Academic literature on the topic 'PH Value Measurement'

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Journal articles on the topic "PH Value Measurement"

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MARUYAMA, Hisataka, and Fumihito ARAI. "Fluorescent pH Measurement without Initial pH Value Using Reference Sensor for Local Environment Measurement." Abstracts of the international conference on advanced mechatronics : toward evolutionary fusion of IT and mechatronics : ICAM 2021.7 (2021): OS1–1. http://dx.doi.org/10.1299/jsmeicam.2021.7.os1-1.

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Chiang, Chia Chin, Cheung Hwa Hsu, and Chao Hui Ou. "pH Value Detection with CLPFG Sensor." Applied Mechanics and Materials 284-287 (January 2013): 2157–61. http://dx.doi.org/10.4028/www.scientific.net/amm.284-287.2157.

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Detection of pH value plays an important role in many fields; the precise measurement of pH value is very useful in Living systems, Chemistry and Biochemistry. The purpose of this paper is to measure pH value in solution by using Corrugated Long Period Fiber Grating (CLPFG). The CLPFG element is highly sensitive to refractive index changes, and with appropriate design geometry; a variety of target molecules can then be detected. Optical fiber Corrugated Long Period Gratings are designed to act as spectral loss elements that couple with a discrete wavelength out of the optical fiber as a functi
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Basri, Muhammad, and Joi Alfreddi Surbakti. "Rancang Bangun Akuarium Portable Menggunakan Teknologi Internet Of Things Untuk Budidaya Ikan Hias." Jurnal Teori dan Aplikasi Fisika 11, no. 01 (2023): 47–54. http://dx.doi.org/10.23960/jtaf.v10i2.3146.

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Portable aquarium designed with an automation system for controlling pH levels and temperature information. pH levels are measured using a pH sensor E-201-C and temperature is measured with a DS18B20 sensor. The pH control process is carried out by adding liquid pH up and pH down and is realized with a solenoid valve. The purpose of making this portable aquarium is to control the pH value of the water in the aquarium and provide information about the water temperature. Into this portable aquarium system have been inputted standard values of pH and temperature for each type of fish. This system
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Zhao, Xue Liang, Yun Shi, Kang Li, and Guang Hua Wei. "Research of pH Value Temperature Compensation Module Based on the Least Squares Method." Advanced Materials Research 945-949 (June 2014): 2121–25. http://dx.doi.org/10.4028/www.scientific.net/amr.945-949.2121.

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The high precise pH automatic monitoring measurement is designed based on MSC1210 MCU and pH sensor. To eliminate the effect of temperature on the measurement results, a pH value temperature compensation module is established using the least Squares Method to analyze the linear relationship between pH and voltage. The results show that, the automatic monitoring measurement possesses broad application prospects with the advantages of ultra-low power consumption, good stability and high precision.
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Souza, V., Alberto Pires Ordine, I. C. S. Fraga, et al. "Effect of NaCl and HCl concentrations on primary pH measurement for the certification of standard materials." Brazilian Archives of Biology and Technology 49, spe (2006): 79–86. http://dx.doi.org/10.1590/s1516-89132006000200013.

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pH is an important parameter to control the production of food, medicine, petrochemical products and others. Thus, standard reference materials used to calibrate pH meters are necessary to guarantee reliability of the measurements. The Chemical Metrology Division (Dquim) of the National Metrology Institute of Brazil (Inmetro) has as one of its missions the certification of standard reference materials. In the case of pH, it will be done by the pH primary measurement system of Inmetro, in operation at Dquim since 2003. The buffer solution of nominal pH value equal to 6.865 will be the first to
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KITANO, Hiroshi, and Hideki UCHIYAMA. "Precise measurement of pH value of equimolal phosphate buffer solution." Bunseki kagaku 35, no. 12 (1986): T130—T135. http://dx.doi.org/10.2116/bunsekikagaku.35.12_t130.

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Zulfikar, Zulfikar, Munawarah Munawarah, and Tholib Hariono. "Test of Land Potential Sensor Tools Based on Biomass on Measurements of Temperature, Moisture, and Soil pH and Their Relationship to the Biomass Values in Marginal Land." BIO Web of Conferences 91 (2024): 01027. http://dx.doi.org/10.1051/bioconf/20249101027.

