环境工程毕业设计外文翻译--工业废水回用的接触反应策略
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1、PDF外文:http:/ 3452 字 出处: Catalysis today, 1999, 53(1): 3-9 Catalytic strategies for industrial water re-use F.E. Hancock Synetix, Billingham, Cleveland, TS23 1LB, UK Abstract The use of catalytic processes in pollution abatement and resource recovery is wides
2、pread and of significant economic importance R.J. Farrauto, C.H. Bartholomew, Fundamentals of Industrial Catalytic Processes, Blackie Academic and Professional,1997. For water recovery and re-use chemo-catalysis is only just starting to make an impact although bio-catalysis is well established J.N.
3、Horan, BiologicalWastewater Treatment Systems; Theory and Operation, Chichester, Wiley, 1990. This paper will discuss some of the principles behind developing chemo-catalytic processes for water re-use. Within this context oxidative catalytic chemistry has many opportunities to underpin the developm
4、ent of successful processes and many emerging technologies based on this chemistry can be considered . Keywords: COD removal; Catalytic oxidation; Industrial water treatment 1.Introduction Industrial water re-use in Europe has not yet started on the large scale. However, with potential
5、 long term changes in European weather and the need for more water abstraction from boreholes and rivers, the availability of water at low prices will become increasingly rare. As water prices rise there will come a point when technologies that exist now (or are being developed) will make water recy
6、cle and re-use a viable commercial operation. As that future approaches, it is worth stating the most important fact about wastewater improvement avoid it completely if at all possible! It is best to consider water not as a naturally available cheap solvent but rather, difficult to purify, easily co
7、ntaminated material that if allowed into the environment will permeate all parts of the biosphere. A pollutant is just a material in the wrong place and therefore design your process to keep the material where it should be contained and safe. Avoidance and then minimisation are the two first steps i
8、n looking at any pollutant removal problem. Of course avoidance may not be an option on an existing plant where any changes may have large consequences for plant items if major flowsheet revision were required. Also avoidance may mean simply transferring the issue from the aqueous phase to the gas p
9、hase. There are advantages and disadvantages to both water and gas pollutant abatement. However, it must be remembered that gas phase organic pollutant removal (VOC combustion etc.,) is much more advanced than the equivalent water COD removal and therefore worth consideration 1. Because these aspect
10、s cannot be over-emphasised, a third step would be to visit the first two steps again. Clean-up is expensive, recycle and re-use even if you have a cost effective process is still more capital equipment that will lower your return on assets and make the process less financially attractive. At presen
11、t the best technology for water recycle is membrane based. This is the only technology that will produce a sufficiently clean permeate for chemical process use. However, the technology cannot be used in isolation and in many (all) cases will require filtration upstream and a technique for handling t
12、he downstream retentate containing the pollutants. Thus, hybrid technologies are required that together can handle the all aspects of the water improvement process6,7,8. Hence the general rules for wastewater improvement are: 1. Avoid if possible, consider all possible ways to minimise.
13、2. Keep contaminated streams separate. 3. Treat each stream at source for maximum concentration and minimum flow. 4. Measure and identify contaminants over complete process cycle. Look for peaks, which will prove costly to manage and attempt to run the process as close to typical values
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