Shuangchun Yang's research while affiliated with Liaoning University and other places

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Publications (43)


Research Progress of Molecular Simulation in Acrylamide Polymers with High Degree of Polymerization
  • Article

May 2024

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3 Reads

Molecules

Zhenye Liu

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Qi Feng

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Zhuangzhuang Xu

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Shuangchun Yang

Acrylamide polymers with a high degree of polymerization are widely used in petroleum production. It is of great significance to study the oil displacement mechanism of acrylamide polymers with a high degree of polymerization from the micro level. In recent years, the rapid development of computer molecular simulation technology has filed the gaps in macroscopic experiments and theories. This technology has been highly valued in the study of the molecular behaviour of polymer systems. In this paper, the research progress of molecular simulation applied to high-polymerization-degree acrylamide polymer is summarized. The application status of acrylamide polymer flooding, the analysis of polymer flooding mechanisms, and the research progress of molecular simulation in acrylamide linear and crosslinked polymers are expounded. Finally, the development prospect of acrylamide polymer research is given, and suggestions are put forward in terms of simulation direction and simulation tools.

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Figure 1. Shape-memory polymer recovery rate versus time [24].
Advantages and disadvantages of three temperature-sensitive polymer materials.
Temperature-Sensitive Materials for Oil and Gas Drilling Applications
  • Literature Review
  • Full-text available

March 2024

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31 Reads

Molecules

With the vigorous development of the petroleum industry, improving the efficiency of oil and gas exploitation has become an important issue. Temperature-sensitive materials show great potential for application in the development and production of oil and gas fields due to their unique temperature-responsive properties. This paper reviews the application of temperature-sensitive materials in oil and gas drilling and introduces the characteristics of three types of temperature-sensitive materials: N-substituted acrylamide polymers, amphiphilic block copolymers, and peptides. Because these materials can change their physical state at specific temperatures, this paper discusses in detail the role of various temperature-sensitive materials as plugging agent, thickener, oil displacing agent, flocculant, and tackifier in oil and gas field operations, as well as the mechanism of action and performance of temperature-sensitive materials in practical oil and gas drilling operations. As we have not yet seen relevant similar literature, this paper aims to discuss the innovative application of temperature-sensitive materials in the oil and gas drilling process, and at the same time points out the problems in the current research and applications as well as future development directions. Through analysis and comparison, we provide an efficient and environmentally friendly materials selection option for the petroleum industry in order to promote the progress and sustainable development of oil and gas extraction processes.

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Research Progress in Nanoparticle Inhibitors for Crude Oil Asphaltene Deposition

Molecules

Currently, the alteration of external factors during crude oil extraction easily disrupts the thermodynamic equilibrium of asphaltene, resulting in the continuous flocculation and deposition of asphaltene molecules in crude oil. This accumulation within the pores of reservoir rocks obstructs the pore throat, hindering the efficient extraction of oil and gas, and consequently, affecting the recovery of oil and gas resources. Therefore, it is crucial to investigate the principles of asphaltene deposition inhibition and the synthesis of asphaltene inhibitors. In recent years, the development of nanotechnology has garnered significant attention due to its unique surface and volume effects. Nanoparticles possess a large specific surface area, high adsorption capacity, and excellent suspension and catalytic abilities, exhibiting unparalleled advantages compared with traditional organic asphaltene inhibitors, such as sodium dodecyl benzene sulfonate and salicylic acid. At present, there are three primary types of nanoparticle inhibitors: metal oxide nanoparticles, organic nanoparticles, and inorganic nonmetal nanoparticles. This paper reviews the recent advancements and application challenges of nanoparticle asphaltene deposition inhibition technology based on the mechanism of asphaltene deposition and nano-inhibitors. The aim was to provide insights for ongoing research in this field and to identify potential future research directions.




Research progress of hydroxyethyl cellulose materials in oil and gas drilling and production

Cellulose

As a non-ionic surfactant, hydroxyethyl cellulose (HEC) is widely utilized in the oil and gas industry owing to its numerous advantages, which include excellent suspensibility, robust viscosifying properties, and distinguished plugging effect. However, the direct application of HEC faces certain challenges such as high dosage, suboptimal temperature resistance, and slow degradation. Various solutions have been proposed to tackle these issues, including the blending of HEC with other materials to enhance its performance. The viscosifying ability of the material is significantly improved, and the oil displacement effect is remarkable after the modification of hydroxyethyl cellulose (HEC).Thus, materials based on HEC, such as the HEC compounding system and HEC-modified materials, have considerable research value. This review aims to discuss the current research status of HEC-based materials, focusing on viscosity stabilization, anti-tampering and plugging, oil drive, and production increase. The synthesis method and properties of the material are analyzed, highlighting the weak temperature resistance, insufficient salt resistance, and limited self-adaptability of HEC. Hence, it is suggested that future development should concentrate on hydrophobic modification of HEC long carbon chains and compounding with polymers to produce HEC-based composites that are suitable for wider application.