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This research aims to test the accuracy of biomass-based land potential sensor devices. The indicators tested were the results of measurements of growing environmental conditions including temperature, humidity and soil pH, as well as measurements of tree biomass. The analysis technique is carried out in 2 stages, namely the comparative measurement test stage and the biomass calculation application test in the field. The research results show that the average measurement of pH = 5.7493, humidity = 88.0616% and temperature = 27.016ºC is generally not significantly different at the 95% t-confide
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Geffert, Anton, Jarmila Geffertova, and Michal Dudiak. "Direct Method of Measuring the pH Value of Wood." Forests 10, no. 10 (2019): 852. http://dx.doi.org/10.3390/f10100852.

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A direct method of measuring the pH value of wood substance is proposed in the paper. The achieved results were completed by determining the pH value on the wood surface using the contact method. Moreover, the results were compared to the results achieved using the indirect methods to determine the pH value in cold water, as well as hot water, extract of wood. Using the direct method for measuring the pH value in drilled fresh sawdust, the pH value of beech was 5.11, of birch was 5.29, of alder was 4.88, and of maple was 4.65. Following the achieved results, the possibility to measure the pH v
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Louis, K. C., S. H. F. W. Abdul Hamid, R. Raffay, and A. F. Omar. "Specialized Colorimeter for Phenol red pH Measurement." Journal of Physics: Conference Series 2411, no. 1 (2022): 012020. http://dx.doi.org/10.1088/1742-6596/2411/1/012020.

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Abstract The phenol red is commonly used in cell culture medium as visual pH indicator by changing its color from darker red color to the orange-yellowish color as the pH is changing from neutral to acidic level. The color change of phenol red is hardly to be determined by using naked eyes that will be interpreted differently by different person. Thus, this study is executed to develop a specialized colorimeter for phenol red pH measurement by using Raspberry Pi as a microcontroller unit, green LED as a light source and photodiode in tandem with capacitor as a light sensor. The Raspberry Pi ca
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Lilia wati dewi pratami, Her Gumiwang Ariswati, and Dyah Titisari. "Effect of Temperature on pH Meter Based on Arduino Uno With Internal Calibration." Journal of Electronics, Electromedical Engineering, and Medical Informatics 2, no. 1 (2020): 23–27. http://dx.doi.org/10.35882/jeeemi.v2i1.5.

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pH Meter is a device used to express the level of acidity or basicity possessed by a substance or solution. Normal pH has a value of 7 while the pH value> 7 indicates that the substance has alkaline properties while the pH value <7 indicates acidic properties. pH 0 shows a high degree of acidity, and pH 14 shows the highest degree of alkalinity. pH Meter reads the pH and temperature values ​​in a sample. The author uses glass electrodes as a pH sensor, DS18B20 as a temperature sensor and LCD to make pH and temperature values. This module is equipped with an internal calibration that is u
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Dissertations / Theses on the topic "PH Value Measurement"

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Müller, Jan. "Kondenzační technika a odvody spalin." Master's thesis, Vysoké učení technické v Brně. Fakulta stavební, 2014. http://www.nusl.cz/ntk/nusl-226844.

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This thesis is developed as a proposal for heating for a primary school and kindergarten in the region of Brno-countryside. For the insulated building, a combination of heating and air-conditioning is proposed. The concept is designed so that the air-conditioning preheats the exterior air and the heating system warms the incoming air to a comfortable temperature. For the required thermal performance, sources of heat (for gas and pellets) and a layout solution for the boiler room is designed. Drainage of combustion products is proposed for both solutions. The project solution is per the extent
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Stippl, Volker Michael [Verfasser]. "Optical in-situ measurement of the pH-value during high pressure treatment of fluid food / Volker Michael Stippl." 2005. http://d-nb.info/978146468/34.

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Book chapters on the topic "PH Value Measurement"

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Wunderli, Samuel. "Combined Measurement Uncertainty for pH-Values Using Certified Reference Materials in Potentiometric Measurements with Glass Electrodes." In Reference Materials in Measurement and Technology. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-32534-3_23.

