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印染行业污泥资源化技术研究和工程示范
引用本文:张华,杨雪峰,谷朝阳,孙志超,赵广军,薛方勤.印染行业污泥资源化技术研究和工程示范[J].环境工程,2020,38(11):152-156.
作者姓名:张华  杨雪峰  谷朝阳  孙志超  赵广军  薛方勤
作者单位:1. 中车唐山机车车辆有限公司, 河北 唐山 064000;
基金项目:水体污染控制与治理科技重大专项(十二五)
摘    要:印染行业是传统的劳动密集型产业,也是耗水大户,江浙地区是我国印染行业的集中区域。从资源化利用和实用的角度出发,针对江苏无锡某工业园区的印染污泥进行了试验研究,并根据研究结果,以常规的板框压滤工艺为主体,建设了40 t/d的印染污泥高压板框压滤脱水的示范工程。运行表明:压滤后污泥含水率平均值低于60%,并满足其作为原料送给火电厂掺烧的热值要求,达到了污泥减量化和资源化的目的。按照此示范工程处理能力估算,污泥减排率≥90%,年减排折合标准煤850 t以上。同时,压滤产生的废水通过"混凝沉淀+三维电催化氧化"预处理后,纳管排入园区的污水处理厂,未出现二次污染。

关 键 词:印染行业    污泥    板框压滤    高压隔膜
收稿时间:2019-09-12

RESEARCH AND AN ENGINEERING DEMONSTRATION OF SLUDGE DEWATERING TECHNOLOGY FOR DYEING INDUSTRY
ZHANG Hua,YANG Xue-feng,GU Chao-yang,SUN Zhi-chao,ZHAO Guang-jun,XUE Fang-qin.RESEARCH AND AN ENGINEERING DEMONSTRATION OF SLUDGE DEWATERING TECHNOLOGY FOR DYEING INDUSTRY[J].Environmental Engineering,2020,38(11):152-156.
Authors:ZHANG Hua  YANG Xue-feng  GU Chao-yang  SUN Zhi-chao  ZHAO Guang-jun  XUE Fang-qin
Institution:1. CRRC Tangshan Co., Ltd, Tangshan 064000, China;2. Beijing Guohuan Tsinghua Environmental Engineering Design and Research Institute Co., Ltd, Beijing 100084, China
Abstract:Dyeing industry is a traditional labor-intensive industry and with high water-consuming. In China, the dyeing industry is concentrated in Zhejiang and Jiangsu province. Based on the conventional plate-and-frame pressure filtration technology, the sludge of a dyeing industrial park in Wuxi, Jiangsu Province was studied experimentally. According to the research results, a 40 t/d demonstration project of sludge dewatering by high-pressure plate-and-frame pressure filtration was built. All the sludge of the dyeing industrial park were centralized treated and filtered. Sludge water content was less than 60%, which was subsequently sent to coal-fired power plant as the raw material to achieve the purpose of sludge reduction and heat resource recycling. At the same time, the wastewater after pressure filtration process was discharged to the wastewater treatment plant after coagulation sedimentation and three dimensional electrocatalysis, without secondary pollution.
Keywords:
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