{"id":7128,"date":"2024-07-19T06:29:28","date_gmt":"2024-07-19T06:29:28","guid":{"rendered":"https:\/\/longchangchemical.com\/?p=7128"},"modified":"2026-04-28T10:42:32","modified_gmt":"2026-04-28T10:42:32","slug":"wastewater-treatment-28-knowledge-points","status":"publish","type":"post","link":"https:\/\/longchangchemical.com\/fr\/wastewater-treatment-28-knowledge-points\/","title":{"rendered":"Traitement des eaux us\u00e9es 28 Points de connaissance"},"content":{"rendered":"<p><!-- lc-qa-start --><\/p>\n<p><strong>Quick answer:<\/strong> A practical wastewater-treatment decision starts with defining the failure mode, then checks pH, COD, ammonia, sludge condition, and process interaction before changing chemistry or operation.<\/p>\n<p><!-- lc-qa-end --><\/p>\n<p><strong>1. Mati\u00e8res solides totales :<\/strong> les \u00e9chantillons d'eau quantitatifs dans le four 105 ~ 110 \u2103 petit s\u00e9chage \u00e0 poids constant, le poids r\u00e9sultant :.<\/p>\n<p><strong>2. Les compos\u00e9s azot\u00e9s pr\u00e9sents dans les eaux us\u00e9es sont au nombre de quatre :<\/strong> l'azote organique, l'azote ammoniacal, l'azote nitrique et l'azote nitrique.<\/p>\n<p><strong>3. L'azote Kjeldahl (KN) est la somme de l'azote organique et de l'azote ammoniacal :<\/strong> Les indicateurs d'azote Kjeldahl peuvent \u00eatre utilis\u00e9s pour d\u00e9terminer les eaux us\u00e9es dans la m\u00e9thode biologique de traitement, l'azote nutritif est une base suffisante.<\/p>\n<p><strong>4. Il existe cinq formes physiques d'huiles et de graisses dans les eaux us\u00e9es :<\/strong><\/p>\n<p>\u2460 huile flottante, l'eau statique peut flotter \u00e0 la surface du liquide, la formation d'un film d'huile, repr\u00e9sentant environ 60% de la quantit\u00e9 totale de graisse ~ 80% ;<\/p>\n<p>\u2461 huile \u00e0 l'\u00e9tat dispers\u00e9 m\u00e9caniquement, diam\u00e8tre des particules d'huile sup\u00e9rieur \u00e0 5\u03bcm, dispersion plus stable dans les eaux us\u00e9es, interface huile - eau entre l'absence de tensioactif ;<\/p>\n<p>\u2462 huile \u00e9mulsionn\u00e9e, le diam\u00e8tre des particules d'huile est \u00e9galement grand sec 5\u03bcm, mais dans l'interface huile-eau entre la pr\u00e9sence de surfactant, donc plus stable ;<\/p>\n<p>(iv) Huile adh\u00e9rente, c'est-\u00e0-dire huile fix\u00e9e \u00e0 la surface des groupes en suspension ;<\/p>\n<p>\u2464 huile dissoute, y compris dissoute dans l'eau et particules d'huile d'un diam\u00e8tre inf\u00e9rieur \u00e0 5\u03bcm perles d'huile. Les types \u2460, \u2461, \u2462, \u2463 d'huiles et de graisses peuvent \u00eatre \u00e9limin\u00e9s par des m\u00e9thodes physiques telles que la s\u00e9paration des huiles, la flottation \u00e0 l'air ou la s\u00e9dimentation, et les types \u2464 d'huiles peuvent \u00eatre \u00e9limin\u00e9s par une m\u00e9thode biologique ou une m\u00e9thode de flottation \u00e0 l'air.<\/p>\n<p><strong>5. Nombre de coliformes (valeur des coliformes) :<\/strong> est le nombre de bact\u00e9ries coliformes contenues dans chaque litre d'\u00e9chantillon d'eau, en termes de un\/l.<\/p>\n<p><strong>6. Pollution des masses d'eau :<\/strong> Il s'agit du nombre de polluants d\u00e9vers\u00e9s dans la masse d'eau en exc\u00e8s par rapport \u00e0 la teneur de fond et \u00e0 la capacit\u00e9 environnementale de la masse d'eau, entra\u00eenant des modifications des propri\u00e9t\u00e9s physiques, chimiques et microbiologiques de l'eau, de sorte que les \u00e9cosyst\u00e8mes et les fonctions inh\u00e9rents \u00e0 la masse d'eau sont mis en p\u00e9ril.<\/p>\n<p><strong>7. Capacit\u00e9 de l'environnement aquatique :<\/strong> la charge polluante maximale admissible de la masse d'eau, \u00e9galement appel\u00e9e capacit\u00e9 de pollution de la masse d'eau, si les normes de qualit\u00e9 du milieu aquatique sont respect\u00e9es.