Academic literature on the topic 'Barmer Bentonite - Physico-Chemical Properties'

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Journal articles on the topic "Barmer Bentonite - Physico-Chemical Properties"

1

Takoo, R. K., and B. R. Patel. "Physico-Chemical Properties of Kutch Bentonite." Crystal Research and Technology 21, no. 1 (1986): 141–44. http://dx.doi.org/10.1002/crat.2170210134.

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2

Torikai, Yuji, Seichi Sato, and Hiroshi Ohashi. "Physico-Chemical Properties of Water in Bentonite." Journal of Nuclear Fuel Cycle and Environment 1, no. 1 (1994): 85–90. http://dx.doi.org/10.3327/jnuce.1.85.

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Randjelovic, Marjan, Milovan Purenovic, Aleksandra Zarubica, Igor Mladenovic, Jelena Purenovic, and Milan Momcilovic. "Physico-chemical characterization of bentonite and its application for Mn2+ removal from water." Chemical Industry 65, no. 4 (2011): 381–87. http://dx.doi.org/10.2298/hemind110322029r.

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Bentonite is mainly composed of clay minerals from smectite group, therefore it has a well developed and chemically active surface area and high cation exchange capacity. Moreover, an interlayer space of smectite has unusual hydration properties, which manifest as swelling of bentonite in water. These properties make bentonite as a commonly used raw material in chemistry and industry, and it is very important in environmental protection and water treatment as an effective sorbent of heavy metals. The results of X-ray diffraction, a cationic exchange capacity, specific surface area, acid-base p
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4

Stojiljkovic, S., V. Miljkovic, G. Nikolic, et al. "The influence of the addition of polymers on the physico-chemical properties of bentonite suspensions." Science of Sintering 46, no. 1 (2014): 65–73. http://dx.doi.org/10.2298/sos1401065s.

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Bentonite clays have many applications in industries ranging from construction to cosmetics. Addition of polymers can profoundly influence the properties of bentonite suspensions and we now describe the influence of a range of different polymers. Whereas polyvinyl pyrolidone and soy isolate only slightly influenced the pH and the electrical conductivity of bentonite polymers in suspension, Carbopol solution caused decreases in both pH and electrical conductivity. As expected, strong electrolytes like sodium chloride caused big changes in the electrical conductivity of the suspensions. When the
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В. Х., Межидов,, Дадашев, Р. Х., Гацаев, З. Ш., and Галанина, Н. А. "PHYSICO-CHEMICAL PROCESSES DURING THE SYNERESIS OF BENTONITE HYDROGEL." Вестник ГГНТУ. Технические науки, no. 3(29) (October 24, 2022): 82–89. http://dx.doi.org/10.34708/gstou.2022.72.56.009.

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Структура, состав и свойства бентонита зависят от месторождения. Нами проведены экспериментальные исследования синерезиса с использованием бентонита ЧР. В опытах экспериментально определяли объем синеретической жидкости, которая выделялась при синерезисе, в зависимости от следующих факторов: концентраций бентонита; содержания электролита KCl; продолжительности действия ультразвука. В результате проведенных опытов установлено, что бентонит ЧР относится к группе коллоидов, понижающих синеретическую жидкость. Измельчение частиц бентонита под действием ультразвука приводит к значительному увеличен
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Feriancová, A., A. Dubec, J. Pagáčová, I. Labaj, and M. Pajtášová. "The influence of silane on the physico-mechanical properties of vulcanizates using bentonite fillers." IOP Conference Series: Materials Science and Engineering 1199, no. 1 (2021): 012040. http://dx.doi.org/10.1088/1757-899x/1199/1/012040.

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Abstract Layered phyllosilicate fillers have received attention in the polymer industry due to their unique nanoscale sheet-like structure. Adding a small amount of bentonite nanofiller gives rise to improved mechanical, thermal, and gas barrier properties of rubber mixtures. Depending on the application, natural bentonite is often modified by physical processes or by chemical processes (intercalation, cation exchange process, functionalization, pillaring, etc.). Chemical modification increases the size of the interlayer spaces and provides a hydrophobic environment. Functionalization (e.g., s
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7

Mukherjee, A. K., M. M. Alam, S. K. Mazumdar, R. Haque, and S. Gowrisankaran. "Physico-chemical properties and petrographic characteristics of the Kapurdi lignite deposit, Barmer Basin, Rajasthan, India." International Journal of Coal Geology 21, no. 1-2 (1992): 31–44. http://dx.doi.org/10.1016/0166-5162(92)90034-t.

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8

Buntin, Artem E. "Influence of Nano-Modification on Structural, Mechanical and Physico-Chemical Characteristics of Bentonite." Solid State Phenomena 316 (April 2021): 34–39. http://dx.doi.org/10.4028/www.scientific.net/ssp.316.34.

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The paper studies the influence of nanodispersed aluminum and silicon oxides on the structural, physico-chemical and mechanical characteristics of calcium-magnesium bentonite deposits of the Republic of Tatarstan, in order to determine the optimal concentrations of the nanomodifier, and to improve the performance of respective materials. It was found that nanomodification of bentonite increases the strength of samples after firing by more than 1,5 times, the adsorption index by 20–25 %. The optimal concentration of nanoparticles was determined by changing the properties. The methods of Brunaue
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9

Pajtášová, Mariana, Robert Janík, Darina Ondrušová, Petra Skalková, Andrea Feriancová, and Silvia Ďurišová. "The Influence of Selected Physico-Chemical Factors on Physico-Mechanical Properties of Studied Vulcanizates." MATEC Web of Conferences 357 (2022): 07003. http://dx.doi.org/10.1051/matecconf/202235707003.

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The focus of the presented study was set on the influence of physico-chemical factors on the physico-mechanical properties of the investigated vulcanizates containing carbon black filler substitution by mixing alternative fillers. Relating to the alternative partial substituents of fillers, the fine fractions of bentonite, polylactide, polypropylene and coffee grounds have been chosen. The prepared vulcanizates were exposed to various environment conditions which were based namely on DCSBD, plasma discharge (Diffuse Coplanar Surface Barrier Discharge), organic solvent and fungus extract of Pip
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Onalbek, G., B. Askapova, K. Musabekov, and K. Vasin. "INVESTIGATION ON THE PHYSICO - CHEMICAL PROPERTIES OF MAGNETIC CLAY COMPOSITES." Herald of Kazakh-British technical university 18, no. 3 (2021): 22–27. http://dx.doi.org/10.55452/1998-6688-2021-18-3-22-27.

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This article studies the main physical and chemical properties of magnetic clays. Structural changes in magnetic clay composite suspensions were evaluated by measuring the permittivity through direct measurement of the sensor capacitance and through computer measurement of the frequency of the electric signal inversely proportional to the sensor capacitance. Natural bentonite clay of the Tagan field (East Kazakhstan region) was used in this study. Magnetite synthesized by the method of co-precipitation of iron salts with magnetite-clay composites. Different compositions of clay-magnetite compo
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