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◆ Energy & Fuels2026-01-26· Reducer

Synthesis and Evaluation of Novel Graphene Oxide-Based Comb-Polymer Viscosity Reducer for Heavy Oil

Zhen Tao, Bauyrzhan Sarsenbekuly, Wanli Kang, Wenwei Wu, Guoqing Zhang, Hongbin Yang, Yuqin Tian, Yaoguo Wang, Shouzun Guo, D. B. Liu

原始摘要(英文原文)· Original abstract
To tackle the challenges of high viscosity, poor fluidity, and low recovery rates in heavy oil, a novel comb-like polymer viscosity reducer (GO-Z) based on nanographene oxide (GO) was developed. GO was first functionalized with a silane coupling agent and then grafted with long-chain alkyl (C16DMAAC) and polyether (APEG-8) groups. The results show that GO-Z exhibited superior emulsification, dispersion, and viscosity reduction properties under microagitation conditions (simulating the low-shear conditions of real reservoirs), achieving over 94% viscosity reduction at a concentration of 0.3 wt %. Physical simulation flooding experiments further demonstrated that GO-Z effectively improved heavy oil recovery at various injection rates, with the highest increase reaching 11.61%. This study opens up a clear and promising path for the application of functionalized GO in the emulsification and viscosity reduction of heavy oil cold production.
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Synthesis and Evaluation of Novel Graphene Oxide-Based Comb-Polymer Viscosity Reducer for Heavy Oil — 科研速览 Science Skim