<\/p>\n<p><strong>8. La m\u00e9thode de base du traitement des eaux us\u00e9es :<\/strong> il s'agit d'utiliser diverses technologies et moyens pour s\u00e9parer et \u00e9liminer les polluants contenus dans les eaux us\u00e9es, les recycler ou les transformer en substances inoffensives, afin que l'eau puisse \u00eatre purifi\u00e9e.<\/p>\n<p><strong>9. \u00c9tangs de stabilisation :<\/strong> une technologie de traitement biologique des eaux us\u00e9es qui consiste en un bassin d'\u00e9puration dot\u00e9 d'un am\u00e9nagement artificiel appropri\u00e9, d'une digue et d'une couche imperm\u00e9able, s'appuyant principalement sur la fonction d'\u00e9puration biologique naturelle pour purifier les eaux us\u00e9es.<\/p>\n<p><strong>10. Syst\u00e8me de traitement des eaux us\u00e9es :<\/strong> appartient \u00e9galement \u00e0 la cat\u00e9gorie du traitement naturel des eaux us\u00e9es, c'est-\u00e0-dire qu'en contr\u00f4lant artificiellement les conditions, les eaux us\u00e9es seront affect\u00e9es \u00e0 la terre. Gr\u00e2ce au syst\u00e8me sol-plante, une s\u00e9rie de processus d'\u00e9puration physique, chimique, physico-chimique et biochimique est mise en \u0153uvre, de sorte que les eaux us\u00e9es sont purifi\u00e9es dans le cadre d'un processus de traitement des eaux us\u00e9es.<\/p>\n<p><strong>11. Syst\u00e8me de traitement des zones humides :<\/strong> les eaux us\u00e9es sont d\u00e9vers\u00e9es dans le sol qui est souvent satur\u00e9 d'eau et o\u00f9 poussent des plantes r\u00e9sistantes \u00e0 l'eau telles que les roseaux, les buissons et autres mar\u00e9cages ; les eaux us\u00e9es s'\u00e9coulent dans une certaine direction, dans le flux du processus, dans les plantes r\u00e9sistantes \u00e0 l'eau et dans les sols sous l'action conjointe des eaux us\u00e9es qui sont purifi\u00e9es par un processus de traitement des terres.<\/p>\n<p><strong>12. Traitement en profondeur :<\/strong> Lorsque la norme d'effluent du traitement des eaux us\u00e9es concerne certains polluants sp\u00e9cifiques, le processus de traitement est souvent appel\u00e9 traitement en profondeur.<\/p>\n<p><strong>13. boues activ\u00e9es (deux expressions)<\/strong><\/p>\n<p>Concept 1 : L'a\u00e9ration des eaux us\u00e9es domestiques consiste \u00e0 injecter de l'air dans les eaux us\u00e9es ; apr\u00e8s une p\u00e9riode prolong\u00e9e, un floc brun jaun\u00e2tre se forme dans les eaux us\u00e9es. Ce floc est principalement compos\u00e9 d'un grand nombre de groupes microbiens reproducteurs, il est facile \u00e0 pr\u00e9cipiter et \u00e0 s\u00e9parer de l'eau, et permet aux eaux us\u00e9es d'\u00eatre purifi\u00e9es, clarifi\u00e9es, ce floc est appel\u00e9 \"boues activ\u00e9es\" boues biologiques.<\/p>\n<p>Concept 2 : La boue activ\u00e9e est la substance principale du syst\u00e8me de traitement par boues activ\u00e9es. Les boues activ\u00e9es sont peupl\u00e9es de micro-organismes dot\u00e9s d'une forte vitalit\u00e9. Sous l'action de la fonction m\u00e9tabolique du groupe microbien, les boues activ\u00e9es ont uniquement la capacit\u00e9 de transformer les polluants organiques en substances inorganiques stables, c'est pourquoi elles sont appel\u00e9es \"boues activ\u00e9es\".<\/p>\n<p><strong>14. Le contenu \u00e9nerg\u00e9tique des boues activ\u00e9es :<\/strong> le rapport entre le montant de <strong>organique<\/strong> (F) \u00e0 la quantit\u00e9 de micro-organismes (M) (F\/M).<\/p>\n<p><strong>15. M\u00e9tabolisme des micro-organismes :<\/strong> Les micro-organismes des boues activ\u00e9es survivent dans le bassin d'a\u00e9ration et absorbent en permanence les polluants organiques pr\u00e9sents dans les eaux us\u00e9es de leur milieu environnant pour les ing\u00e9rer et les absorber.