多环芳烃污染场地修复技术工程应用进展
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潘江,谢炳坤,王宇航
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1.江苏煤炭地质勘探三队,江苏常州,213000;2.北京建工环境修复股份有限公司,北京,100020;3.江苏盖亚环境科技股份有限公司,江苏苏州,215000
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摘要:针对多环芳烃类有机污染场地,系统分析目前国内主流修复技术热脱附、水泥窑、化学氧化等国内工程应用进展,介绍了应用原理、优缺点及应用成本,为多环芳烃类有机污染场地修复工程技术的选择提供参考,指出可持续绿色修复是未来应用研究方向。
关健词:多环芳烃;土壤;热脱附;水泥窑协同处置;化学氧化
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Progress in engineering application of remediation technology for contaminated sites with polycyclic aromatic hydrocarbons
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Jiang Pan , Bingkun Xie , Yuhang Wang
1.Jiangsu Third Team of Coal Geological Exploration, Changzhou, Jiangsu, 213000, China;2.Beijing Construction Engineering Environmental Remediation Co., Ltd., Beijing, 100020, China;3.Jiangsu Gaia Environmental Technology Co., Ltd., Suzhou, Jiangsu, 215000, China
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Abstract: In response to polycyclic aromatic hydrocarbon (PAH) contaminated sites, this paper systematically analyzes the progress in domestic engineering applications of mainstream remediation technologies such as thermal desorption, cement kiln co-processing, and chemical oxidation. The application principles, advantages, disadvantages, and costs of these technologies are introduced, providing references for the selection of remediation technologies for PAH-contaminated sites. The study further points out that sustainable green remediation is a future research direction in this field.
Keywords : Polycyclic aromatic hydrocarbons; Soil; Thermal desorption; Cement kiln co-processing; Chemical oxidation
参考文献 [1] 马妍,程芦,阮子渊等.近20 年中国表层土壤中多环芳烃时空布特征及源解析[J].环境科学,2021,42(3):1065-1072. [2] 冉纵信,陈靖宇,王婷婷等.典型工业区土壤多环芳烃污染特征和影响因素[J].环境科学,2019,42(10):4595-4603. [3] ACHARYA P,IVES P. Incineration at Bayou Bounfouca remediation project[J]. Waste Manage,1994,14(1):13-26. [4] RENOLDI F , LIETTI L , SAPONARO S , et al.Thermal desorption of a PAH-contaminated soil : acase study[M]//TIEZZI E,BREBBIA CA,USO J L.Advances in Ecological Sciences:19. Southampton:WIT Press,2003:1123-1132. [5] 陈星,宋昕,吕正勇,等.PAHs 污染土壤的热修复可行性[J].环境工程学报,2018,12(10):2833-2844. [6] 夏天翔,姜林,魏萌,贾晓洋,钟茂生.焦化厂土壤中PAHs 的热脱附行为及其对土壤性质的影响[J].化工学报,2014,65(04):1470-1480. [7] Librando V, Hutzinger O, Tringali G, et al.Supercritical fluid extraction of polycyclic aromatichydrocarbons from marine sediments and soil samples[J]. Chemosphere, 2004, 54(8): 1189-1197. [8] AHNCK , KIMYM , WOOSH , etal.Soilwashingusingvariousnonionicsurfactantsandtheirrecoverybyselectiveadsorptionwithactivatedcarbon[J].JHazardMater,2008,154(1/3):153-160. [9] BIACHE C,MANSUYHUAUIT L,FAURE P,eta1.Effects of thermal desorption the composition oftwo coking plant soils:Impact on solvent extnactableorganic compounds and metal bioavailability[J].Environmental Pollution,2008,156(3):67l-677. [10] HANSEN L D,NESTLER C,RINGELBERG D,etal. Extended bioremediation of PAH/PCPcontaminated soils from the POPILE wood treatmentfacility[J]. Chemosphere,2004,54(10):1481-1493. [11] 张雷,赵奇,武伟男,等.石油污染土壤生物修复技术现状与展望[J].现代化工,2018,38(1):18-22. [12] Kingston J L T,Johnson P C,Kueper B H,et al.In situthermal treatment of chlorinated solvent sourcezones[M]//Chlorinated solvent source zoneremediation. Springer,New York,NY,2014:509-557. [13] 刘鑫,黄兴如,张晓霞,等.高浓度多环芳烃污染土壤的微生物-植物联合修复技术研究[J].南京农业大学学报,2017,40(4):632-640. [14] Librando V, Hutzinger O, Tringali G, et al.Supercritical fluid extraction of polycyclic aromatichydrocarbons from marine sediments and soil samples[J]. Chemosphere, 2004, 54(8): 1189-1197. [15] 谢炳坤,韩进,李书鹏等.多环芳烃类有机污染场地原位电热脱附修复工程实例[J].化工环保,2021,41(4):536-541. [16] 沈宗泽,陈有鑑,李书鹏,等.异位热脱附技术与设备在我国污染场地修复工程中的应用[J].环境工程学报,2019,13(9):2060-2073. [17] HANSEN L D,NESTLER C,RINGELBERG D,etal. Extended bioremediation of PAH/PCPcontaminated soils from the POPILE wood treatmentfacility[J]. Chemosphere,2004,54(10):1481-1493. [18] 杨勇,黄海,陈美平,等.异位热解吸技术在有机污染土壤修复中的应用和发展[J].环境工程技术学报,2016,6(6):559-570. [19] 王山榕,翟亚男,王永剑等.多环芳烃污染土壤修复技术的研究进展[J].化工环保,2021,41(3):247-254. [20] 生态环境部. HJ 1164-2021,污染土壤修复工程技术规范异位热脱附[S]. 北京:中国环境科学出版社,2021. [21] 首钢环境产业有限公司.首钢热脱附修复项目介绍[EB/OL].[2019-05-20].http://www.sgepi.com/achiveinindustry.aspx?typeId=112 [22] 南京中船绿洲环保有限公司.成功案例[EB/OL].[2019-05-20].http://www.nj-lzep.com/. [23] 北京建工环境修复股份有限公司.核心技术设备简介[EB/OL].[2019-05-20].http://www.bceer.com/. [24] 梁竞,王世杰,张文毓,等.美国污染场地修复技术对我国修复行业发展的启示[J].环境工程,2021,39(6):173-178. [25] 常跃畅,葛亚军,曹占强.污染土壤水泥窑协同处置技术发展历程及应用[J].中国资源综合利用,2022,40(3):39-41. [26] 李修强,史凯,孙慧慧.北方某一多环芳烃类污染场地修复方案设计研究[J].环境科学与管理,2023,3(48):87-92. [27] 郭宝蔓,黄旋,顾爱良.水泥窑协同处置技术在土壤修复中的应用进展[J],2022,6(35):66-71. [28] 郑福居,张宸,袁珊珊.退役炼钢厂地块多环芳烃污染土壤原位化学氧化工程实践[J],2022,4(30):69-73. [29] 朱煜.化学氧化技术处理多环芳烃污染土壤的工程应用研究[J],2016,43(327):308-309. [30] 生态环境部,国家市场监督管理总局. GB 36600-2018,土壤环境质量建设用地土壤污染风险管控标准(试行)[S]. 北京:中国环境科学出版社,2018.
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