Preparation and application of melamine cross-linked poly ammonium as shale inhibitor

Li Zhang1, Tiehu Li1, Huang Lei2, Zhengqin Ye3, Zhongbin Ye3, Yan Xiao2, Lili Li2, Qiang Deng2, Gang Chen2, Jie Zhang4, Zhifang Zhang3
1School of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an, 710072, China
2College of Chemistry and Chemical Engineering, Xi’an Shiyou University, Xi’an 710065, Shaanxi, China
3Shaanxi Province Key Laboratory of Environmental Pollution Control and Reservoir Protection Technology of Oilfields, Xi'an, 710065, China
4State Key Laboratory of Petroleum Pollution Control, CNPC Research Institute of Safety and Environmental Technology, Beijing 102206, China

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Tài liệu tham khảo

Retz RH, Friedheim J, Lee LJ, Welch OO (1991) An environmentally acceptable and field-practical, cationic polymer mud system. In: Paper SPE 23064, offshore Europe conference held in Aberdeen, 3–6 September

Sheu JJ, Perricone AC (1988) Design and synthesis of shale stabilizing polymers for water-based drilling fluids. In: Paper SPE 18033, annual technical conference and exhibition, Texas, 2–5 October

Stamatakis E, Thaemlitz CJ, Coffin G, Reid W (1995) A new generation of shale inhibitors for water-based muds. In: SPE/IADC 29406, 1995 SPE/IADC drilling conference held in Amsterdam, Amsterdam

Steiger RP, Leung PK (1992) Qualitative determination of the mechanical properties of shales. Paper SPE 18024. SPE Drill Eng 7(3):181

Oort Van (2003) On the physical and chemical stability of shales. J Petrol Sci Eng 38:213–235

Patel A.D., 2009. Design and development of quaternary amine compounds: shale inhibition with improved environmental profile. In: Paper SPE 121737, international symposium on oilfield chemistry, p 20

Doonechaly NG, Tahmasbi K, Davani E (2009) Development of high-performance water-based mud formulation based on amine derivatives. In: Paper SPE 121228, presented at international symposium on oilfield chemistry, p 21

Qu YZ, Lai XQ, Zou LF, Su YN (2009) Polyoxyalkyleneamine as shale inhibitor in water-based drilling fluids. Appl Clay Sci 44:264–265

Wang JH, Yan JN, Ding TW (2007) Progresses in the researches on high performance water base muds. Drill Fluid Complet Fluid 1:1–2

Zhang KQ, He L, An SF (2007) An introduction to the high performance water base muds abroad. Drill Fluid Complet Fluid 3:1–3

Amanullah M (2007) Screening and evaluation of some environment-friendly mud additives to use in water-based drilling muds. In: Paper SPE 98054 E&P environmental and safety conference, p 6

Gao BY, Sun X, Yue QY, Zhang DH, Lu L, Wang XN, Wang Y (2006) The structure of epichlorohydrin-diethylamine polymer flocculants with different modifying agents and their properties for decoloration of wastewater. Acta Sci Circ 26:1977–1982

Shang YG, Jiang SL, Di L (2010) Study on synthesis and clay stabilizer properties of poly epichlorohydrin-diethylamine. Guangdong Chem Ind 37:59–61

Cai D, Zhang J, Chen G (2014) Study on the effect of carboxy-amines small molecule shale inhibitor. Oilfield Chem 31:5–8

Zhang J, Zhang Q, Chen G (2013) Mechanism study and application of modified polysaccharides as drilling fluid additive with high inhabitability. Tech Dev Chem Ind 42:1–5

Zhang J, Cai D, Chen G (2014) Performance assessment of a polyamine swelling inhibitor for clays and shales. Nat Gas Ind 34:85–90

Fu ML, Chen G, Tang SF, Wen SC (2015) Principle of oilfield chemistry. Petroleum Industry Press, Beijing

GB/T 16783.1-2006 Petroleum and natural gas industries for field testing of drilling fluids

Xi YF, Ding Z, He H, Frost RL (2004) Structure of organoclays—an X-ray diffraction and thermogravimetric analysis study. J Colloid Interface Sci 277:116–120

Qiu ZS, Zhong HY, Huang WA (2011) Properties and mechanism of a new polyamine shale inhibitor. Acta Petrolei Sinica 32:678–682