鎵嬫満鐗圏img class="sj_xl" src="//www.znpla.com/bicchina/v2images/xia.png"/>

鎵竴鎵紝鎵嬫満璁块棶

鍏充簬鎴戜滑 鍔犲叆鏀惰棌

缇庡浗甯冮瞾鍏嬫捣鏂囦华鍣ㄥ叕鍙镐笂娴蜂唬琛ㄥ

7 骞滁/span>閲戠墝浼氬憳

宸茶璇?/p>

鎷ㄦ墦鐢佃瘽
鑾峰彇搴曚环
鎻愪氦鍚庯紝鍟嗗灏嗘淳浠h〃涓烘偍涓撲汉鏈嶅姟
绔嬪嵆鍙戦€?/a>
褰撳墠浣嶇疆锛欬/div> 甯冮瞾鍏嬫捣鏂嘃/a>> 鎶€鏈枃绔燑/a>>

Nanobrook Omni娴嬮噺搴旂敤妗堜緥-65

Nanobrook Omni娴嬮噺搴旂敤妗堜緥-65

State Key Laboratory of Heavy Oil Processing, School of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong 266580, People鈥橖/span>s Republic of China

鎽樿锛欬/span>A new kind of self-dispersing silica nanoparticle was prepared and used to enhance oil recovery in spontaneous imbibition tests of low-permeability cores. To avoid the aggregation of silica nanoparticles, a new kind of silica nanoparticle was prepared through the surface modification with vinyltriethoxysilane and 2-mercaptobenzimidazole as modified agents. Transmission electron microscopy, Fourier transform infrared spectroscopy, dynamic light scattering, andpotential measurements were employed to characterize the modified silica nanoparticles. Dispersing experiments indicated that modified silica nanoparticles had superior dispersity and stability in alkaline water. To evaluate the performance of silica nanofluids for enhanced oil recovery compared to pH 10 alkaline water and 5 wt % NaCl solution, spontaneous imbibition tests in sandstone cores were conducted. The results indicated that silica nanofluids can evidently improve oil recovery. To investigate the mechanism of nanoparticles for enhanced oil recovery, the contact angle and interfacial tension were measured. The results showed that the adsorption of silica nanoparticles can change the surface wettability from oil-wet to water-wet and silica nanoparticles showed a little influence on oil/water interfacial tension. In addition, the change of the oil droplet shape on the hydrophobic surface was monitored through dynamic contact angle measurement. It was shown that silica nanoparticles can gradually detach the oil droplet from the hydrophobic surface, which is consistent with the structural disjoining pressure mechanism.



铏氭嫙鍙峰皢鍦绉掑悗澶辨晥

浣跨敤寰俊鎵爜鎷ㄥ彿

涓轰簡淇濊瘉闅愮瀹夊叏锛屽钩鍙板凡鍚敤铏氭嫙鐢佃瘽锛岃鏀惧績鎷ㄦ墦(鏆備笉鏀寔鐭俊)