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Böhm, Stefanie, Solvig Diederichs, Thomas Scheper, Martijn van Griensven, and Cornelia Kasper. "Online Measurement of pH and O2 Values During Mechanical Stimulation of Cells." In Proceedings of the 21st Annual Meeting of the European Society for Animal Cell Technology (ESACT), Dublin, Ireland, June 7-10, 2009. Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-94-007-0884-6_89.

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Slavik, Jan. "Application of Red Fluorescent Probes for the Measurement of Individual Cell Cytoplasmic PH Values." In Near-Infrared Dyes for High Technology Applications. Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-011-5102-3_5.

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Kallinowski, Friedrich, and Peter Vaupel. "Concurrent Measurements of O2 Partial Pressures and pH Values in Human Mammary Carcinoma Xenotransplants." In Oxygen Transport to Tissue VIII. Springer US, 1986. http://dx.doi.org/10.1007/978-1-4684-5188-7_74.

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Uchida, Hiroshi, Akihiko Murata, Masahide Wakita, et al. "Development of Multiparametric Standard Seawater (MSSW) for CO2 Parameters, Dissolved Oxygen, and Density of Seawater." In Springer Oceanography. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-2520-8_12.

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Abstract Multiparametric Standard Seawater (MSSW) is being developed based on the technology used to manufacture the reference material for nutrients in seawater (RMNS), without adding mercuric chloride to sterilize it, but by adopting aluminum bottles and plastic inner caps with high impermeability to gas and water vapor. The history, current status, and future plans for the development of MSSW for measurements of Practical Salinity, density, dissolved inorganic carbon, total alkalinity, pH, dissolved oxygen (DO), and dissolved organic matter are discussed. Substances that interfere with the
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Kiani, Mohammad Javad, M. H. Shahrokh Abadi, Meisam Rahmani, et al. "Carbon Materials Based Ion Sensitive Field Effect Transistor (ISFET)." In Handbook of Research on Nanoelectronic Sensor Modeling and Applications. IGI Global, 2017. http://dx.doi.org/10.4018/978-1-5225-0736-9.ch013.

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Graphene and SWCNT-based Ion Sensitive FET (ISFET) as a novel material with organic nature and ionic liquid gate is intrinsically sensitive to pH changes. pH is an important factor in enzymes stabilities which can affect the enzymatic reaction and broaden the number of enzyme applications. More accurate and consistent results of enzymes must be optimized to realize their full potential as catalysts accordingly. In this chapter, an appropriate structure to ISFET device is designed for the purpose of electrical measurement of different pH buffer solutions. Electrical detection model of each pH v
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Hibbert, D. Brynn. "Introduction to Quality in the Analytical Chemistry Laboratory." In Quality Assurance in the Analytical Chemistry Laboratory. Oxford University Press, 2007. http://dx.doi.org/10.1093/oso/9780195162127.003.0005.

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To understand quality of chemical measurements, one needs to understand something about measurement itself. The present edition of the International Vocabulary of Basic and General Terms in Metrology (ISO 1993, term 2.1) defines a measurement as a “set of operations having the object of determining a value of a quantity.” Quantity is defined as an “attribute of a phenomenon, body or substance that may be distinguished qualitatively and determined quantitatively” (ISO 1993, term 1.1). Typical quantities that a chemist might be interested in are mass (not weight), length, volume, concentration,
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Sposito, Garrison. "Exchangeable Ions." In The Chemistry of Soils. Oxford University Press, 2016. http://dx.doi.org/10.1093/oso/9780190630881.003.0013.

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In Section 3.4, the cation exchange capacity, or CEC, of particulate soil humus is defined as the maximum number of moles of proton charge per kilogram that can be desorbed by a metal cation under prescribed conditions. Thus, CEC for particulate humus is equal to the maximum absolute value of the negative net proton charge. Operationally, this maximum value is measured typically as the surface excess of Ba2+ adsorbed by humus at pH 8.2 (Eq. 3.5). Extending this concept to soils, one can define the CEC as the maximum number of moles of readily exchangeablemetal cation charge per unit mass of dr
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Buckee, G. K., M. Mom, J. W. S. Nye, and R. V. Hammond. "Measurement and significance of oxidation-reduction levels in beer." In European Brewery Convention. Oxford University PressOxford, 1997. http://dx.doi.org/10.1093/oso/9780199636907.003.0072.

