共查询到19条相似文献,搜索用时 109 毫秒
1.
污染土壤化学修复技术研究与进展 总被引:16,自引:0,他引:16
污染土壤修复环境工程近年来发展迅猛,欧美等发达国家在其技术创新和设备改进2个层面都取得了长足进展。本文概述了化学淋洗修复技术(原位化学修复技术和异位化学修复技术)、化学还原与还原脱氯修复技术、化学氧化修复技术、溶剂浸提技术和土壤性能化学改良修复技术等污染土壤的化学修复技术原理、进展与适用性以及有关关键技术参数,并对其发展前景进行了展望。 相似文献
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土壤及地下水有机污染的化学与生物修复 总被引:1,自引:0,他引:1
本文综述了土壤及地下水有机污染的化学与生物修复技术研究的最新进展。比较详细地介绍了土壤及地下水有机污染的化学修复、生物修复、化学与生物相结合修复的具体方法、治理效率及其影响因素。 相似文献
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污染土壤修复的技术再造与展望 总被引:58,自引:4,他引:58
周启星 《环境污染治理技术与设备》2002,3(8):36-40
污染土壤的面积在迅速扩大,迫切需要修复,治理;随着土壤污染组分的日益复杂化,等待着全面,高效的修复技术的研制。对污染土壤修复相关技术现状进行剖析表明,现有的各种污染土壤修复技术由于存在着许多技术上难以克服的问题,需要从技术的现有进展和技术构想进行整体意义上的创新,即如何把现有的技术进行参数优化、改造后进行最佳组合与综合,才能取得该技术领域的重大突破。污染土壤的生态化学修复,污染土壤的生态化学修复,其实质在于技术的再造,代表了21世纪污染土壤修复技术的发展方向。 相似文献
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污染土壤修复的技术再造与展望 总被引:16,自引:0,他引:16
污染土壤的面积在迅速扩大,迫切需要修复、治理;随着土壤污染组分的日益复杂化,等待着全面、高效的修复技术的研制。对污染土壤修复相关技术现状进行剖析表明,现有的各种污染土壤修复技术由于存在着许多技术上难以克服的问题,需要从技术的现有进展和技术构想进行整体意义上的创新,即如何把现有的技术进行参数优化、改造后进行最佳组合与综合,才能取得该技术领域的重大突破。污染土壤的生态化学修复,其实质在于技术的再造,代表了21世纪污染土壤修复技术的发展方向。 相似文献
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重金属污染土壤可持续原位修复:生物质基修复材料研究新进展 总被引:1,自引:0,他引:1
<正>土壤重金属污染因具有隐蔽性、长期性、不可逆性和富集性等特点,已成为影响未来农业可持续发展和人体健康的环境问题之一。修复重金属污染土壤、恢复土壤原有功能已经成为国内外的研究热点。目前,电动修复、植物修复及化学淋洗技术等修复技术虽已成功运用,但依然存在成本高、修复周期长及二次污染等问题。为实现重金属污染土壤可持续原位修复,中国科学院生 相似文献
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我国有机物污染场地土壤修复技术的专利计量分析 总被引:1,自引:0,他引:1
以我国公开的691项有机物污染场地土壤修复技术专利为依据,分析研究了有机物污染场地土壤修复技术的发展趋势和进展,同时对化学氧化修复技术、生物修复技术、热脱附技术、淋洗技术等的研究进展进行分析,总结了目前国内有机物污染场地修复专利技术发展现状,并提出了今后的发展方向,以期为我国今后开展相关修复技术的研究与应用提供参考。结果显示:我国有机物污染场地土壤修复技术相关专利于2010年后开始快速发展,研究创新点基本集中于高效技术的开发、节能以及二次污染的防治;热脱附技术在该领域应用广泛;氧化修复技术的开发是2017年的技术发展特点,具有一定的研究前景;而联合多种修复技术更能灵活地适用于实际场地修复的需要,其已成为重要的研究趋势。 相似文献
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铬污染土壤修复技术研究进展 总被引:2,自引:0,他引:2
介绍了铬污染土壤修复技术的最新研究进展,讨论了化学修复、生物修复和电修复技术等方面的研究状况.特别指出的是,生物修复技术无二次污染,电修复技术能强化土壤中的传质过程,两者的耦合有可能在该领域取得突破. 相似文献
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秸秆-复合菌-污泥联合修复铬污染土壤技术 总被引:1,自引:0,他引:1
《环境工程学报》2017,(10)
为探索修复Cr(Ⅵ)污染土壤的新方法,以模拟某化工厂铬渣堆存场内Cr(Ⅵ)污染土壤为研究对象,分别研究了秸秆-复合菌-污泥修复铬污染土壤单因素和3因素条件下对铬污染土壤的修复效果。结果表明:单独添加3%的秸秆时,土壤中Cr(Ⅵ)还原率可以达到25.88%;单独添加3%复合菌时,土壤中Cr(Ⅵ)还原率可以达到72.07%;单独添加50%的活性污泥时,土壤中Cr(Ⅵ)还原率可以达85.65%。3个因素中复合菌对土壤中Cr(Ⅵ)还原率的影响最大。综合考虑秸秆、污泥和复合菌3个因素对土壤中Cr(Ⅵ)还原的影响,设计了秸秆、污泥和复合菌的3因素联合实验,最后从修复的经济成本和修复效率考虑,确定最优物料组合为1%秸秆+1%复合菌+30%污泥,对土壤中Cr(Ⅵ)还原率可以达到96.6%。秸秆-复合菌-污泥对铬污染土壤的修复明显高于单独对铬污染土壤修复的效率。该技术在实现对铬污染土壤进行修复的同时,为秸秆和活性污泥的资源化利用开辟了新的途径,实现了"以废制废"。 相似文献
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铬污染土壤修复技术研究进展 总被引:34,自引:1,他引:33
介绍了铬污染土壤修复技术的最新研究进展,讨论了化学修复,生物修复和电修复技术等方面的研究状况。特别指出的是,生物修复技术无二次污染,电修复技术能强化土壤中的传质过程,两者的耦合有可能在该领域取得突破。 相似文献
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磷矿粉修复重金属污染土壤的研究进展 总被引:1,自引:0,他引:1
《环境污染与防治》2017,(4)