<\/p>\n<p><strong>16. Technologie de traitement par boues activ\u00e9es,<\/strong> est l'adoption d'une s\u00e9rie de mesures techniques de renforcement artificiel et de contr\u00f4le, de sorte que les micro-organismes des boues activ\u00e9es aient une capacit\u00e9 d'oxydation et de d\u00e9composition de la mati\u00e8re organique comme fonction physiologique principale. L'oxydation et la d\u00e9composition de la mati\u00e8re organique, qui constituent les principales fonctions physiologiques, jouent pleinement leur r\u00f4le. Pour atteindre l'objectif d'\u00e9puration des eaux us\u00e9es de la technologie du g\u00e9nie biologique.<\/p>\n<p><strong>17. Concentration des mati\u00e8res en suspension dans les liquides m\u00e9lang\u00e9s MLSS :<\/strong> \u00e9galement connue sous le nom de concentration des boues liquides m\u00e9lang\u00e9es, qui est exprim\u00e9e dans l'unit\u00e9 de volume du bassin d'a\u00e9ration du liquide m\u00e9lang\u00e9 contenu dans le poids total des solides des boues activ\u00e9es.<\/p>\n<p><strong>18. Concentration des liquides mixtes volatils en suspension MLVSS :<\/strong> Cet indice est exprim\u00e9 dans la partie de la concentration en mati\u00e8res organiques des boues activ\u00e9es liquides m\u00e9lang\u00e9es.<\/p>\n<p><strong>19. Indice de volume des boues SVI appel\u00e9 \"indice de boues\" :<\/strong> La signification physique de cet indicateur est la suivante : dans le bassin d'a\u00e9ration, \u00e0 la sortie du m\u00e9lange, apr\u00e8s 30 minutes de pr\u00e9cipitation statique, chaque g de boue s\u00e8che form\u00e9 par la s\u00e9dimentation de la boue occup\u00e9e par le volume, en ml.<\/p>\n<p><strong>20. Taux de d\u00e9cantation des boues SV :<\/strong> Le volume du m\u00e9lange dans le cylindre apr\u00e8s 30 minutes de formation de boues pr\u00e9cipit\u00e9es repr\u00e9sente le pourcentage du volume du m\u00e9lange d'origine, exprim\u00e9 en %.<\/p>\n<p><strong>21. \u00c2ge des boues :<\/strong> la quantit\u00e9 totale de boues activ\u00e9es dans le bassin d'a\u00e9ration (VX) et le rapport entre la quantit\u00e9 de boues \u00e9vacu\u00e9es par jour, c'est-\u00e0-dire le temps de s\u00e9jour moyen des boues activ\u00e9es dans le bassin d'a\u00e9ration, qui est \u00e9galement connu sous le nom de \"temps de s\u00e9jour moyen des biosolides\" :<\/p>\n<p><strong>22. Charge de boues DBO (Ns) :<\/strong> exprim\u00e9e dans l'unit\u00e9 de poids (kg) du bassin d'a\u00e9ration des boues activ\u00e9es, dans une unit\u00e9 de temps (1j) \u00e0 accepter, et qui seront d\u00e9grad\u00e9es \u00e0 un degr\u00e9 pr\u00e9d\u00e9termin\u00e9 de polluants organiques (DBO).<\/p>\n<p><strong>23. Unit\u00e9 de charge volum\u00e9trique (Nv) :<\/strong> Le volume du bassin d'a\u00e9ration (m3), dans une unit\u00e9 de temps (1 jour), peut \u00eatre accept\u00e9 et sera d\u00e9grad\u00e9 \u00e0 un degr\u00e9 pr\u00e9d\u00e9termin\u00e9 de polluants organiques (DBO).<\/p>\n<p><strong>24. M\u00e9thode des boues activ\u00e9es :<\/strong> des mesures artificielles visant \u00e0 cr\u00e9er des conditions propices au renforcement de la fonction m\u00e9tabolique des micro-organismes des boues activ\u00e9es, afin d'acc\u00e9l\u00e9rer la d\u00e9gradation des polluants organiques dans la technologie de traitement biologique des eaux us\u00e9es.<\/p>\n<p><strong>25. L'essence de la m\u00e9thode du biofilm :<\/strong> Il s'agit de cr\u00e9er des micro-organismes de la classe des bact\u00e9ries et des champignons, ainsi que des protozoaires, apr\u00e8s la classe animale des micro-animaux attach\u00e9s au m\u00e9dia filtrant ou \u00e0 un support de croissance et de d\u00e9veloppement, et la formation d'une boue biologique membranaire sur ce m\u00e9dia - biofilm.<\/p>\n<p><strong>26. Biofilm :<\/strong> attach\u00e9s \u00e0 la croissance de la surface du mat\u00e9riau solide par une vari\u00e9t\u00e9 de micro-organismes form\u00e9s par les agr\u00e9gats biologiques de la membrane.<\/p>\n<p><strong>27. Biofiltre :<\/strong> m\u00e9thode de traitement biologique artificiel d\u00e9velopp\u00e9e sur la base de la pratique de l'irrigation des eaux us\u00e9es.