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Abstract Conflicting views have been expressed in the literature concerning the measurement and significance of oxidation-reduction (redox) potentials in the brewing process. Causes of hitherto unstable measurements and parameters influencing redox values have been identified. A measuring cell has been developed which consists of a pH electrode and two platinum electrodes connected to a millivoltmeter. The second platinum electrode facilitates electrolytic cleaning and electrode polarization. Redox values can be correlated with dissolved oxygen levels and physical stability of packaged beer. O
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Stockdale, Elizabeth, Paul Hargreaves, and Anne Bhogal. "Developing soil health indicators for improved soil management on farm." In Advances in measuring soil health. Burleigh Dodds Science Publishing, 2021. http://dx.doi.org/10.19103/as.2020.0079.22.

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A range of chemical, physical and biological processes are important for sustained productivity and environmental quality in agricultural systems. Farmers and scientists share a concern with soil health, and this leads to questions for both measurement and management. An essential step is to define the context and the key functions required of a soil at the scale of interest (e.g. farm, drinking water catchment, region). Only then can appropriate indicator measurements be selected. Current soil health frameworks across the world commonly use organic matter (carbon), pH, extractable phosphorus,
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Conference papers on the topic "PH Value Measurement"

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Attarchi, Mehdi, Marco Ormellese, and Andrea Brenna. "pH Measurement During Cathodic Protection and DC Interference." In CORROSION 2021. AMPP, 2021. https://doi.org/10.5006/c2021-16766.

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Abstract The increase of pH at the cathode-to-electrolyte interface is a recognized chemical effect due to cathodic protection. The alkalinity formed in cathodic protection could also reduce the corrosive effect of DC non-stationary anodic interference. In the present study, pH variations during cathodic protection and DC non-stationary anodic interference are recorded using a new arrangement of the sample-pH probe and a sufficiently fast pH logger. The test was carried out on low carbon steel immersed in simulated soil solution. As expected, the pH increases during the application of cathodic
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Sue, Kiwamu, Toshihiko Hiaki, Fumiaki Ouchi, and Kunio Arai. "Potentiometric pH Measurement of Supercritical Aqueous Solutions with an Electrochemical Microcell." In CORROSION 2007. NACE International, 2007. https://doi.org/10.5006/c2007-07402.

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Abstract An electrochemical microcell was recently developed for potentiometric pH measurements of supercritical aqueous solutions [K. Sue et al., J. Supercrit. Fluids, 39, 271(2006)]. It has an internal volume of ca. 1.5 cm3 and a surface area of an electrode of 0.04 cm3. These values are around one order of magnitude lower than that of previous apparatus [K. Sue et al., ibid. 28, 287(2004)]. The decrease in cell volume allows more reliable pH measurements of several compounds including unstable organic acids. With the newly-designed cell, pH measurements were carried out for HCl+NaCl aqueous
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Wang, Shuisheng, and S. A. Bradford. "Potentiodynamic Polarization Measurement by Controlling Potential inside a Crevice." In CORROSION 1992. NACE International, 1992. https://doi.org/10.5006/c1992-92211.

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Abstract Cyclic potentiodynamic polarization measurements have been made by either controlling the potential inside or outside a crevice. The significant difference between placing a reference electrode inside and outside a crevice is that the reference electrode inside a crevice much better controls the potential to simulate electrochemical characteristics of crevice corrosion. The pH variation over the cyclic polarization curve was also recorded and indicates that the initiation of crevice corrosion is not due to the pH decrease to a critical value during this accelerated crevice corrosion p
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Hall, Jane, and Glenn Hollins. "Corrosion Rate Measurement Using Electrochemical Technique." In CORROSION 2016. NACE International, 2016. https://doi.org/10.5006/c2016-07841.

