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71.
水生植物修复氮、磷污染水体研究进展   总被引:5,自引:0,他引:5  
氮、磷是引起水体富营养化、导致水质恶化的重要因素,因此去除氮、磷一直是污水处理的重要任务.鉴于传统物理、化学方法存在的操作难、成本高、易产生二次污染等问题,人们越来越多地将目光转向利用水生植物去除氮、磷营养物质、净化水质上.介绍了近年来国内外应用水生植物修复氮、磷污染水体的方法、效果及其影响因素,探讨了水生植物净化污染水体的机制.针对目前研究中的不足,提出今后应在不同植物种类开发、植物组合优化以及植物的净化机制等方面加强研究.  相似文献   
72.
土壤重金属的植物污染化学研究进展   总被引:1,自引:0,他引:1  
针对中国土壤重金属污染加剧的趋势,为改善土壤环境质量和保障农产品安全,提出了土壤重金属的植物污染化学研究领域.结合多年的研究工作,从土壤重金属的植物根际化学行为、土壤重金属的植物吸收与解毒机制和重金属污染土壤的植物-微生物交互作用等方面简要阐述了土壤-植物系统中重金属的分布、存在形态、迁移转化、累积及生物学效应和控制规律的研究进展,并对将来的植物污染化学理论研究提出了展望.  相似文献   
73.
通过温室盆栽试验,研究构树(Broussonetia papyrifera)生长对重金属污染土壤酶活性和微生物群落结构的影响.结果表明,构树修复污染土壤中酶活性和微生物多样性明显提高.经270d培养后,构树生长土壤中蔗糖酶和酸性磷酸酶活性与种植土壤相比分别显著(P<0.05)提高3.12倍和2.29倍;土壤脱氢酶与有效态As、Cd、Pb、Zn和Cu含量,蔗糖酶与有效态Cd含量,以及磷酸酶与有效态Cd和Cu含量之间呈显著负相关(P<0.05).根据16S和18S rDNA PCR-DGGE分析表明,构树修复可提高污染土壤中细菌和丛枝菌根真菌多样性.上述结果表明,构树修复可有效改善重金属污染土壤的环境质量.然而,污染土壤中重金属有效态含量下降不明显,必须辅助物理和化学措施来强化构树对重金属污染土壤的生态修复潜力.  相似文献   
74.
Improving the efficacy of phytoextraction is critical for its successful application in metal contaminated soils. Mineral nutrition affects plant growth and metal absorption and subsequently the accumulation of heavy metal through hyper-accumulator plants. This study assessed the effects of di-hydrogen phosphates (KH2PO4, Ca(H2PO4)2, NaH2PO4 and NH4H2PO4) application at three levels (22, 88 and 352 mg P/kg soil) on Sedum alfredii growth and metal uptake by three consecutive harvests on aged and Zn/Cd combined contaminated paddy soil. The addition of phosphates (P) significantly increased the amount of Zn taken up by S. alfredii due to increased shoot Zn concentration and dry matter yield (DMY) (P<0.05). The highest phytoextraction of Zn and Cd was observed in KH2PO4 and NH4H2PO4 treatment at 352 mg P/kg soil. The amount of Zn removed by phytoextraction increased in the order of 1st clipping<2nd clipping<3rd clipping, and for Cd extraction the order was 2nd clipping<1st clipping<3rd clipping. These results indicate that the application of P fertilizers coupled with multiple cuttings can enhance the removal of Zn and Cd from contaminated soils by S. alfredii, thus shortening the time needed for accomplishing remediation goals.  相似文献   
75.
Phytoremediation has long been recognized as a cost-effective method for the removal of polycyclic aromatic hydrocarbons (PAHs) from soil. A study was conducted to investigate the uptake and accumulation of PAHs in root and shoot of Lolium perenne L. Pot experiments were conducted with series of concentrations of 3.31-378.37 mg/kg for phenanthrene and those of 4.22-365.38 mg/kg for pyrene in a greenhouse. The results showed that both ryegrass roots and shoots did take up PAHs from spiked soils, and generally increased with increasing concentrations of PAH in soil. Bioconcentration factors(BCFs) of phenanthrene by shoots and roots were 0.24- 4.25 and 0.17-2.12 for the same treatment. BCFs of pyrene by shoots were 0.20-1.5, except for 4.06 in 4.32 mg/kg treatment, much lower than BCFs of pyrene by roots (0.58-2.28). BCFs of phenanthrene and pyrene tended to decrease with increasing concentrations of phenanthrene and pyrene in soil. Direct uptake and accumulation of these compounds by Lolium perenne L. was very low compared with the other loss pathways, which meant that plant-promoted microbial biodegradation might be the main contribution to plant-enhanced removal of phenanthrene and pyrene in soil. However, the presence of Lolium perenne L. significantly enhanced the removal of phenanthrene and pyrene in spiked soil. At the end of 60 d experiment, the extractable concentrations of phenanthrene and pyrene were lower in planted soil than in non-planted soil, about 83.24%-91.98% of phenanthrene and 68.53%-84.10% of pyrene were removed from soils, respectively. The results indicated that the removal of PAHs in contaminated soils was a feasible approach by using Lolium perenne L.  相似文献   
76.
