Matches in SemOpenAlex for { <https://semopenalex.org/work/W4308995000> ?p ?o ?g. }
- W4308995000 endingPage "14147" @default.
- W4308995000 startingPage "14136" @default.
- W4308995000 abstract "Controlling scale deposition in tight formations such as shale is commonly achieved by combining fracturing stimulation with squeeze treatment. The squeeze treatment process’s success relies on the targeted formation’s ability to adsorb the right amount of scale inhibitor and slowly release it during hydrocarbon production. The inhibition lifetime of a standard squeeze treatment lasts from 3 to 6 months depending on the compatibility between the formation and scale inhibitor–operators desire a prolonged inhibition lifetime. Herein, a novel approach of resin-based nanocomposite coated proppants is developed to act as a propping agent and high active surface platform for scale inhibitors to be adsorbed and subsequently slowly released during oil production. In this study, proppants were coated with a thin layer of polyurethane, followed by a layer of carbon-based nanomaterials (Multi-Wall Carbon Nanotubes (MWCNTs) and Graphene Nanoplatelets (GNPs)), and characterized using Field Emission Scanning Electron Microscopy (FESEM) and Energy Dispersive X-ray Analysis (EDX). Due to the concerns of climate change, polyurethane was selected due to its quick curing at lower temperatures and minimal environmental impacts. The potential of the proposed proppant to enhance the adsorption and slow the desorption of a Diethylenetriamine Penta (DTPMP) scale inhibitor, the necessary strength to withstand closure stress, and its thermal stability were evaluated. FESEM and EDX results revealed that an ultrathin uniformed coating layer was established. The stress resistance data showed that the proposed proppants (MWCNTs-RCP and GNPs-RCP) could withstand closure stress as high as 68.9 MPa with less than 10 wt % fines production. In addition, the thermal stability of MWCNTs-RCP and GNPs-RCP reached 347 °C. Scale inhibitor adsorption experiments showed that MWCNTs-RCP and GNPs-RCP adsorbed 583.5 mg/kg and 832.0 mg/kg of DTPMP, respectively. Desorption results indicated that MWCNTs-RCP and GNPs-RCP extended the inhibition lifetime of DTPMP by 400% PV compared to a conventional proppant. Intraparticle diffusion was found to dominate the desorption of DTPMP from MWCNTs-RCP and GNPs-RCP, which explains the slow desorption rate they exhibited. Therefore, the developed proppants could be a promising multifunctional proppant in the oil and gas industry." @default.
- W4308995000 created "2022-11-20" @default.
- W4308995000 creator A5035762745 @default.
- W4308995000 creator A5038141698 @default.
- W4308995000 creator A5040518324 @default.
- W4308995000 creator A5047266949 @default.
- W4308995000 creator A5057024880 @default.
- W4308995000 date "2022-11-14" @default.
- W4308995000 modified "2023-10-01" @default.
- W4308995000 title "Novel Nanocomposite Coated Proppants for Enhanced Scale Inhibition Lifetime in Tight Shale Formations" @default.
- W4308995000 cites W1795345138 @default.
- W4308995000 cites W1978383921 @default.
- W4308995000 cites W1984926468 @default.
- W4308995000 cites W1989831633 @default.
- W4308995000 cites W1991542088 @default.
- W4308995000 cites W1994661077 @default.
- W4308995000 cites W1996967694 @default.
- W4308995000 cites W1999220836 @default.
- W4308995000 cites W2008054828 @default.
- W4308995000 cites W2008442754 @default.
- W4308995000 cites W2017328251 @default.
- W4308995000 cites W2030120329 @default.
- W4308995000 cites W2045452721 @default.
- W4308995000 cites W2046821360 @default.
- W4308995000 cites W2048536539 @default.
- W4308995000 cites W2050997527 @default.
- W4308995000 cites W2060107680 @default.
- W4308995000 cites W2091915079 @default.
- W4308995000 cites W2143138129 @default.
- W4308995000 cites W2162956005 @default.
- W4308995000 cites W2181191720 @default.
- W4308995000 cites W2196339097 @default.
- W4308995000 cites W2244282582 @default.
- W4308995000 cites W2256449359 @default.
- W4308995000 cites W2264626150 @default.
- W4308995000 cites W2283928381 @default.
- W4308995000 cites W2329528213 @default.
- W4308995000 cites W2335564877 @default.
- W4308995000 cites W2335584404 @default.
- W4308995000 cites W2395079524 @default.
- W4308995000 cites W2474723747 @default.
- W4308995000 cites W2524601035 @default.
- W4308995000 cites W2565518808 @default.
- W4308995000 cites W2747529806 @default.
- W4308995000 cites W2797635312 @default.
- W4308995000 cites W2802823898 @default.
- W4308995000 cites W2807164247 @default.
- W4308995000 cites W2921235037 @default.
- W4308995000 cites W2921710927 @default.
- W4308995000 cites W2938870840 @default.
- W4308995000 cites W2942244159 @default.
- W4308995000 cites W2946302280 @default.
- W4308995000 cites W2953050510 @default.
- W4308995000 cites W2967915644 @default.
- W4308995000 cites W3006373271 @default.
- W4308995000 cites W3010450991 @default.
- W4308995000 cites W3011101855 @default.
- W4308995000 cites W3030732695 @default.
- W4308995000 cites W3034726584 @default.
- W4308995000 cites W3077957493 @default.
- W4308995000 cites W3108990188 @default.
- W4308995000 cites W3153150407 @default.
- W4308995000 cites W3180765922 @default.
- W4308995000 cites W3187283287 @default.
- W4308995000 cites W3194605281 @default.
- W4308995000 cites W3214824189 @default.
- W4308995000 cites W3217606076 @default.
- W4308995000 cites W4206189186 @default.
- W4308995000 cites W4224275989 @default.
- W4308995000 cites W4232711166 @default.
- W4308995000 cites W4238231490 @default.
- W4308995000 cites W4248235362 @default.
- W4308995000 cites W4293216277 @default.
- W4308995000 cites W883268767 @default.
- W4308995000 doi "https://doi.org/10.1021/acs.energyfuels.2c03002" @default.
- W4308995000 hasPublicationYear "2022" @default.
- W4308995000 type Work @default.
- W4308995000 citedByCount "3" @default.
- W4308995000 countsByYear W43089950002023 @default.
- W4308995000 crossrefType "journal-article" @default.
- W4308995000 hasAuthorship W4308995000A5035762745 @default.
- W4308995000 hasAuthorship W4308995000A5038141698 @default.
- W4308995000 hasAuthorship W4308995000A5040518324 @default.
- W4308995000 hasAuthorship W4308995000A5047266949 @default.
- W4308995000 hasAuthorship W4308995000A5057024880 @default.
- W4308995000 hasConcept C127413603 @default.
- W4308995000 hasConcept C150394285 @default.
- W4308995000 hasConcept C153127940 @default.
- W4308995000 hasConcept C159985019 @default.
- W4308995000 hasConcept C171250308 @default.
- W4308995000 hasConcept C178790620 @default.
- W4308995000 hasConcept C185592680 @default.
- W4308995000 hasConcept C192562407 @default.
- W4308995000 hasConcept C2779578285 @default.
- W4308995000 hasConcept C2781448156 @default.
- W4308995000 hasConcept C42360764 @default.
- W4308995000 hasConcept C548081761 @default.
- W4308995000 hasConcept C92880739 @default.