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Abstract This paper will present a detailed study on corrosion current and corrosion behavior using electrochemical technique. The corrosion rates of different alloys and metals in a test liquid of blow down water collected from an oil field boiler were measured. The working electrode was made from the alloy/metal material using a cold mount epoxy and the corrosion rates of the alloys/metals were compared. The effects of a corrosion inhibitor and pH value on the corrosion behavior were investigated. The electrochemical method provided reproducible test results and a time efficient way for corr
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Li, R., and M. G. S. Ferreira. "Mechanism of Hydrogen Generation in the Stress Corrosion Crack." In CORROSION 1995. NACE International, 1995. https://doi.org/10.5006/c1995-95172.

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Abstract Based on the mass transport in the stress corrosion crack, a mathematical expression of potential distribution along the stress corrosion crack is deduced. From this mathematical expression and the E-pH diagram for H2O, a new mechanism for hydrogen generation in the stress corrosion crack i.e. H+ partial potential drop mechanism, is proposed. Following this mechanism, the relationship between hydrogen generation and affecting factors, such as current density of anodic dissolution inside the crack, pH value, partial resistivity of H+ ion, dimension of the crack and potential of the met
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Lu, B. T. "Prediction of Crack Growth in Buried Pipelines Undergoing High pH SCC Using a Science-Based Model." In CORROSION 2014. NACE International, 2014. https://doi.org/10.5006/c2014-3617.

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Abstract The new crack growth model developed in Part I is applied to predict the crack growth behavior of pipelines for the gas or liquid transportation, based on the typical parameters of environments, loading spectra and crack geometry that were reported from field survey. In accord with the model, the effect of environmental changes can be assessed with the anodic current density over the bare metal surface (ia*) which can be determined from the potentiodynamic measurement with a potential-scanning rate 1 V/min. It is found that the predictions based on the mean value of ia* determined fro
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Bjegović, Dubravka, Jessica Jackson Meyer, Dunja Mikulić, and Dalibor Sekulić. "Corrosion Measurement in Concrete Utilizing Different Sensor Technologies." In CORROSION 2003. NACE International, 2003. https://doi.org/10.5006/c2003-03435.

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Abstract Degradation of concrete structures due to corrosion of embedded steel reinforcement is an important problem with regards to durability and safety, with great economical consequences. One method for corrosion prevention is the application of corrosion inhibitors. Corrosion inhibitors can be applied as additives to new concrete during the batching process, or surface applied to existing concrete structures. This paper gives an overview of existing sensor technologies, previews new technologies, and proposes suitable methods for corrosion monitoring and inhibitor efficiency investigation
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Griffiths, A. J., and A. Turnbull. "Preliminary Investigation of Hydrogen Uptake and Cracking in 22 Cr Duplex Stainless Steel under Galvanic Coupling Conditions." In CORROSION 1996. NACE International, 1996. https://doi.org/10.5006/c1996-96072.

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Abstract Tests have been conducted to evaluate the performance of 22 Cr duplex stainless steel coupled to carbon-steel in acid brine environments at 80 °C with and without H2S. Measurement of coupled potentials and currents were made in parallel with a detailed evaluation of the effects of H2S, pH and coupling current on hydrogen uptake. Hydrogen contents generated under coupling conditions are large, of the order of 100 ppm (wt.) (total hydrogen). At low charging currents, hydrogen uptake was independent of pH and H2S and proportional to the square root of the charging current density, i½. As
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Kushida, T., T. Kudo, I. Takeuchi, M. Nishizawa, A. Tamoto, and I. Sakaguchi. "Effect of Environmental and Metallurgical Factors on Full Ring Test." In CORROSION 1994. NACE International, 1994. https://doi.org/10.5006/c1994-94067.

