Tank bottoms refer to the residual sludges and sediments that accumulate at the bottom of storage tanks used in the oil and gas industry. These sludges contain a high percentage of recoverable oil, making them valuable products. However, they are known for being difficult to handle due to their high solids and emulsion content as well as their high viscosity.
Proper treatment of tank bottoms is crucial not only for recovering valuable hydrocarbons but also for minimizing environmental impact and reducing waste disposal costs. Untreated tank bottom sludge, which can contain 10-70% oil, 30-90% water and 5-20% solids, poses significant challenges due to its composition. If not treated on-site, this sludge must be either incinerated or transported to specialized treatment plants, both of which are costly and environmentally hazardous.
GEA offers an advanced portfolio of separation technologies designed to effectively treat tank bottoms. Separator and decanter centrifuges provide an efficient solution for processing tank bottom sludge. These technologies are engineered to handle the complex composition of slop oils, which can have oil viscosities reaching up to 600 cSt at 50°C and specific gravity ranging from 0.8 to 0.96 g/ml. Additionally, GEA equipment is built to withstand the challenges posed by low pH values, high chloride concentrations, abrasive particles, organic solids and the presence of asphaltenes.
GEA has developed a method to recycle oils from tank bottom sludge in an environmentally friendly manner, offering significant advantages to customers. The combined mechanical separation technology, used in several stages along with heating and chemical enhancements, enables the recovery of 80-95% of salable hydrocarbons. This not only adds value by recovering hydrocarbons that would otherwise be lost but also significantly reduces the total disposal costs. By integrating GEA separator and decanter centrifuges into the treatment process, oil companies can efficiently process tank bottom sludge, turning a challenging waste product into a valuable resource while minimizing environmental impact.
2 の 2 を表示する
懸濁液の固体成分を高効率で処理するにあたり、デカンタの時代が到来しました。この機器は、高い浄化効率性と最大限の脱水だけでなく、固体の除去と同時に液体を分離できるようにします。ここでの主な要件は高いボウル速度、巻軸の強力な駆動装置および実現される固体脱水に自動的に順応する巻軸速度です。
GEA の分離機は、液体ベースの用途向けに設計されています。遠心力を利用する分離機は、異なる密度の 2 相以上で構成される懸濁液の分離に使用されます。たとえば、液体 - 液体の分離、液体 - 液体 - 固体の分離、あるいは液体 - 固体の分離に使用できます。これらはいずれも、固体を除去するときと同様、液体混合物を分離するときにも効率的です。
For feedstock material that can be efficiently processed through dewatering and simultaneous oil and water separation, GEA's 3-phase single-stage decanter centrifuges are the preferred solution. These centrifuges can handle high solid content achieving maximum dewatering and clarification in one stage, making them ideal for easier slop oil treatment requirements.
Single-stage treatment with 3-phase decanter centrifuge
In cases where the feedstock is more challenging to treat or higher oil quality is required, GEA's double-stage treatment process becomes more viable. This involves using 2-phase decanter centrifuges followed by high-speed disk stack centrifuges. The disk stack machines process the decanter centrate phase, separating ultra-fine particles and maximizing water removal. This results in a high-quality oil product that can be merchandized similarly to crude oil.
Double-stage treatment with 2-phase decanter centrifuges and disk stack centrifuges
The world's population is growing and with it demand for milk. Dairy is an essential component of many global diets. However, its production can be resource-intensive and impact the environment. GEA’s Christian Müller, Senior Director Sustainability Farm Technologies, sheds light on how technological innovations powered by GEA make milk production more efficient and profitable.