Liu Chenwei, Li Mingzhong, Zhang Guodong, Koh Carolyn A
College of Petroleum Engineering, China University of Petroleum, Qingdao 266580, China.
Phys Chem Chem Phys. 2015 Aug 14;17(30):20021-9. doi: 10.1039/c5cp02247a.
Clathrate hydrate particle agglomeration is often considered to be one of the key limiting factors in plug formation. The hydrate particle-water interaction can play a critical role in describing hydrate agglomeration, yet is severely underexplored. Therefore, this work investigates the interactions between water droplets and cyclopentane hydrate particles using a micromechanical force (MMF) apparatus. Specifically, the effect of contact time, temperature/subcooling, contact area, and the addition of Sorbitane monooleate (Span 80) surfactant on the water droplet-hydrate particle interaction behavior are studied. The measurements indicate that hydrate formation during the measurement would increase the water-hydrate interaction force significantly. The results also indicate that the contact time, subcooling and concentration of cyclopentane, which determine the hydrate formation rate and hydrate amount, will affect the hydrate-water interaction force. In addition, the interaction forces also increase with the water-hydrate contact area. The addition of Span 80 surfactant induces a change in the hydrate morphology and renders the interfaces stable versus unstable (leading to coalescence), and the contact force can affect the hydrate-water interaction behavior significantly. Compared with the hydrate-hydrate cohesion force (measured in cyclopentane), the hydrate-water adhesion force is an order of magnitude larger. These new measurements can help to provide new and critical insights into the hydrate agglomeration process and potential strategies to control this process.
笼形水合物颗粒团聚通常被认为是堵塞形成的关键限制因素之一。水合物颗粒与水之间的相互作用在描述水合物团聚过程中可能起着关键作用,但目前对此研究严重不足。因此,本研究使用微机械力(MMF)装置研究了水滴与环戊烷水合物颗粒之间的相互作用。具体而言,研究了接触时间、温度/过冷度、接触面积以及添加失水山梨醇单油酸酯(Span 80)表面活性剂对水滴 - 水合物颗粒相互作用行为的影响。测量结果表明,测量过程中水合物的形成会显著增加水 - 水合物相互作用力。结果还表明,决定水合物形成速率和水合物量的接触时间、过冷度和环戊烷浓度会影响水合物 - 水相互作用力。此外,相互作用力也会随着水 - 水合物接触面积的增加而增大。添加Span 80表面活性剂会导致水合物形态发生变化,并使界面从稳定变为不稳定(导致聚并),且接触力会显著影响水合物 - 水相互作用行为。与水合物 - 水合物内聚力(在环戊烷中测量)相比,水合物 - 水粘附力要大一个数量级。这些新的测量结果有助于为水合物团聚过程以及控制该过程的潜在策略提供新的关键见解。