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Testing the Performance of Various Polymeric Antiscalants for Mitigation of Sb-Rich Precipitates Mimicking Stibnite-Based Geothermal Deposits

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Date

2020

Journal Title

Journal ISSN

Volume Title

Publisher

Wiley-hindawi

Open Access Color

Gold

Green Open Access

Yes

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OpenAIRE Views

8

Publicly Funded

No
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Average
Influence
Average
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Average

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Abstract

Scaling is frequently observed in geothermal fields and reduces the energy harvesting of power plants. Recently, Sb-rich deposits have developed in many fields around the world. Various polymeric macromolecules have been used as antiscalants to mitigate the formation of scale. Testing potential commercial antiscalants in field conditions is a tedious and costly process. The artificial synthesis of geothermal deposits in the lab is a more practical and economical way to test the performance of antiscalants. This study obtained a Sb-rich deposit by refluxing SbCl3 and Na2S center dot 3H(2)O in 18 h. The product was found to be a mixture of Sb2O3 and Sb2S3. We examined the performance of antiscalants such as poly(ethylene glycol), poly(vinyl pyrrolidone), Gelatin, and poly(vinyl alcohol) of various molecular weights at 5 to 100 ppm. The formation of Sb2S3 is suppressed in the presence of the polymeric antiscalants. The dosage was found to be critical for the solubilization of Sb-rich deposits. Gelatin of 5 ppm showed the highest performance under the conditions employed in this study. While low dosages improve the concentration of [Sb3+], high dosages are required to increase the solubility of [S2-]. Moreover, the amount of deposit is reduced by 12.4% compared to the reference (in the absence of any polymeric molecules). Thus, comparatively, Gelatin shows the most promising performance among the molecules employed.

Description

Mühendislik Fakültesi, Harran Üniversitesi/0000-0001-7407-1635; Demir, Mustafa M/0000-0003-1309-3990; Yesilnacar, Mehmet Irfan/0000-0001-9724-8683; ciftci, celal/0000-0002-3242-2828; BABA, ALPER/0000-0001-5307-3156; Tonkul, Serhat/0000-0002-8572-1565

Keywords

[No Keyword Available], QE1-996.5, Article Subject, Geology

Fields of Science

020209 energy, 02020902 Biomass/Biofuels/Bioenergy, 0202 electrical engineering, electronic engineering, information engineering, 01050201 Plate tectonics/Lithosphere, 02 engineering and technology, 010502 geochemistry & geophysics, 01 natural sciences, 0105 earth and related environmental sciences

Citation

2

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
3

Source

Geofluids

Volume

2020

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Scopus : 3

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Mendeley Readers : 11

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