CN102311163A - 一种垃圾渗滤液预处理去除剂 - Google Patents

一种垃圾渗滤液预处理去除剂 Download PDF

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CN102311163A
CN102311163A CN201110083872A CN201110083872A CN102311163A CN 102311163 A CN102311163 A CN 102311163A CN 201110083872 A CN201110083872 A CN 201110083872A CN 201110083872 A CN201110083872 A CN 201110083872A CN 102311163 A CN102311163 A CN 102311163A
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remover
percolate
treatment
garbage leachate
active carbon
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刘婷婷
夏志先
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SHANGHAI FENGXIN ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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SHANGHAI FENGXIN ENVIRONMENTAL PROTECTION TECHNOLOGY Co Ltd
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Abstract

本发明涉及一种垃圾渗滤液预处理去除剂,包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为85.0%、10.0%、5.0%;三者混合后,其中最佳H2O2/Fe2+摩尔比为2:1。本发明有益效果为:通过将活性炭与硫酸亚铁、双氧水按照一定的配比混合,从而达到成本较低、设备简单、操作方便、处理速度快、可达到更高COD去除率的目的,从而提高垃圾渗滤液的可生化性。

Description

一种垃圾渗滤液预处理去除剂
技术领域
本发明涉及一种高浓度有机难降解水质污染物的去除剂,尤其涉及一种垃圾渗滤液预处理去除剂。
背景技术
目前城市垃圾的处理方法主要有焚烧、堆肥和填埋等;其中,垃圾卫生填埋法由于成本低、技术相对简单、处理迅速,因此是国内外应用最为广泛的处理方式之一。在我国城市垃圾处理中约90%采用卫生填埋法,在垃圾堆放过程中,由于压实和微生物分解作用,垃圾中所含的污染物将随水分溶出,并与降雨或径流等一起形成垃圾渗滤液。 此垃圾渗滤液是一种含有各种有机和无机污染物的液体,是一种高浓度有机废水,其成分主要由垃圾种类和垃圾成分所决定并随垃圾填埋场的“年龄”而变化,含有高浓度的COD、BOD5以及氨氮,是垃圾渗滤液的重要水质特征;而渗滤液会对地下水、地表水及垃圾填埋场周围环境造成污染,使地表水体缺氧、水质恶化、富营养化,威胁饮用水和工农业用水水源,使得地下水质受到污染而丧失利用价值,有机污染进入食物链将直接威胁人类健康。因此,垃圾渗滤液的处理越来越受到人们的重视,而垃圾渗滤液的COD值是衡量垃圾渗滤液处理效果的重要指标之一。处理垃圾渗滤液的方法主要有物理化学法、土地处理法和生物处理法,其中的生物处理法应用最广,但由于垃圾渗滤液含有多种有毒有害的难降解有机物,不适合用生物法直接处理,通常采用Fenton试剂作为垃圾渗滤液的预处理;Fenton试剂法属于高级氧化法的一种,能够产生大量·OH自由基,是高浓度废水的有效处理方法,可提高废水的可生化性;但是直接投加Fenton试剂,氧化剂的利用率较低,而处理成本则相对较高。
发明内容
针对以上缺陷,本发明提供一种成本较低、设备简单、操作方便、处理速度快、可达到更高COD去除率的垃圾渗滤液预处理去除剂,以解决现有污水处理技术的诸多不足。
为实现上述目的,本发明采用以下技术方案:
一种垃圾渗滤液预处理去除剂,包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为85.0%、10.0%、5.0%;三者混合后,其中最佳H2O2 / Fe2+摩尔比为2:1。
本发明所述的垃圾渗滤液预处理去除剂的有益效果为:通过将活性炭与硫酸亚铁、双氧水按照一定的配比混合,从而达到成本较低、设备简单、操作方便、处理速度快、可达到更高COD去除率的目的,从而提高垃圾渗滤液的可生化性。
具体实施方式
实施例1
本发明实施例所述的垃圾渗滤液预处理去除剂,包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为82.0%、12.4%、5.6%,最佳H2O2 / Fe2+摩尔比为2:1;在药剂投入废水之前,先采用NaOH或H2SO4将水样的pH调节到2-4,投加后的最佳反应时间为30-50min。
实施例2
本发明实施例所述的垃圾渗滤液预处理去除剂,包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为77.0%、16.0%、7.0%,最佳H2O2 / Fe2+摩尔比为2:1;在药剂投入废水之前,先采用NaOH或H2SO4将水样的pH调节到2-4,投加后的最佳反应时间为30-50min。
实施例3
本发明实施例所述的垃圾渗滤液预处理去除剂,包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为85.0%、10.0%、5.0%,最佳H2O2 / Fe2+摩尔比为2:1;在药剂投入废水之前,先采用NaOH或H2SO4将水样的pH调节到2-4,投加后的最佳反应时间为30-50min。

Claims (2)

1.一种垃圾渗滤液预处理去除剂,其特征在于:包括由选取30-60目的颗粒活性炭、分子式为FeSO4·7H2O的硫酸亚铁和分子为H2O2纯度为30%的双氧水进行混合并加热搅拌而成,此三者配比重量份数依次分别为85.0%、10.0%、5.0%。
2.根据权利要求1所述的垃圾渗滤液预处理去除剂,其特征在于:三者混合后,其中最佳H2O2 / Fe2+摩尔比为2:1。
CN201110083872A 2011-04-04 2011-04-04 一种垃圾渗滤液预处理去除剂 Pending CN102311163A (zh)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5648290A (en) * 1979-09-28 1981-05-01 Taki Chem Co Ltd Treatment of waste water containing organic substance
CN101092262A (zh) * 2006-06-23 2007-12-26 哈尔滨工业大学 草浆造纸中段废水处理的制备方法
CN101147854A (zh) * 2007-07-23 2008-03-26 南京工业大学 连续铁碳微电解流化床设备
CN101486518A (zh) * 2009-02-27 2009-07-22 哈尔滨工业大学 类芬顿-流化床污水处理装置及其处理污水的方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5648290A (en) * 1979-09-28 1981-05-01 Taki Chem Co Ltd Treatment of waste water containing organic substance
CN101092262A (zh) * 2006-06-23 2007-12-26 哈尔滨工业大学 草浆造纸中段废水处理的制备方法
CN101147854A (zh) * 2007-07-23 2008-03-26 南京工业大学 连续铁碳微电解流化床设备
CN101486518A (zh) * 2009-02-27 2009-07-22 哈尔滨工业大学 类芬顿-流化床污水处理装置及其处理污水的方法

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
孙大贵 等: "活性炭-Fenton组合法去除水中PAEs的研究", 《环境科学》, vol. 28, no. 12, 31 December 2007 (2007-12-31) *
王杰 等: "活性炭-Fenton预处理垃圾渗滤液的研究", 《辽宁大学学报自然科学版》, vol. 35, no. 4, 31 December 2008 (2008-12-31) *

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Application publication date: 20120111