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Abstract The "full ring" test has been recently developed as an intermediate type of test between small coupon tests and full scale testing under internal pressure in order to evaluate a linepipe for sour service conveniently. Factors of this test and their effects on test conditions or results have been Investigated in order to characterize the full ring test. The electrochemical hydrogen permeation measurement was effective to quantify the effects of environmental factors on test conditions. The hydrogen permeation coefficient (JxL) through a tested pipe was affected by not only pH and H2S c
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Sakai, Jun-ichi, Shuji Hashizume, Yoshiro Kuriki, Yutaka Naganawa, Motokiyo Itoh, and Iwao Matsushima. "Corrosion Resistance of Duplex Stainless Steel and Its Weldment of Pipeline Service." In CORROSION 1987. NACE International, 1987. https://doi.org/10.5006/c1987-87292.

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Abstract Corrosion resistance of duplex stainless steel has been studied with particular attention to pitting corrosion and stress corrosion cracking. Pitting corrosion resistance was established by immersion test in ferric chloride solution and pitting potential measurement in chloride, hydrogen sulfide environments. The corrosion potential is always less noble than the pitting potential and the difference between the two potentials becomes smaller with lowering of pH, and with increasing of the H2S partial pressure, temperature and chloride concentration. Similar to the base metal, pitting c
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Reports on the topic "PH Value Measurement"

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Carranza, R., and R. Rebak. Notes on the Measurement of pH Values. Office of Scientific and Technical Information (OSTI), 2005. http://dx.doi.org/10.2172/15016344.

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Wright, Wendy, M. Gregory, and Aaron Rinehart. Fixed station water quality monitoring at Cape Hatteras National Seashore: 2010 data summary. National Park Service, 2012. https://doi.org/10.36967/2190306.

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In 2005 the National Park Service (NPS) Southeast Coast Network (SECN) Inventory and Monitoring Program began collecting water-quality data in the estuarine waters near Cape Hatteras National Seashore (CAHA) as part the NPS Vital Signs monitoring program. The continuous monitoring data station is located at a dock at the Ocracoke Village boat ramp. This station collects pH, dissolved oxygen, temperature, salinity, conductivity, turbidity and water level data every 30 minutes. Additional water quality measurements are made by SECN staff and include monthly measurements of water clarity conditio
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Wright, Wendy, M. Gregory, and Aaron Rinehart. Fixed-station water quality monitoring at Fort Pulaski National Monument: 2011 data summary. National Park Service, 2012. https://doi.org/10.36967/2190461.

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In 2006 the National Park Service (NPS) Southeast Coast Network (SECN) Inventory and Monitoring Program began collecting water-quality data in the estuarine waters near Fort Pulaski National Monument (FOPU) as part the NPS Vital Signs monitoring program. The continuous monitoring data station is approximately 1.5 kilometers south of the Fort entrance at a dock on Lazaretto Creek just upstream of its confluence with the Savannah River. This station collects pH, dissolved oxygen, temperature, salinity, conductivity, turbidity and water level data every 30 minutes. Additional water quality measur
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Rinehart, Aaron, Wendy Wright, and M. Gregory. Fixed-station water-quality monitoring at Congaree National Park: Data Summary 2012. National Park Service, 2013. https://doi.org/10.36967/2195210.

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In 2006 Congaree National Park (CONG), in conjunction with the Southeast Coast Network (SECN) Inventory and Monitoring Program, began collecting water-quality data at Cedar Creek as part the NPS Vital Signs Monitoring Program. The continuous-monitoring data station is located approximately one mile south of the visitor center and collects water temperature, dissolved oxygen, pH, specific conductance, turbidity and water-level data every 30 minutes. This publication summarizes data collected from January 1, 2012 to December 31, 2012. The CONG fixed-station water-quality monitoring site is part
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Wright, Wendy, M. Gregory, and Aaron Rinehart. Fixed-station water quality monitoring at Cumberland Island National Seashore: 2011 data summary. National Park Service, 2012. https://doi.org/10.36967/2190432.

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In 2006, the National Park Service (NPS) Southeast Coast Network (SECN) Inventory and Monitoring Program began collecting water-quality data in the estuarine waters near Cumberland Island National Seashore (CUIS) as part the NPS Vital Signs monitoring program. The CUIS station collected pH, dissolved oxygen, temperature, salinity, conductivity, turbidity and waterlevel data. Additional water-quality measurements were made by SECN staff and include monthly measurements of water clarity conditions, nutrients (total dissolved phosphorus [TDP] and total dissolved nitrogen [TDN]), and chlorophyll a
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Rinehart, Aaron, Wendy Wright, and M. Gregory. Fixed-station water-quality monitoring at Congaree National Park: Data summary 2010. National Park Service, 2013. https://doi.org/10.36967/2194575.