<\/p>\n<p><strong>28. Le principe de base de la nouvelle th\u00e9orie de l'\u00e9limination de l'azote :<\/strong> d'abord oxyder partiellement l'azote ammoniacal en azote nitrique, contr\u00f4ler le rapport NH4+ et NO2- 1:1, puis r\u00e9aliser l'objectif d'\u00e9limination de l'azote par l'oxydation ana\u00e9robie de l'ammoniac sous la forme d'une d\u00e9nitrification.<\/p>\n<p>&nbsp;<\/p>\n<table style=\"border-collapse: collapse; width: 667.52pt;\" border=\"0\" width=\"890\" cellspacing=\"0\" cellpadding=\"0\">\n<tbody>\n<tr style=\"height: 63.00pt;\">\n<td class=\"et3\" style=\"height: 63pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"84\"><strong>Phosphonates Antiscalants, inhibiteurs de corrosion et agents ch\u00e9lateurs<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><span style=\"color: #00ccff;\"><a style=\"color: #00ccff;\" href=\"https:\/\/longchangchemical.com\/fr\/products\/atmp-cas-6419-19-8\/\">Acide aminotrim\u00e9thyl\u00e8ne phosphonique (ATMP)<\/a><\/span><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 6419-19-8<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><span style=\"color: #00ccff;\"><a style=\"color: #00ccff;\" href=\"https:\/\/longchangchemical.com\/fr\/products\/hedp-cas-2809-21-4-2\/\">Acide 1-Hydroxy Ethylid\u00e8ne-1,1-Diphosphonique (HEDP)<\/a><\/span><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">N\u00b0 CAS 2809-21-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/edtmpa-solid-cas-1429-50-1\/\"><span style=\"color: #00ccff;\">Acide \u00e9thyl\u00e8ne diamine t\u00e9tra (m\u00e9thyl\u00e8ne phosphonique) EDTMPA (solide)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 1429-50-1<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/dtpmpa-cas-15827-60-8\/\"><span style=\"color: #00ccff;\">Acide di\u00e9thyl\u00e8ne triamine penta (m\u00e9thyl\u00e8ne phosphonique) (DTPMPA)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 15827-60-8<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/pbtc-cas-37971-36-1\/\"><span style=\"color: #00ccff;\">Acide 2-Phosphonobutane -1,2,4-Tricarboxylique (PBTC)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 37971-36-1<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hpaa-cas-23783-26-8\/\"><span style=\"color: #00ccff;\">Acide 2-Hydroxy Phosphonoac\u00e9tique (HPAA)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 23783-26-8<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hmdtmpa-cas-23605-74-5\/\"><span style=\"color: #00ccff;\">Acide hexa-m\u00e9thyl\u00e8ne-diamine-t\u00e9tra (m\u00e9thyl\u00e8ne-phosphonique) HMDTMPA<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 23605-74-5<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Acide polyamino poly\u00e9ther m\u00e9thyl\u00e8ne phosphonique (PAPEMP)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\"><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/bhmtpmp-cas-34690-00-1\/\"><span style=\"color: #00ccff;\">Bis(acide hexa-m\u00e9thyl\u00e8ne triamine penta (m\u00e9thyl\u00e8ne phosphonique)) BHMTPMP<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">N\u00b0 CAS 34690-00-1<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hempa-cas-5995-42-6\/\"><span style=\"color: #00ccff;\">Acide hydroxy\u00e9thylamino-Di(m\u00e9thyl\u00e8ne phosphonique) (HEMPA)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 5995-42-6<\/td>\n<\/tr>\n<tr style=\"height: 15.75pt;\">\n<td class=\"et3\" style=\"height: 15.75pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"21\"><strong>Sels de phosphonates<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/atmp-na4-cas-20592-85-2\/\"><span style=\"color: #00ccff;\">Sel t\u00e9tra-sodique de l'acide aminotrim\u00e9thyl\u00e8ne phosphonique (ATMP-Na4)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 20592-85-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/atmp-na5-cas-2235-43-0\/\"><span style=\"color: #00ccff;\">Sel penta-sodique de l'acide aminotrim\u00e9thyl\u00e8ne phosphonique (ATMP-Na5)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 2235-43-0<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hedp-na-cas-29329-71-3\/\"><span style=\"color: #00ccff;\">Mono-sodium de l'acide 1-Hydroxy Ethylid\u00e8ne-1,1-Diphosphonique (HEDP-Na)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 29329-71-3<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hedp-na2-cas-7414-83-7\/\"><span style=\"color: #00ccff;\">\u00a0(HEDP-Na2)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 7414-83-7<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel t\u00e9tra sodique de l'acide 1 hydroxy \u00e9thylid\u00e8ne-1,1 diphosphonique (HEDP-Na4)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 3794-83-0<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de potassium de l'acide 1 hydroxy \u00e9thylid\u00e8ne-1,1 diphosphonique (HEDP-K2)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 21089-06-5<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel pentasodique de l'acide \u00e9thyl\u00e8ne diamine t\u00e9tra (m\u00e9thyl\u00e8ne phosphonique) (EDTMP-Na5)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 7651-99-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium Hepta de l'acide di\u00e9thyl\u00e8ne triamine penta (m\u00e9thyl\u00e8ne phosphonique) (DTPMP-Na7)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 68155-78-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium de l'acide di\u00e9thyl\u00e8ne triamine penta (m\u00e9thyl\u00e8ne phosphonique) (DTPMP-Na2)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 22042-96-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Acide phosphonobutane-2,2,4-tricarboxylique, sel de sodium (PBTC-Na4)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 40372-66-5<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de potassium de l'acide hexa-m\u00e9thyl\u00e8ne-diamine-t\u00e9tra (m\u00e9thyl\u00e8ne-phosphonique) HMDTMPA-K6<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 53473-28-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium partiellement neutralis\u00e9 de l'acide bis hexam\u00e9thyl\u00e8ne triamine penta (m\u00e9thyl\u00e8ne phosphonique) BHMTPH-PN(Na2)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 35657-77-3<\/td>\n<\/tr>\n<tr style=\"height: 31.50pt;\">\n<td class=\"et3\" style=\"height: 31.5pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"42\"><strong>Antiscalaire et dispersant polycarboxylique<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Acide polyacrylique (PAA) 50% 63%<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 9003-01-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium de l'acide polyacrylique (PAAS) 45% 90%<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 9003-04-7<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/hpma-cas-26099-09-2\/\"><span style=\"color: #00ccff;\">Anhydride polymal\u00e9ique hydrolys\u00e9 (HPMA)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 26099-09-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Copolym\u00e8re d'acide mal\u00e9ique et d'acide acrylique (MA\/AA)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 26677-99-6<\/td>\n<\/tr>\n<tr style=\"height: 17.00pt;\">\n<td class=\"et5\" style=\"height: 17.00pt;\" height=\"22\">Copolym\u00e8re d'acide acrylique-2-acrylamido-2-m\u00e9thylpropane sulfonique (AA\/AMPS)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 40623-75-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">TH-164 Acide phosphino-carboxylique (PCA)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 71050-62-9<\/td>\n<\/tr>\n<tr style=\"height: 31.50pt;\">\n<td class=\"et3\" style=\"height: 31.5pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"42\"><strong>Antiscalaire et dispersant biod\u00e9gradable<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 