Citations (18)


... This approach can further characterize the variation in the hydrocarbon generation amount per unit time of OM. The heating rate has an impact on the pyrolysis of OM and the yield of hydrocarbon [62]. ...

Reference:

The implication of kinetics characteristics of modern organisms for the hydrocarbon generation evolution of organic matter components in the lacustrine source rocks: A case study of the Dongying Formation from the Bozhong Sag, Bohai Bay Basin
Comprehensive review: Study on heating rate characteristics and coupling simulation of oil shale pyrolysis
  • Citing Article
  • November 2023

Journal of Analytical and Applied Pyrolysis

... In terms of microwaves, there are numerous applications, for example, microwave radiation is useful in analytical and environmental chemistry, pretreatment, sample processing in research, food sterilization, drug discovery, large-scale drying, mineral processing, and chemical synthesis [55][56][57][58][59][60]. Recently, the application of microwave technology has been evaluated in manufacturing technology; road construction and de-icing; catalyst production; application as an absorbent in oil shale; solidification of copper; and polymer production [61][62][63][64][65][66]. The nature of this study, however, was limited to improving our existing understanding of microwave radiation's impacts on environmental bacteria and evaluating the impacts of microwave levels on DNA integrity. ...

A Review on the Application of Microwave Absorbents in Oil Shale
  • Citing Article
  • November 2023

Industrial & Engineering Chemistry Research

... In fact, a jigsaw puzzle of functions can generate specific relationships for cooperative mechanisms that allow one to obtain the targets of a specific separation Membranes 2024, 14, 100 2 of 10 process. In recent years, advanced manufacturing processes, along with diverse families of materials, have been proposed to shift the perspective of membranes from traditional physical barriers [1] to interactive [22] and, where required, smart selective interfaces [23]. Thus, traditional phase inversion [1], track-etching [24], stretching [25], and interfacial polymerization [26] have been optimized or combined with more advanced fabrication methods, including phase separation micromolding [27], electrospinning [28], copolymer self-assembly [29], breath figure self-assembly [30], lithography [31], layer-by-layer assembly [32], and many others. ...

Recent research progress on the stimuli-responsive smart membrane: A review
Nanotechnology Reviews

Nanotechnology Reviews

... In recent years, research interest in nanomaterial technology, biosensors, biochemical sensors, and wearable diagnostic devices have experienced astronomical growth globally [1][2][3][4]. The vast research and market investment in these fields have also led to the development of better sensing techniques, new nanomaterials, and biomaterials like conducting polymers, copolymers, and sol-gels [5][6][7]. Additionally, the uses and application possibilities of these new-generation devices are now widely varied because they can be multiplexed and reduced to micro-and nano-dimensions and integrated on standard silicon integrated circuit chip [8][9][10]. Substantial advances have been achieved in producing these devices using technology emerging as light emitting devices that are functional in the silicon reverse-biased avalanche mode light emitting diode (Si AMLED) mode of operation [11][12][13][14]. ...

A Review of Research Progress on the Performance of Intelligent Polymer Gel

Molecules

... The synthesis process of temperature-sensitive modified bentonite has complex steps [26], which are easily affected by many experimental factors. In the process of intercalation modification, factors such as the mass ratio of CMC to bentonite (20%, 40%, 60%, 80%, 100%), pH (6,7,8,9,10) ...

Preparation and research of intelligent drilling fluid based on temperature-sensitive modified bentonite

Matéria (Rio de Janeiro)

... Traditional bridging materials widely used to address lost circulation problems have certain limitations, including poor compatibility with fractures and difficulty in forming high-strength plugging layers. Therefore, there is a need to develop new lost circulation material (LCM) with strong adaptability and excellent resistance to scouring [8,9]. ...

Research Progress of Intelligent Polymer Plugging Materials

Molecules

... Solid particles might be applied in emulsion systems as a stabilizer in the Pickering emulsions type [39]. On the other hand, an emulsion structure might be beneficial for insoluble solid particles to prevent or delay their sedimentation. ...

Research progress and prospect of silica-based polymer nanofluids in enhanced oil recovery
Nanotechnology Reviews

Nanotechnology Reviews

... Its pore size and pore structure selectively adsorb certain molecules or substances within the molecular size range. Molecular sieves have high thermal stability and maintain their structure and performance without significant changes at high temperatures [9]. Molecular sieves have high chemical stability [10]. ...

Application of Oil Shale Molecular Sieve Catalyst: a Review
  • Citing Article
  • November 2022

Chemistry and Technology of Fuels and Oils

... At the same time, it dramatically impacts the suspension and sand-carrying performance of the drilling fluid. Therefore, controlling the low-temperature rheology of drilling fluids under deep-water conditions is a critical problem to solve in developing deep-water drilling fluids [82][83][84]. Thermoresponsive polymers can be used as rheology modifiers to be added to drilling fluids to achieve the constant rheology characteristics of deep-water drilling fluids due to significant fluid mechanics-based volume and molecular structure changes in the response process. ...

Research progress on low-temperature rheology of high-performance ocean deepwater drilling fluids: An overview
  • Citing Article
  • August 2022

Journal of Petroleum Science and Engineering