Ocando, Oladis de Rincón, Adriana Vílchez, Nelson Rincón, and Carvid Henríquez. "Online Monitoring System of MIC by SRB on Carbon Steel in Water Injection Plants." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01484.

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Abstract The produced water used in water injection plants for the secondary oil recovery typically has high concentrations of chlorides, sulphates, iron and microorganisms, mainly Sulphate-Reducing Bacteria (SRB). As it is known, these kinds of bacteria produce microbiologically influenced corrosion (MIC) which is developed as sulphidric corrosion due to the production of H2S. For these reasons, the evaluation of the aggressiveness of this water by installing an online monitoring system that simulates the real conditions of the pipelines was considered, performing at the same time the measure
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Al-Hashem, A., M. Salman, and J. Carew. "Screening and Evaluation of Microbiologically Influenced Corrosion (MIC) in Seawater and Effluent Water Injection Systems in Kuwait." In CORROSION 1999. NACE International, 1999. https://doi.org/10.5006/c1999-99182.

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Abstract Injection water sources in Kuwait range from brackish water (TDS=4000 mg/l) through seawater (TDS = 30,000 mg/l) to high saline brines (TDS = 200,000 mg/l). Some of these water sources are highly sulphide sour and may require treatment to prevent scaling, corrosion or iron sulphide precipitation. Another particular problem in water injection systems is the uncontrolled growth of sulphate-reducing bacteria (SRB) which leads to increased corrosion of the process plant. Therefore, evaluation schemes were undertaken to study the relative risks of MIC in a range of Kuwait's water sources,
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10

Pomeroy, M. J., A. Farhat, and P. McHale. "Laboratory Studies of the Corrosion of Nickel - Based Alloys by Pure Calcium Sulphate - Influence of Environmental Factors." In CORROSION 1998. NACE International, 1998. https://doi.org/10.5006/c1998-98192.

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Abstract Several nickel - based alloys and, for comparison purposes, iron - and cobalt - based alloys have been coated with 8 - 10μm Analar calcium sulphate and exposed in three types of external environments at a temperature of 850°C. Results from experiments in which the coated coupons were totally immersed in lightly compacted Analar - grade calcium sulphate powder and exposed in air for 144 hours showed that they underwent sulphidation - oxidation corrosion. Control experiments with no coating resulted in the formation of oxides alone, confirming that the presence of a compact calcium sulp
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Reports on the topic "Iron sulphate"

1

de Bruijn, T. J. W., D. D. S. Liu, and J. D. Chase. Upgrading of interprovincial pipeline vacuum bottoms using demonstration plant iron sulphate/HGO additive. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1988. http://dx.doi.org/10.4095/304391.

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2

Liu, D. D. S., P. L. Sears, and W. H. Dawson. Hydrocracking of IPPL vacuum bottoms using coarse iron sulphate particles as additive: runs 86-CG-222 to 226. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1988. http://dx.doi.org/10.4095/304420.

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3

Liu, D. D. S., P. L. Sears, and W. H. Dawson. Hydrocracking of IPPL vacuum tower bottoms using iron sulphate additive prepared at the CANMET demonstration plant: runs 86 - CG - 227 to 231. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1988. http://dx.doi.org/10.4095/304429.

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4

Gross, G. A., D. Brisbin, V. Kelley, R. Cook, and P. Roos. Iron - Formation and Sulphide Stratafer Sediments in the Timmins and Kidd Creek area. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132346.

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5

Pilote, J. L., S E Jackson, P. Mercier-Langevin, et al. Fingerprinting ore processes in orogenic auriferous systems: insights into metallogenic and exploration implications from argillite-hosted iron sulphide nodules from the Timmins-Matheson gold corridor. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2020. http://dx.doi.org/10.4095/323675.

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