I also am not sure about the whole x intercept because intuitively, what you are doing is solving for a moment arm vector using your known force and moment information. This basically gives you an equation describing all possible moment arms that have the correct distance, and plugging in y=0 basically just gives you the moment arm whose point of application lies on the xaxis, however as I said before, since you are creating the force couple system, moving the force to A means the point of application of the resultant is A which also means the line of action for the resultant passes through A which in a problem like this I would interpret as the origin.
Finding the x distance along the pipe isn't too difficult just think of the geometry. You know the distance on the non bent sections are 4.0' and 3.4' respectively. Then all your left with is the distance traversed by the bent segment. Since you know the angle of declination is 25 degrees, that means your x distance is the length along the pipe traverses multiplied by cos(25). The same goes for y except you use sine. So in the case for the force at C the, C is at 1.8' along the pipe so the coordinates for C using A as the origin would be C=(4.0+1.8cos(25), -1.8sin(25)).
As for handling the force and using the proper angle, you can look at it via trig and find it fairly quickly but I like to use a quick little trick that I learned with inclined surfaces. If you look at the force a C you notice that it is normal to the bent segment. If the bent piece were along the xaxis, the force would make a 90 degree angle with the xaxis (because it is normal). However since the bent piece has been "rotated" -25 degrees, the angle made with the xaxis after rotation is 90-25=65. Therefore the 730 lb force acts at an angle of 65 degrees