40.50pt;\">\n<td class=\"et5\" style=\"height: 54.00pt;\" rowspan=\"2\" height=\"72\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/pesa-cas-51274-37-4109578-44-1\/\"><span style=\"color: #00ccff;\">Sodium de l'acide poly\u00e9poxysuccinique (PESA)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 51274-37-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 109578-44-1<\/td>\n<\/tr>\n<tr style=\"height: 40.50pt;\">\n<td class=\"et5\" style=\"height: 54.00pt;\" rowspan=\"2\" height=\"72\"><a href=\"https:\/\/longchangchemical.com\/fr\/products\/pasp-cas-181828-06-8-35608-40-6\/\"><span style=\"color: #00ccff;\">Sel de sodium de l'acide polyaspartique (PASP)<\/span><\/a><\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 181828-06-8<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 35608-40-6<\/td>\n<\/tr>\n<tr style=\"height: 27.00pt;\">\n<td class=\"et3\" style=\"height: 27pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"36\"><strong>Biocide et algicide<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 40.50pt;\">\n<td class=\"et5\" style=\"height: 67.50pt;\" rowspan=\"3\" height=\"90\">Chlorure de benzalkonium (chlorure de dod\u00e9cyl-dim\u00e9thyl-benzyl-ammonium)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 8001-54-5,<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 63449-41-2,<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 139-07-1<\/td>\n<\/tr>\n<tr style=\"height: 40.50pt;\">\n<td class=\"et5\" style=\"height: 81.00pt;\" rowspan=\"2\" height=\"108\">Isothiazolinones<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 26172-55-4,<\/td>\n<\/tr>\n<tr style=\"height: 40.50pt;\">\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 2682-20-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sulfate de t\u00e9trakis(hydroxym\u00e9thyl)phosphonium(THPS)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 55566-30-8<\/td>\n<\/tr>\n<tr style=\"height: 17.00pt;\">\n<td class=\"et5\" style=\"height: 17.00pt;\" height=\"22\">GLUTARALDEHYDE<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 111-30-8<\/td>\n<\/tr>\n<tr style=\"height: 31.00pt;\">\n<td class=\"et3\" style=\"height: 31pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"41\"><strong>Inhibiteurs de corrosion<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium du tolyltriazole (TTA-Na)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 64665-57-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Tolyltriazole (TTA)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 29385-43-1<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium du 1,2,3-benzotriazole (BTA-Na)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 15217-42-2<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">1,2,3-Benzotriazole (BTA)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 95-14-7<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sel de sodium du 2-Mercaptobenzothiazole (MBT-Na)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 2492-26-4<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">2-Mercaptobenzothiazole (MBT)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 149-30-4<\/td>\n<\/tr>\n<tr style=\"height: 15.75pt;\">\n<td class=\"et3\" style=\"height: 15.75pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"21\"><strong>Pi\u00e9geur d'oxyg\u00e8ne<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Cyclohexylamine<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">Num\u00e9ro CAS 108-91-8<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Morpholine<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 110-91-8<\/td>\n<\/tr>\n<tr style=\"height: 15.75pt;\">\n<td class=\"et3\" style=\"height: 15.75pt; width: 667.5pt; text-align: center;\" colspan=\"2\" width=\"890\" height=\"21\"><strong>Autres<\/strong><\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Sulfosuccinate de sodium et de di\u00e9thylhexyle<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 1639-66-3<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">Chlorure d'ac\u00e9tyle<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 75-36-5<\/td>\n<\/tr>\n<tr style=\"height: 13.50pt;\">\n<td class=\"et5\" style=\"height: 13.50pt;\" height=\"18\">TH-GC Agent ch\u00e9lateur vert (acide glutamique, acide N,N-diac\u00e9tique, sel t\u00e9tra sodique)<\/td>\n<td class=\"et6\" style=\"width: 159.75pt;\" width=\"213\">No CAS 51981-21-6<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p><!