Abstract:
A fuel tank inerting system includes a bleed air inlet (12), a bleed air conditioning system (14), an air separation module (26), a nitrogen-enriched air conditioning system (30), a nitrogen-enriched air outlet (44), and a controller (46). The bleed air conditioning system (14) is connected to the bleed air inlet (12) and is configured to cool bleed air. The air separation module (26) is connected to the bleed air conditioning system (14) and is configured to produce nitrogen-enriched air. The nitrogen-enriched air conditioning system (30) is connected to the air separation module (26) and is configured to cool nitrogen-enriched air. The controller (46) controls nitrogen-enriched air temperature and nitrogen-enriched air flow rate at the nitrogen-enriched air outlet (44).
Abstract:
The invention relates to a plant (1) for manufacturing warm mix asphalts which comprises: a first mobile platform (10) for feeding in a controlled manner the aggregates of the warm mix asphalt to a second mobile platform (30), wherein said aggregates are heated, or directly to a fourth mobile platform (20); a second mobile platform (30) wherein the aggregates coming from the first mobile platform (10) are heated; a third mobile platform (40) wherein the aggregates coming from the second mobile platform (30) are filtered; a fourth mobile platform (20) wherein the material coming from the exit of the second mobile platform (30) or arriving directly from the first mobile platform (10) is mixed, the mixed materials being different according to the desired end product.
Abstract:
A microfluidic fluid delivery device and method. The device includes a reservoir and a transport member. The device includes a microfluidic delivery member including a microfluidic die configured to release a fluid composition from the device. The microfluidic delivery member includes an adapter configured to receive an end portion of the transport member, wherein a capillary passage is formed between the adapter and the transport member. The capillary passage has a largest effective pore size that is smaller than the average effective pore size of the transport member.
Title translation:Beschickungsbehälterund Verfahren zur zeitgleichen Hochdruck- und Temperaturbehandlung eines Nahrungsmittels in einem Hochdruckkessel