摘要:
The subject disclosure relates to apparatus and methods that are particularly suited for creating a seal in a borehole annulus. More particularly, the subject disclosure relates to a seal with enhanced sealing capability. In one embodiment the subject disclosure relates to a reinforced and permanent swellable packer device.
摘要:
The subject disclosure discloses apparatus and methods that are particularly suited for creating a seal in a borehole annulus. More particularly, the subject disclosure discloses a seal with enhanced sealing capability. In one embodiment the subject disclosure discloses a reinforced and permanent swellable packer device.
摘要:
Embodiments disclose a sand screen apparatus for use in a well that intersects a hydrocarbon formation. The sand screen apparatus comprises a composite, the composite having a compressed state and an expanded state. In embodiments, the composite comprises a base polymer and one or a plurality of reactive fillers where the reactive fillers react with the base polymer in the expanded state after exposure to a first trigger.
摘要:
The subject disclosure discloses mechanisms for embedding and controlling multifunctional additives within a polymer matrix for use in oilfield applications. More particularly, the subject disclosure discloses methods of treating a subterranean formation with a polymer matrix comprising one or a plurality of polymers and one or a plurality of functional additives embedded into this polymer matrix.
摘要:
A novel oxide material (MIN-I) comprising YO2; and X2O3, wherein Y is a tetravalent element and X is a trivalent element, wherein X/Y=O or Y/X=30 to 100 is provided. Surprisingly, MIN-I can be reversibly deswollen. MIN-I can further be combined with a polymer to produce a nanocomposite, depolymerized to produce predominantly fully exfoliated layers (MIN-2), and pillared to produce a pillared oxide material (MIN-3), analogous to MCM-36. The materials are useful in a wide range of applications, such as catalysts, thin films, membranes, and coatings.
摘要翻译:包含YO2的新型氧化物材料(MIN-I) 和X 2 O 3,其中Y是四价元素,X是三价元素,其中X / Y = O或Y / X = 30至100。 令人惊讶的是,MIN-I可以可逆地消除。 MIN-I可以进一步与聚合物结合以产生纳米复合材料,解聚以产生主要完全剥离的层(MIN-2),并且被柱形以产生类似于MCM-36的柱状氧化物材料(MIN-3)。 该材料可用于广泛的应用,如催化剂,薄膜,膜和涂料。
摘要:
A novel oxide material (MIN-I) comprising YO2; and X2O3, wherein Y is a tetravalent element and X is a trivalent element, wherein X/Y=O or Y/X=30 to 100 is provided. Surprisingly, MIN-I can be reversibly deswollen. MIN-I can further be combined with a polymer to produce a nanocomposite, depolymerized to produce predominantly fully exfoliated layers (MIN-2), and pillared to produce a pillared oxide material (MIN-3), analogous to MCM-36. The materials are useful in a wide range of applications, such as catalysts, thin films, membranes, and coatings.
摘要翻译:包含YO2的新型氧化物材料(MIN-I) 和X 2 O 3,其中Y是四价元素,X是三价元素,其中X / Y = O或Y / X = 30至100。 令人惊讶的是,MIN-I可以可逆地消除。 MIN-I可以进一步与聚合物结合以产生纳米复合材料,解聚以产生主要完全剥离的层(MIN-2),并且被柱形以产生类似于MCM-36的柱状氧化物材料(MIN-3)。 该材料可用于广泛的应用,如催化剂,薄膜,膜和涂料。