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020 _a9781786307859
020 _a9781394226047
_q(electronic book)
020 _a1394226047
_q(electronic book)
020 _a9781394226061
_q(electronic book)
020 _a1394226063
_q(electronic book)
020 _a9781394226054
_q(electronic bk.)
020 _a1394226055
_q(electronic bk.)
020 _z1786307855
_q(hardcover)
020 _z9781786307859
_q(hardcover)
035 _a(OCoLC)1388501488
_z(OCoLC)1388317660
035 9 _a(OCLCCM-Owned)1388501488
040 _aEBLCP
_beng
_erda
_cEBLCP
_dYDX
_dOCLCQ
_dDG1
_dOCLCO
_dN$T
_dOCLCF
_dWSU
_dOCLCO
_dXII
_dOCLCL
041 _aeng
049 _aMAIN
050 4 _aTD433
_b.K33 2023
082 0 0 _223
_a 628.162
100 1 _aGaid, Kader,
_eauthor.
245 1 0 _aDrinking water treatment.
_n3,
_pOrganic and mineral micropollutants /
_cKader Gaid.
246 3 0 _aOrganic and mineral micropollutants
264 1 _aLondon :
_bISTE Ltd ;
_aHoboken, NJ :
_bJohn Wiley & Sons, Inc.,
_c2023.
264 4 _c©2023
300 _a1 online resource :
_billustrations
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aEcological sciences series
500 _a14.2.2. Nanofiltration membranes
504 _aIncludes bibliographical references and index.
505 0 _aCover -- Title Page -- Copyright Page -- Contents -- Chapter 10. Removal of Micropollutants -- 10.1. Introduction -- 10.2. Pesticides -- 10.3. Pharmaceuticals and industrial waste -- 10.4. Pesticide removal technologies and emerging MPs -- 10.4.1. Adsorption onto activated carbon (AC) -- 10.4.2. Ozonation -- 10.4.3. Ozone-activated carbon combination -- 10.4.4. Advanced chemical oxidation -- 10.4.5. Nanofiltration and reverse osmosis membranes -- 10.5. Frogbox: an effective monitoring and control tool -- 10.6. The evolution of micropollutants in drinking water plants -- 10.7. References
505 8 _aChapter 11. Removal of Perfluorinated Compounds -- 11.1. Physicochemical properties -- 11.2. Presence in the water -- 11.3. Drinking water regulations -- 11.4. Treatments -- 11.4.1. Coagulation-flocculation-settling (or flotation) -- 11.4.2. Chemical oxidation -- 11.4.3. UV oxidation -- 11.4.4. Activated carbon -- 11.4.5. High-pressure membranes: nanofiltration and reverse osmosis -- 11.5. Conclusion -- 11.6. References -- Chapter 12. Biological Removal of Ammonia -- 12.1. The principle of biological nitrification -- 12.2. Design parameters -- 12.2.1. Dissolved oxygen -- 12.2.2. Filtration rate
505 8 _a12.2.3. NH4+ concentration removed as a function of temperature (°C) -- 12.2.4. Applicable volume load -- 12.2.5. Contact time -- 12.2.6. Material height -- 12.3. Factors limiting oxygen -- 12.3.1. Mineral carbon -- 12.3.2. pH -- 12.3.3. Temperature -- 12.3.4. Other elements -- 12.3.5. Biological filter washing -- 12.4. Implementation -- 12.4.1. Sand filtration -- 12.5. Biofilters (Biocarbon® process) -- 12.6. Water treatment stations -- 12.6.1. Treatment stations with conventional sand, dual media or GAC filtration -- 12.6.2. Treatment stations with Biocarbon® filters -- 12.7. References
505 8 _aChapter 13. Nitrate Removal -- 13.1. Biological treatment -- 13.1.1. Biochemical reactions -- 13.1.2. Nitrite formation -- 13.1.3. The bacteriological aspect -- 13.1.4. Biofilter description (Biodenit® process) -- 13.1.5. Water treatment stations including biological denitrification -- 13.1.6. Factors affecting biological denitrification -- 13.1.7. Design parameters: applied volumic load -- 13.1.8. Design parameters: minimum contact time (tc min) -- 13.1.9. Design parameters: height of Biodagen® material (m) -- 13.1.10. Design parameters: material volume (m3) -- 13.1.11. Partial treatment
505 8 _a13.1.12. Sludge production -- 13.1.13. The reagents -- 13.1.14. Biological denitrification implementation and exploitation -- 13.2. Treatment with ion exchange resins -- 13.2.1. General exchange mechanism (Ecodenit process) -- 13.2.2. Ecodenit® process technology -- 13.2.3. Integration into the water treatment station -- 13.2.4. Packaged solutions -- 13.3. Nitrate removal by high pressure membranes -- 13.4. References -- Chapter 14. Removal of Perchlorates -- 14.1. General aspects -- 14.2. Main processes for removing perchlorate ions -- 14.2.1. Ion exchange resins
520 _aFor almost two centuries, the huge number of treatments available to guarantee water quality has grown alongside technological progress, the strengthening of industry norms and the reinforcement of consumer expectations. New treatment methods have been developed according to the advancement of knowledge and new sanitary regulations. This five-volume book sets out to clearly present the variety of treatments available along with their performance, limitations and conditions of use as well as ways to combine them to produce safe drinking water, which is a basic need essential to everyday life.
588 _aDescription based on online resource; title from digital title page (viewed on August 16, 2023).
650 0 _aDrinking water
_xPurification.
_0http://id.loc.gov/authorities/subjects/sh93003245
650 0 _aMicropollutants.
_0http://id.loc.gov/authorities/subjects/sh85084896
655 4 _aElectronic books.
776 0 8 _iPrint version:
_aGaid, Kader
_tDrinking Water Treatment, Organic and Mineral Micropollutants
_dNewark : John Wiley & Sons, Incorporated,c2023
_z9781786307859
830 0 _aEcological sciences (ISTE Ltd.)
_0http://id.loc.gov/authorities/names/n2017183953
856 4 0 _uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394226061
_yFull text is available at Wiley Online Library. Click here to view.
942 _2ddc
_cER