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In 2006 Congaree National Park (CONG), in conjunction with the Southeast Coast Network (SECN) Inventory and Monitoring Program, began collecting water-quality data at Cedar Creek as part the NPS Vital Signs Monitoring Program. The continuous monitoring data station is located approximately one mile south of the visitor center and collects water temperature, dissolved oxygen, pH, specific conductance, turbidity and water-level data every 30 minutes. This publication summarizes data collected from January 1, 2010 to December 31, 2010. Information collected by this monitoring program may be used
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Gregory, M., Aaron Rinehart, and Wendy Wright. Fixed-station water-quality monitoring at Fort Pulaski National Monument: 2012 data summary. National Park Service, 2013. https://doi.org/10.36967/2195213.

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In 2006 the National Park Service (NPS) Southeast Coast Network (SECN) Inventory and Monitoring Program began collecting water-quality data in the estuarine waters near Fort Pulaski National Monument (FOPU) as part the NPS Vital Signs monitoring program. The continuous monitoring data station is approximately 1.5 kilometers south of the Fort entrance at a dock on Lazaretto Creek just upstream of its confluence with the Savannah River. This station collects pH, dissolved oxygen, water temperature, salinity, specific conductance, turbidity and water level data every 30 minutes. Additional water-
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Gregory, M., Aaron Rinehart, and Wendy Wright. Fixed-station water-quality monitoring at Congaree National Park: Data Summary 2011. National Park Service, 2012. https://doi.org/10.36967/2193850.

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In 2006 Congaree National Park (CONG), in conjunction with the Southeast Coast Network (SECN) Inventory and Monitoring Program, began collecting water-quality data at Cedar Creek as part the NPS Vital Signs Monitoring Program. The continuous monitoring data station is located approximately one mile south of the visitor center and collects water temperature, dissolved oxygen, pH, salinity, specific conductance, turbidity and water-level data every 30 minutes following the methods of Wenner and Geist (2001). This publication summarizes data collected from January 1, 2011 to December 31, 2011. Th
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Tengamnuay, Parkpoom, Achariya Sailasuta, and Garnpimol C. Ritthidej. Efficacy and mechanistic studies of chitosan as nasal absorption enhancer of peptide drugs. Chulalongkorn University, 1998. https://doi.org/10.58837/chula.res.1998.21.

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Objective: To evaluate the safety and efficacy of chitosan (CS) as nasal absorption enhances of peptides. Methods: Two types of chitosans, i.e. CS J (free amine chitosan) and CD G (water-soluble glutamate salt), were evaluate for their masal absorption enhancing effectd on L-Tyr-D-Arg([D-Arg[square]]-Kyotorphic), an enzymatically stable dipeptide, using an in situ rat nasal perfusion technique. The two chitosans were subsequently studies for their possible membrane damaging effects based on measurements of releases mucosal components and histological evaluation. Results: At 0.5% w/v, both CS J
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Delwiche, Michael, Boaz Zion, Robert BonDurant, Judith Rishpon, Ephraim Maltz, and Miriam Rosenberg. Biosensors for On-Line Measurement of Reproductive Hormones and Milk Proteins to Improve Dairy Herd Management. United States Department of Agriculture, 2001. http://dx.doi.org/10.32747/2001.7573998.bard.

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The original objectives of this research project were to: (1) develop immunoassays, photometric sensors, and electrochemical sensors for real-time measurement of progesterone and estradiol in milk, (2) develop biosensors for measurement of caseins in milk, and (3) integrate and adapt these sensor technologies to create an automated electronic sensing system for operation in dairy parlors during milking. The overall direction of research was not changed, although the work was expanded to include other milk components such as urea and lactose. A second generation biosensor for on-line measuremen
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