重金属污染土壤的化学钝化修复技术可以有效控制重金属对植物及环境的危害。不同的改良剂对重金属污染土壤的改良效果不同,已有的研究表明难溶性磷矿粉是较好的选择。磷矿粉是一种性价比很高的改良剂,而且不会对环境造成破坏。总结了磷矿粉修复重金属污染土壤的化学机制和影响因素,重点综述了近年来不同粒径磷矿粉、改性磷矿粉修复重金属污染土壤的研究进展,旨在为重金属污染土壤的修复研究提供参考。 相似文献
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Physicochemical and biological quality of soil in hexavalent chromium-contaminated soils as affected by chemical and microbial remediation 总被引:1,自引:0,他引:1
Yingping Liao Xiaobo Min Zhihui Yang Liyuan Chai Shujuan Zhang Yangyang Wang 《Environmental science and pollution research international》2014,21(1):379-388
Chemical and microbial methods are the main remediation technologies for chromium-contaminated soil. These technologies have progressed rapidly in recent years; however, there is still a lack of methods for evaluating the chemical and biological quality of soil after different remediation technologies have been applied. In this paper, microbial remediation with indigenous bacteria and chemical remediation with ferrous sulphate were used for the remediation of soils contaminated with Cr(VI) at two levels (80 and 1,276 mg kg?1) through a column leaching experiment. After microbial remediation with indigenous bacteria, the average concentration of water-soluble Cr(VI) in the soils was reduced to less than 5.0 mg kg?1. Soil quality was evaluated based on 11 soil properties and the fuzzy comprehensive assessment method, including fuzzy mathematics and correlative analysis. The chemical fertility quality index was improved by one grade using microbial remediation with indigenous bacteria, and the biological fertility quality index increased by at least a factor of 6. Chemical remediation with ferrous sulphate, however, resulted in lower levels of available phosphorus, dehydrogenase, catalase and polyphenol oxidase. The result showed that microbial remediation with indigenous bacteria was more effective for remedying Cr(VI)-contaminated soils with high pH value than chemical remediation with ferrous sulphate. In addition, the fuzzy comprehensive evaluation method was proven to be a useful tool for monitoring the quality change in chromium-contaminated soils. 相似文献
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污染土壤修复效果评定方法的研究 总被引:7,自引:0,他引:7
在实施污染土壤修复的环境工程后,需要通过灵敏和有效的评定方法对污染土壤修复的效果进行评定。然而,单纯依靠化学方法进行污染土壤修复效果的评定,不能揭示土壤的整体质量特征,因此需要生态毒理方法作为相互补充的手段。本文概述了植物毒性评定法、陆生无脊椎动物评定法和土壤微生物评定法及其在污染土壤修复效果评定中的应用,并对污染土壤修复效果评定方法的发展前景进行展望。 相似文献
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Combined chemical (Fenton-like and ozonation) and biological treatment for the remediation of shale oil and transformer oil contaminated soil has been under study. Chemical treatment of shale oil and transformer oil adsorbed in peat resulted in lower contaminants' removal and required higher addition of chemicals than chemical treatment of contaminants in sand matrix. The