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introduction

技術簡介

工業廢水深度處理回用及零排放資源化技術

工(gong)業廢(fei)水深度處理回(hui)用(yong)及零排放技術(shu)系(xi)超濾膜(mo)(mo)(mo)、納(na)濾膜(mo)(mo)(mo)、電(dian)驅動膜(mo)(mo)(mo)等(deng)(deng)膜(mo)(mo)(mo)工(gong)藝模塊(kuai)與砂濾、臭氧活性炭、樹脂吸附等(deng)(deng)非膜(mo)(mo)(mo)過(guo)濾、凈化模塊(kuai)的工(gong)藝集成(cheng)技術(shu)。

該技(ji)術主(zhu)要應(ying)用(yong)(yong)領(ling)域(yu)為(wei)工(gong)業廢(fei)水(shui)深度(du)處(chu)(chu)(chu)理及(ji)資源化領(ling)域(yu),工(gong)藝主(zhu)要包括預(yu)處(chu)(chu)(chu)理、中空纖維超濾膜(mo)連續過濾、反滲(shen)透膜(mo)連續濃縮及(ji)電滲(shen)析濃縮等。技(ji)術可用(yong)(yong)于(yu)高品質(zhi)再生(sheng)水(shui)回用(yong)(yong),也可進行物質(zhi)分離(li)實(shi)現廢(fei)水(shui)中固體(ti)鹽分的綜合利用(yong)(yong)。工(gong)業廢(fei)水(shui)深度(du)處(chu)(chu)(chu)理回用(yong)(yong)及(ji)零排放技(ji)術在不(bu)同應(ying)用(yong)(yong)情境下具(ju)有不(bu)同特點,具(ju)體(ti)而言(yan):

A、在工(gong)(gong)業(ye)廢水中(zhong)水回用(yong)領域(yu),公(gong)(gong)司(si)技術(shu)主要目標(biao)是(shi)使工(gong)(gong)業(ye)廢水達到生產工(gong)(gong)藝(yi)(yi)用(yong)水標(biao)準,實現回用(yong)水最大化的目標(biao)。公(gong)(gong)司(si)依托自主開發的“高效(xiao)預處(chu)理系統+超濾工(gong)(gong)藝(yi)(yi)+多段連續膜(mo)濃(nong)縮(suo)技術(shu)”的處(chu)理工(gong)(gong)藝(yi)(yi)對(dui)工(gong)(gong)業(ye)廢水進行深(shen)度(du)(du)處(chu)理,利用(yong)公(gong)(gong)司(si)中(zhong)空纖維超濾膜(mo)物理強度(du)(du)高、過濾精度(du)(du)高等技術(shu)優勢,結合其(qi)他(ta)種(zhong)類膜(mo)材料、膜(mo)組件和相關技術(shu),解(jie)決了(le)傳統工(gong)(gong)藝(yi)(yi)中(zhong)膜(mo)故障率(lv)高、回用(yong)水回收率(lv)低的缺點(dian);

B、在工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)零排放領(ling)域,公(gong)司(si)技術(shu)的(de)主(zhu)要目標是實(shi)現工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)深度(du)(du)(du)處理過程中的(de)減量化、資(zi)源化。通過有(you)(you)效分離工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)中雜質和有(you)(you)機污染物,使(shi)經過上(shang)述技術(shu)處理后的(de)工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)能夠(gou)進(jin)(jin)行(xing)有(you)(you)效回用,降低工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)深度(du)(du)(du)處理過程中的(de)能耗。公(gong)司(si)依靠自主(zhu)研發(fa)的(de)“連續超濾過濾工(gong)(gong)藝+納濾分鹽(yan)(yan)工(gong)(gong)藝+高(gao)效電滲析及高(gao)壓反滲透工(gong)(gong)藝”實(shi)現有(you)(you)效對工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)進(jin)(jin)行(xing)深度(du)(du)(du)處理,提高(gao)回用效率(lv)。同時對處理后的(de)含鹽(yan)(yan)量高(gao)的(de)工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)進(jin)(jin)行(xing)蒸(zheng)發(fa)結晶,該(gai)工(gong)(gong)業(ye)(ye)廢(fei)(fei)(fei)水(shui)(shui)鹽(yan)(yan)濃度(du)(du)(du)高(gao)、水(shui)(shui)量少,可(ke)顯著降低蒸(zheng)發(fa)結晶單元(yuan)投資(zi)和運行(xing)費用。


Project case

項目案例

江蘇省南通市某造紙廢水零排放工程項目

原水類型:造紙(zhi)綜合排放廢(fei)水

處理規模(m3?):17500

處理(li)工(gong)藝:UF+RO+ED

新建特闊漂整(南通)有限公司零排放項目

原水類型:印染廢水

處理規模(m3/d):3000

處(chu)理工藝:MBR+臭氧(yang)活性(xing)炭+高效沉(chen)淀+離子交換+超(chao)濾+反滲透+納濾+MVR

江蘇省申特鋼鐵生產廢水處理項目

原水類型(xing):電鍍生(sheng)產廢水

處理規模(m3/d):4000

處理(li)工藝(yi):預處理(li)+生(sheng)化+MBR

出水指標:達標排放(一級A標準)

天津市某化工公司工程項目(一、二期)

原水類型(xing):綜合排放(fang)水

處(chu)理規(gui)模(mo)(m3/d ):17000

處(chu)理工藝:砂濾+自清(qing)洗過濾器(qi)+UF+RO

浙江嘉興某織染有限公司項目

原水類型:印染廢水

處理規模(mo)(m3/d ):10000

處理(li)工藝:MBR+RO