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當前位置: 首頁 » 供應產品 » 工程機械 » 筑養路機械 »天通水處理設備工業廢水污水處理設備成功案例

天通水處理設備工業廢水污水處理設備成功案例

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最后更新: 2017-12-09 15:34:14
產品產地: 山東濟寧
發貨地: 山東濟寧 (發貨期:當天內發貨)
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有效期: 長期有效
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    濟寧天通設備有限公司是一家從事水處理設備生產、銷售集一體化的企業,始終堅持做出高品質產品,本著“追求、員工、技術、精神、利益”10字宗旨。現擁有一批精干的管理人員和一支高素質的專業技術隊伍,舒適優雅的辦公環境和擁有全新現代化的標準廠房。我們以質量為生命、時間為信譽、價格為競爭力的經營信念,立足與濟寧地區。

    我公司主要產品:水處理設備,污水處理設備、廢水處理設備、工業污水設備、農業廢水設備、雨水凈水設備、醫院污水設備、鋼廠廢水設備、屠宰場廢水設備、食品廠廢水處理設備等多種設備,可根據要求專業定制水處理設備。

    紡織印染工業廢水處理工程實例

     紡織印染廢水 工程概況

      青島某新建工業園規劃面積為2126畝,院內工業以織布、染整和縫紉為主。園區廢水處理工程分三期完成,每期5000m3/d,本設計是一期工程,2014年施工,2015年運行,接納的廢水主要是印染漂洗水、退漿和漂白廢水,本工藝設計不含絲光工藝廢水,該水已進行堿回收。

     紡織印染廢水 處理工藝

    1    設計廢水水質

    本工程原水設計水質和處理要求見下表。處理出水執行國家《污水綜合排放標準》(GB8978-96中的二級標準)

    Jining day general equipment co., LTD. Is a company engaged in water treatment equipment production, sales integration enterprise, always adhere to high quality products, in line with "the pursuit of, staff, technology, spirit, interest" 10 words. Now we have a group of excellent management personnel and a high quality professional technical team, comfortable and elegant office environment and the standard factory with brand-new modernization. We take quality as the life, time as the reputation, price as the competitive business faith, foothold with jining area.

    My company main products: water treatment equipment, sewage treatment equipment, wastewater treatment, industrial wastewater, agricultural wastewater, rain water purification equipment, hospital sewage equipment, steel plant waste water equipment, slaughterhouse wastewater treatment equipment, food factory waste water treatment equipment and other equipment, can professional custom according to the water treatment equipment.

    Textile printing and dyeing industrial wastewater treatment project

    General situation of textile printing and dyeing wastewater engineering

    The planned area of a new industrial park in Qingdao is 2126 mu, and the courtyard industry is mainly weaving, dyeing and sewing. Industrial park wastewater treatment project in three phases, each 5000 m after a/d, this is the first phase of design, construction, 2014, in 2015, mainly printing and dyeing wastewater of acceptance rinse water, desizing and bleaching waste water, the process design including mercerizing process wastewater, saying a alkali recovery.

    Textile printing and dyeing wastewater treatment process

    Design wastewater quality

    The water quality and treatment requirements of the original water design are shown in the table below. Disposal of water discharge standards (gb8978-96)


    2   處理工藝 

    從本工程廢水特征來看,有機污染物含量較高,生化性比較差,pH值變化大,并且色度比較高。廢水中含有染料、漿料、助劑、油劑、酸堿、纖維雜質、砂類物質等。

      針對于廢水的特點,預處理主要有自動格柵、中和反應池、曝氣調節池、初沉池等單元,預處理主要是為了去除懸浮物及可直接沉降的雜質,調整pH值,調節廢水水質及水量等,確保后續生物處理系統的處理效率。為了達到較高的COD去除率,降低出水中COD的濃度,在二級生物處理中采用半推流式活性污泥系統,其抗沖擊負荷能力明顯強于傳統推流式系統,處理效率高于傳統完全混合式。針對原水色度高的特點,同時為了進一步去除COD,在深度處理中采用了混凝沉淀脫色+曝氣生物濾池的兩級工藝,保證了出水達標排放。