acidic pH (3.0) conditions favoured Fenton-like oxidation of oil in soil. Nevertheless, it was concluded that remediation of contaminated soil using in situ Fenton-like treatment will be more feasible at natural soil pH. Both investigated chemical processes (Fenton-like and ozonation) allowed improving the subsequent biodegradability of oil. Moderate doses of chemical oxidants (hydrogen peroxide, ozone) should be applied in combination of chemical treatment (both, Fenton-like or ozonation) and biotreatment. For remediation of transformer oil and shale oil contaminated soil Fenton-like pre-treatment followed by biodegradation was found to be the most efficient. 相似文献
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原位化学氧化法在土壤和地下水修复中的研究进展 总被引:1,自引:0,他引:1
综述了原位化学氧化法修复污染土壤及地下水的最新进展 ,着重介绍了几种氧化剂 ,如二氧化氯、双氧水及Fenton试剂、高锰酸钾和臭氧在土壤修复中的应用、不足及改进 ,并对化学氧化修复技术的发展前景进行了展望 相似文献
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Soil microbial parameters and luminescent bacteria assays as indicators for in situ bioremediation of TNT-contaminated soils 总被引:4,自引:0,他引:4
In situ bioremediation is increasingly being discussed as a useful strategy for cleaning up contaminated soils. Compared to established ex situ procedures, meaningful and reliable approaches for monitoring the remediation processes and their efficiency are of special importance. The subject of this study was the significance of two bioassays for monitoring purposes. The work was performed within the scope of a research project on the in situ bioremediation of topsoil contaminated with 2,4,6-trinitrotoluene (TNT). To evaluate changes within different experimental fields during a 17-month remediation period, the results of soil microbial assays and luminescent bacteria assays were compared with chemical monitoring data. The luminescent bacteria assays showed a significant reduction of the water-soluble soil toxicants in the treated fields. This bioassay proved to be a sensitive screening indicator of toxicity and may effectively aid the ecotoxicological interpretation of chemical monitoring data. Microbial biomass (C(mic)), the metabolic quotient (qCO2), and the ratio of microbial to organic carbon (C(mic)/C(org)) showed a highly significant correlation with total concentrations of TNT in the soil. But, in contrast to luminescent bacteria assays, this approach did not reveal any recovery of the soil at the end of the remediation period. There is clear evidence for persistent adverse effects of chronic TNT contamination on the site-specific microbial community and the local carbon cycle in the soil. The study clearly exhibits the differences between, as well as the complementary value of both bioassay approaches for monitoring short-term and long-term effects of soil contamination and the efficiency of remediation. 相似文献