-- lc-commercial-start --><\/p>\n<h2>How technical buyers and operators usually evaluate wastewater-treatment issues<\/h2>\n<p>Most wastewater-treatment problems are system problems. Teams usually get a better result when they define the process stage and water-quality target first, then review biological, chemical, and operational factors together before making a plant-scale correction.<\/p>\n<ul>\n<li><strong>Start from the process stage:<\/strong> pretreatment, biological treatment, sludge handling, and polishing steps can point to very different root causes.<\/li>\n<li><strong>Check the core water-quality data together:<\/strong> pH, COD, nitrogen, salinity, sludge condition, and dissolved oxygen often need to be read as one picture.<\/li>\n<li><strong>Review compliance and operability at the same time:<\/strong> the quickest local fix can still be the wrong commercial move if it destabilizes another part of the plant.<\/li>\n<li><strong>Use pilot or staged validation where possible:<\/strong> wastewater systems often respond differently at scale than they do in simplified bench assumptions.<\/li>\n<\/ul>\n<h3>Recommended product references<\/h3>\n<ul>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/fr\/product\/photoinitiator-cat-261-cas-32760-80-8\/\">CHLUMINIT 261<\/a>:<\/strong> A direct cationic-photoinitiator reference when cationic curing routes are being screened.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/fr\/product\/hpma-monomer-cas-27813-02-1\/\">CHLUMICRYL HPMA<\/a>:<\/strong> Useful when more polarity and adhesion support are needed in the reactive package.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/fr\/product\/chlumiwe-3280\/\">CHLUMIWE 3280<\/a>:<\/strong> A strong wetting-agent reference for inks, coatings, and difficult substrate wetting.<\/li>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/fr\/product\/chlumiwe-3071-organic-silicone-surfactant-organosilicone-wetting-agent\/\">CHLUMIWE 3071<\/a>:<\/strong> Useful when organosilicone wetting support is needed in a broad application screen.<\/li>\n<\/ul>\n<h3>FAQ for buyers and formulators<\/h3>\n<p><strong>Why do many wastewater problems resist one-step fixes?<\/strong><br \/>Because the visible symptom is often created by several interacting process variables rather than one isolated cause.<\/p>\n<p><strong>Should operational changes be evaluated only by one output indicator?<\/strong><br \/>Usually no. A stable treatment decision should consider process balance, compliance, sludge behavior, and the effect on downstream steps as well.<\/p>\n<p><!-- lc-commercial-end --><\/p>","protected":false},"excerpt":{"rendered":"<p>1. Total solids: the quantitative water samples in the 105 ~ 110 \u2103 oven small drying to constant weight, the resulting weight:. 2. Nitrogen-containing compounds in sewage are four: organic<\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[168],"tags":[],"class_list":["post-7128","post","type-post","status-publish","format-standard","hentry","category-water-treatment"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v25.3.1 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Wastewater Treatment 28 Knowledge Points - Longchang Chemical<\/title>\n<meta name=\"description\" content=\"1. 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