The author appears to confuse "theory T is part of a larger theory U which has bits we don't understand and bits we haven't got quite right yet" with "theory T is probably wrong".
Here theory T is "several billion years ago the universe underwent a very rapid increase in size and decrease in temperature, from something extremely hot and dense to something much more like what we see now", a.k.a. "the big bang", and theory U is a detailed account of current best theories of inflation, star formation, galaxy formation, dark matter, dark energy, etc., etc., etc.
One can see exactly the same pattern with T being "over many generations, living things evolve both at random and to adapt to their environments, and this is how the biosphere got where it now is", U being a detailed account of current best theories of evolutionary biology, palaeontology, etc., etc., etc. The people making the argument in that case are creationists, they do not understand the relevant theories very well, and by pointing out areas of doubt and difficulty they are not in fact doing anyone any good.
I don't think MazeHatter is a creationist (though I think it's possible, and some of his/her past comments do seem like they lean in that direction) but I do think s/he's adopting their tactics, and the result isn't any more helpful here than it is there. Sure, it's possible that the whole "big bang" idea might turn out to be wrong, but the fact that you can find a scattering of things we don't understand about the early universe isn't much evidence for that and has to be weighed against all the things that current cosmological theories don't get wrong, which of course you don't hear about much because "current best scientific theory predicts roughly what is observed" usually isn't news.
[EDITED to remove gratuitous assumption that MazeHatter is male.]
The way I see it is this:
Theory A. Light travels to infinity without losing light
Observation 1. Light redshifts and does not seem to travel to infinity
Theory B. The galaxies are receding, redshifting the light
Theory C. Since theory B puts us at the center of reality, let's make it so space is expanding
Theory D. If space is expanding, in the past it was smaller, and there was a beginning of time
Observation 2. The horizon problem.
Theory E. Everything interacted with everything, then hyper-expanded, then stopped hyper expanding
(skip some steps)
Theory M: Dark ...
I am submitting this on behalf of MazeHatter, who originally posted it here in the most recent open tread. Go there to upvote if you like this submission.
Begin MazeHatter:
I grew up thinking that the Big Bang was the beginning of it all. In 2013 and 2014 a good number of observations have thrown some of our basic assumptions about the theory into question. There were anomalies observed in the CMB, previously ignored, now confirmed by Planck:
http://www.esa.int/Our_Activities/Space_Science/Planck/Planck_reveals_an_almost_perfect_Universe
We are also getting a better look at galaxies at greater distances, thinking they would all be young galaxies, and finding they are not:
http://carnegiescience.edu/news/some_galaxies_early_universe_grew_quickly
http://mq.edu.au/newsroom/2014/03/11/granny-galaxies-discovered-in-the-early-universe/
B. D. Simmons et al. Galaxy Zoo: CANDELS Barred Disks and Bar Fractions. Monthly Notices of the Royal Astronomical Society, 2014 DOI: 10.1093/mnras/stu1817
http://www.sciencedaily.com/releases/2014/10/141030101241.htm
http://www.nasa.gov/jpl/spitzer/splash-project-dives-deep-for-galaxies/#.VBxS4o938jg
Although it seems we don't have to look so far away to find evidence that galaxy formation is inconsistent with the Big Bang timeline.
http://www.natureworldnews.com/articles/7528/20140611/galaxy-formation-theories-undermined-dwarf-galaxies.htm
http://arxiv.org/abs/1406.1799
Another observation is that lithium abundances are way too low for the theory in other places, not just here:
http://news.nationalgeographic.com/news/2014/09/140910-space-lithium-m54-star-cluster-science/
It also seems there is larger scale structure continually being discovered larger than the Big Bang is thought to account for:
http://www.sciencedaily.com/releases/2014/11/141119084506.htm
D. Hutsemékers, L. Braibant, V. Pelgrims, D. Sluse. Alignment of quasar polarizations with large-scale structures. Astronomy & Astrophysics, 2014
http://www.sciencedaily.com/releases/2013/01/130111092539.htm
These observations have been made just recently. It seems that in the 1980's, when I was first introduced to the Big Bang as a child, the experts in the field knew then there were problems with it, and devised inflation as a solution. And today, the validity of that solution is being called into question by those same experts:
http://www.physics.princeton.edu/~steinh/0411036.pdf
What are the odds 2015 will be more like 2014 where we (again) found larger and older galaxies at greater distances, or will it be more like 1983?