Distiller with pressure-difference maintenance
View Patent ↗A distillation unit ( 10 ) employs a fluid circuit (FIG. 8 ) in which a counterflow heat exchanger ( 102, 104, 106, 108, 110 ) transfers heat from condensate and concentrate to feed liquid to be distilled. The pumping system ( 100, 238 ) that drives fluid through the circuit is arranged to keep the pressure in the counterflow heat exchanger's condensate higher than that in its feed-liquid passage. This tends to discourage the contamination that could otherwise occur in the concentrate if the fluid isolation ordinarily maintained between those passages is compromised.
1. For distilling a liquid, a method comprising:
A) providing a fluid circuit in which is disposed:
i) an evaporator-and-condenser unit that includes a feed-liquid inlet and a condensate outlet;
ii) a counterflow heat exchanger providing a feed-fluid passage and a condensate passage separated from the feed-fluid passage by a divider that is so thermally conductive as to conduct heat from the condensate passage to the feed-fluid passage when the temperature of the fluid in the condensate passage is greater than the temperature of the fluid in the feed-fluid passage, said counterflow heat exchanger being so disposed in the fluid circuit that the fluid circuit provides fluid communication between the condensate outlet of the evaporator-and-condenser unit and the condensate passage of the counterflow heat exchanger and further provides fluid communication between the feed-liquid inlet of the evaporator-and-condenser unit and the feed-fluid passage of the counterflow heat exchanger; and
B) feeding liquid through the feed-liquid passage to the evaporator-and-condenser unit's feed-liquid inlet;
C) employing the evaporator-and-condenser unit to cause some of the feed liquid received at the evaporator-and-condenser unit's feed-liquid inlet to evaporate into a vapor, condense the vapor into a condensate, and discharge the condensate from its condensate outlet to flow through the counterflow heat exchanger's condensate passage; and
D) keeping the pressure in the condensate passage of the counterflow heat exchanger greater than the pressure in the feed-fluid passage of the counterflow heat exchanger.