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High-temperature and high-salinity resistance hydrophobic association zwitterionic filtrate loss reducer for water-based drilling fluids
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作者 Tai-Feng Zhang Jin-Sheng Sun +5 位作者 Jing-Ping Liu Kai-He Lv Yuan-Wei Sun Zhe Xu Ning Huang Han Yan 《Petroleum Science》 2025年第7期2851-2867,共17页
As the global exploration and development of oil and gas resources advances into deep formations,the harsh conditions of high temperature and high salinity present significant challenges for drilling fluids.In order t... As the global exploration and development of oil and gas resources advances into deep formations,the harsh conditions of high temperature and high salinity present significant challenges for drilling fluids.In order to address the technical difficulties associated with the failure of filtrate loss reducers under high-temperature and high-salinity conditions.In this study,a hydrophobic zwitterionic filtrate loss reducer(PDA)was synthesized based on N,N-dimethylacrylamide(DMAA),2-acrylamido-2-methylpropane sulfonic acid(AMPS),diallyl dimethyl ammonium chloride(DMDAAC),styrene(ST)and a specialty vinyl monomer(A1).When the concentration of PDA was 3%,the FLAPI of PDA-WBDF was 9.8 mL and the FLHTHP(180℃,3.5 MPa)was 37.8 mL after aging at 240℃for 16 h.In the saturated NaCl environment,the FLAPI of PDA-SWBDF was 4.0 mL and the FLHTHP(180℃,3.5 MPa)was 32.0 mL after aging at 220℃ for 16 h.Under high-temperature and high-salinity conditions,the combined effect of anti-polyelectrolyte and hydrophobic association allowed PDA to adsorb on the bentonite surface tightly.The sulfonic acid groups of PDA increased the negative electronegativity and the hydration film thickness on bentonite surface,which enhanced the colloidal stability,maintained the flattened lamellar structure of bentonite and formed an appropriate particle size distribution,resulting in the formation of dense mud cakes and reducing the filtration loss effectively. 展开更多
关键词 High-temperature HIGH-SALINITY Hydrophobic association ZWITTERIONIC filtrate loss reducer Water-based drilling fluids
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Nuclear Magnetic Resonance-Based Metabolomics Reveals Systemic Metabolic Disarray in the Transition from Acute Kidney Injury To Chronic Kidney Disease
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作者 Lingxiao Wang Xiuru Wang +3 位作者 Tingxiao Zou Feng Su Ying Yao Jinping Gu 《Phenomics》 2025年第4期457-460,共4页
Acute kidney injury(AKI)is a significant risk factor for chronic kidney disease(CKD),yet the mechanisms driving this progression remain unclear(Kellum et al.2021).Given the kidney's role in homeostasis,AKI profoun... Acute kidney injury(AKI)is a significant risk factor for chronic kidney disease(CKD),yet the mechanisms driving this progression remain unclear(Kellum et al.2021).Given the kidney's role in homeostasis,AKI profoundly impacts systemic health,often leading to CKD,characterized by persistent damage or reduced glomerular filtration rate(GFR)(Stevens et al.2024).The high incidence of AKI and its strong association with subsequent CKD necessitates a deeper understanding of the transition process. 展开更多
关键词 reduced glomerular filtration rate gfr stevens chronic kidney disease chronic kidney disease ckd metabolomics nuclear magnetic resonance transition process acute kidney injury aki acute kidney injury
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