1 - 10 |
Environmental impacts of seawater distillation and reverse osmosis processes Morton AJ, Callister IK, Wade NM |
11 - 18 |
Elements of environmental impact studies on coastal desalination plants Hopner T, Windelberg J |
19 - 26 |
Optimized brackish water desalination plants with minimum impact on the environment Glueckstern P, Priel M |
27 - 36 |
Environmental aspects of corrosion in MSF and RO desalination plants Oldfield JW, Todd B |
37 - 42 |
Reduction of power requirements for MSF desalination plants: The example of Al Taweelah B Sommariva C, Borsani R, Butt MI, Sultan AH |
43 - 50 |
Energy saving and desalination of water Mesa AA, Gomez CM, Azpitarte RU |
51 - 58 |
Advanced MED solar desalination plants. Configurations, costs, future - Seven years of experience at the Plataforma Solar de Almeria (Spain) Milow B, Zarza E |
59 - 66 |
Development and experience with new FILMTEC reverse osmosis membrane elements for water treatment Redondo JA |
67 - 79 |
Influence of the flow system on the inhibitory action of CaCO3 scale prevention additives Hasson D, Bramson D, LimoniRelis B, Semiat R |
81 - 82 |
Polarization phenomena in integrated reverse osmosis and membrane distillation for seawater desalination and waste water treatment Calabro V, Drioli E |
83 - 89 |
Effect of oxidation agents on reverse osmosis membrane performance to brackish water desalination Iborra MI, Lora J, Alcaina MI, Arnal JM |
91 - 97 |
Water production from brines by membrane distillation Godino MP, Pena L, Rincon C, Mengual JI |
99 - 103 |
Modeling temperature polarization phenomena for longitudinal shell-side flow in membrane distillation process Agashichev SP, Falalejev DV |
105 - 109 |
Peculiarities of boiling seawater in desalination plants Slesarenko VN, Slesarenko VV |
111 - 116 |
Design of the maximum energy efficiency desalination plant (PAME) Mesa AA, Gomez CM, Azpitarte RU |
117 - 128 |
Treatment of surface water rich in humus - Membrane filtration vs. conventional treatment Ericsson B, Tragardh G |
129 - 141 |
Nanofiltration of highly colored raw water for drinking water production Ericsson B, Hallberg M, Wachenfeldt J |
143 - 147 |
Disposal of reverse osmosis membrane concentrate Squire D, Murrer J, Holden P, Fitzpatrick C |
149 - 152 |
Choosing the electrodialyzer design and hydraulic modes for demineralization of dilute solutions Pismenskaya ND, Laktionov EV, Nikonenko VV, Zabolotsky VI |
153 - 157 |
Surface water potabilisation by means of a novel nanofiltration element DeWitte JP |
159 - 166 |
Desalination of surface water to industrial water with lower impact on the environment .1. New technological concept Mavrov V, Chmiel H, Heitele B, Rogener F |
167 - 170 |
Production of quality drinking water with membranes Pervov AG, Reztsov YV, Milovanov SB, Koptev VS, Melnikov AG |
171 - 177 |
Nanofiltration in the utilization of coal-mine brines Turek M, Gonet M |
179 - 181 |
Electrodialysis technology for deep demineralization of surface and ground water Zabolotsky VI, Nikonenko VV, Pismenskaya ND, Istoshin AG |
183 - 191 |
Chromium(III) salts recovery process from tannery wastewaters Fabiani C, Ruscio F, Spadoni M, Pizzichini M |
193 - 203 |
Quality improvement of recycled chromium in the tanning operation by membrane processes Cassano A, Drioli E, Molinari R, Bertolutti C |
205 - 211 |
Large scale operating experience in membrane systems for water and waste water reclamation Randles N |
213 - 220 |
Wastewater detoxification of organic and inorganic toxic compounds with solar collectors Marques PASS, Rosa MF, Mendes F, Pereira MC, Blanco J, Malato S |
221 - 229 |
Salt effect on the dye separation by hydrophilic membranes MajewskaNowak K, KabschKorbutowicz M, Winnicki T |
231 - 245 |
Industrial water production by utilization of a reverse osmosis and an evaporation plant Borsani R, Fazio M, Ferrando B |
247 - 253 |
Waste water treatment by membrane processes - New development in ultrafiltration, nanofiltration and reverse osmosis Rautenbach R, Vossenkaul K, Linn T, Katz T |
255 - 260 |
Increase in phosphate removal from wastewater by alternating aerobic and anaerobic conditions Sommariva C, Converti A, DelBorghi M |
261 - 271 |
Clean water recycle in sugar extraction process: Performance analysis of reverse osmosis in the treatment of sugar beet press water Bogliolo M, Bottino A, Capannelli G, DePetro M, Servida A, Pezzi G, Vallini G |
273 - 276 |
Milk whey treatment with recovery of valuable products DiGiacomo G, DelRe G, Spera D |
277 - 280 |
Electroplating rinse waste water treatment by ion exchange Dobrevsky I, DimovaTodorova M, Panayotova T |
281 - 286 |
Ultrafiltration plant for olive vegetation waters by polymeric membrane batteries Borsani R, Ferrando B |
287 - 294 |
Cogeneration with the LT-MED desalination process Kronenberg G |
295 - 313 |
Maintenance activity for partial intervention of retubing on four distillers multi-flash double-deck (capacity 3 mgd for each unit) of Abu Dhabi power station after 18 years of operation activity Franchini V |
315 - 324 |
New solutions for construction of pressure-driven membrane equipment Karelin FN, Sitnyakovsky JA, Romanov AF, Konkin WW, Parilova OF |
325 - 333 |
Improved equations for the calculation of non-equilibrium temperature loss in MSF Rautenbach R, Schafer S, Schleiden S |
335 - 344 |
Survey of long time behavior and costs of industrial fluidized bed heat exchangers Rautenbach R, Katz T |
345 - 355 |
ENEL experience of seawater desalination plants Tosi A, Guardiani GM, Concari S, Bianchi GP |
357 - 360 |
Cost effective evaporators for desalination Jaakkola H |
361 - 364 |
Small-waste technology of processing industrial waste water on the basis of thermal demineralization Sedlov AS, Ilyina IP, Sidorova SV, Shischenko VV, Potapkina EN |
365 - 374 |
Modeling multistage flash desalination plants Rosso M, Beltramini A, Mazzotti M, Morbidelli M |
375 - 379 |
Experimental investigation of the dryout at low mass velocities and pressures KuzmaKichta YA, Sedlov AS, Abramov AI, Shkondin YA, Buyakov DV, Borisov SA |