     紡織印染廢水工程設計

    1    紡織印染廢水工程平面設計

    本項目位于生產區,占地面積11796㎡,長120m,寬98.3m,南北向布置。廢水由西南側原廢水儲池經泵提升進入系統,經一系列處理后的廢水自流排向處理廠北側的市政污水管道。

    紡織印染廢水工程高程設計 

    本項目高程設計時,地面標高作為處理系統的相對標高±0.00,地下構筑物標高-6.00m,地上建筑物頂標高+6.00m,地上建筑物頂標高+6.00。除格柵井、調節池、濃縮池和清水池外,其他設施大部分采用地上式,

     電氣及自動控制設計

    本印染廢水處理工程用電負荷以380V為主,一期總裝機容量為478kW,其中運行功率190kW,設置總配、變電室。本工程采用集中與現場相結合,手動與自動相結合的控制模式。自動控制以水位控制為主,調節池、清水池和中間水池設液位控制,機械格柵設時間控制。

      運行情況

    1 監測結果

    2012~2013年進行廢水處理工程設計;2013~2014年進行廢水處理工程施工、設備和管道安裝、工藝調試;2015年廢水處理工程正式運行。

    2 treatment process

    In terms of the characteristics of wastewater from this project, organic pollutants have higher content, less biochemical and higher pH value, and higher chromaticity. The waste water contains dyes, slurry, auxiliaries, oilers, acid and alkali, fiber impurities, sand substances, etc.

    According to the characteristics of wastewater in, pretreatment mainly include automatic grille, neutralization reaction pool, aeration regulating pond, pond, and other units, in the early settlement of pretreatment is to remove suspended solids and can be directly impurities, adjust pH value, adjusting effluent water quality and water, etc., to ensure the processing efficiency of the subsequent biological treatment system. In order to achieve higher COD removal rate, reduce the concentration of COD in water, in the secondary biological treatment using half pushed streaming in activated sludge system, its ability to resist impact load obviously stronger than the traditional push streaming system, processing efficiency is higher than the conventional hybrid. In order to further remove COD, the two-stage process of coagulation precipitation decolorization + aeration bio-filter is adopted in the depth treatment, which ensures the discharge of water discharge.

    Three textile printing and dyeing wastewater engineering design

    Textile printing and dyeing wastewater engineering graphic design

    This project is located in the production area, covers an area of 11796 ㎡, with 120 m long, 98.3 m wide, north and south to decorate. The waste water is pumped into the system by pump through a series of treated wastewater from the waste water storage pool in the southwest side, and then the municipal sewage pipe is placed in the north side of the treatment plant.

    Textile printing and dyeing wastewater engineering elevation design

    During the elevation design of this project, the ground level elevation as the relative elevation of the processing system is plus or minus 0.00, the elevation of the underground structure is high -6.00 m, the elevation of the above-ground buildings is high +6.00 m, and the roof elevation of the above-ground buildings is high + 6.00. In addition to grille Wells, regulating ponds, concentrated pools and water basins, most of the other facilities are on the ground,

    Electrical and automatic control design

    The power load of this printing and dyeing wastewater treatment project is mainly 380V, with a total installed capacity of 478kW, of which the operating power is 190kW, and the total fitting and transformer room are set. This project adopts the combination of focus and field, manual and automatic control mode. The automatic control is mainly controlled by water level control, the regulating pool, the water tank and the middle water tank set the level control, the mechanical grille set time control.

    Four operation conditions

    1 monitoring results

    Design of wastewater treatment project from 2012 to 2013; From 2013 to 2014, waste water treatment project construction, equipment and pipeline installation, process debugging; In 2015, the wastewater treatment project was officially operational.


     


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