Oil, Gas and Mining
MikaZone HEC is utilized by the oil and gas industry for a range of applications, including rheology modification in fluids used for drilling and completing petroleum and natural gas wells.
Your Reliable Partner For Cellulose Ethers
Comprehensive Industry Coverage
MikaZone HEC is utilized by the oil and gas industry for a range of applications, including rheology modification in fluids used for drilling and completing petroleum and natural gas wells.
Mikazone Cellulose ethers is used in hydraulic fracturing processes and it is an effective fluid-loss additive in well cements. MIkazone HEC is compatible with most additives such as biocides, antifoaming agents, oxygen scavengers, fluid loss control additives and retarders. As a naturally derived polymer, it is easily biodegradable.
MikaZone provides customized OEM solutions for your projects, along with defoamers and sodium formate for oil drilling operations.
Formula can be customized
Packaging can be customized
Viscosity can be customized
In oil drilling, mud treatment is a crucial procedure.
Mikazone hydroxyethylcellulose (HEC) is indispensable for professionals in the oil drilling industry. It offers reliable thickening and suspension properties, enhancing drilling efficiency and delivering superior results. Key benefits of HEC include:
– Acts as a thickening agent in saltwater, crucial for many drilling operations.
– Maintains its viscosity even in high salt concentrations.
– Ensures viscosity stability regardless of salt concentration levels.
Cellulose ether, as a viscosifier in drilling fluids, is used to increase the viscosity of the drilling fluid, improve its suspending ability, and control fluid loss. In cementing fluids, it mainly serves to reduce the filtrate loss.
From a product’s physicochemical perspective, the higher the product’s viscosity, the better its viscosifying effect. The higher the product’s salt-to-viscosity ratio, the better its salt tolerance. Low-viscosity products, on the other hand, can maintain the drilling fluid within a relatively low viscosity range while also effectively reducing filtrate loss.
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