不同处理条件对石油污染土壤植物修复的影响   总被引:4,自引:0,他引:4  
针对石油烃植物修复过程中的主要影响因素,研究了不同植物种类、不同土壤调理剂和菌剂使用等不同条件对土壤中石油烃植物修复效果的影响.结果表明,不同种类的植物修复可使总石油烃的年降解率达到37.8% ~ 73.98%,其中大豆和碱蓬具有较好的修复效果;3种不同土壤调理剂对石油烃污染土壤修复的效果为商业添加剂>牛粪>蛭石;先微生物修复后种植植物的处理要优于单独的微生物修复及微生物、植物修复同步进行的处理.  相似文献   
77.
Phytoremediation and its models for organic contaminated soils   总被引:9,自引:0,他引:9  
Soil pollution has been attracting considerable public attentions over the last decades.Sorts of traditional physiochemical methods have been used to remove th organic pollutants from soils.However,the enormous costs and low efficiencies associated with these remediation technologies limit their availabilities.Phytoremediation is an emerging technology that uses plants to cleanup pollutants in soils.As overwhelmingly positive results have been shown,phytoremediation is a most economical and effective remediation technique for organic contaminated soils.In this paper phytoremediation and its models for organic contaminated soils are viewed.The mechanisms of phytoremediation mainly include the direct plant uptake of organic pollutants,degradation by plant-derived degradative enzymes,and stimulated biodegradation in plat rhizosphere.Phytoremediation efficiency is close related to physicochemical properties of organic pollutants, environmental characteristics,and plant types.It is no doubt that soil amendments such as surfactants improve the solubilities and availabilities of organic pollutants in soils.However,little information is available about effects of soil amendments on phytoremediation efficiencies.Phytoremediation models have been developed to imulate and predict the environmental behavior of organic pollutants,and progress of models is illustrated.In many ways phytoremediation is still in its initial stage,and recommendations for the future for the future research on phytoremediation are presented.  相似文献   
78.
The potential of kenaf (Hibiscus cannabinus L.) for phytoremediation of lead (Pb) on sand tailings was investigated.A pot experiment employing factorial design with two main effects of fertilizer and lead was conducted in a nursery using sand tailings from an ex-tin mine as the growing medium.Results showed that Pb was found in the root,stem,and seed capsule of kenaf but not in the leaf.Application of organic fertilizer promoted greater biomass yield as well as higher accumulation capacity of Pb.In Pb-spike...  相似文献   
79.
磷肥对砷污染土壤的植物修复效率的影响:田间实例研究   总被引:63,自引:8,他引:63  
通过田间试验研究施用磷肥对砷超富集植物蜈蚣草(PterisvittataL.)生长和砷污染土壤修复效率的影响.结果表明,适量施用磷肥促进蜈蚣草的生长,显著提高其生物量,但过量施用磷肥对植物产量无贡献.随着磷肥施用量的增加,蜈蚣草地上部砷含量呈先增加后减少的趋势,理论上在施磷量为340kg·hm-2时,砷含量可达最高(1622mg·kg-1).磷的含量与施磷量呈极显著的正相关关系.施磷量为200kg·hm-2的砷累积量最高,是不施磷处理砷累积量的2 4倍及600kg·hm-2施磷量砷累积量的1 2倍.种植蜈蚣草7个月后,土壤总砷均有不同程度的下降,施磷量为200kg·hm-2的土壤中砷含量下降5 0mg·kg-1,土壤修复效率最高(7 84%).对照和600kg·hm-2施磷量处理的土壤修复效率分别为2 31%和6 63%.理论上达到最大土壤修复效率所需施磷量为369kg·hm-2.施用磷肥可以维持土壤有效态砷含量在蜈蚣草种植前后变化不大,保证蜈蚣草下个生育期对砷的吸收.这些结果说明施用磷肥是蜈蚣草等砷超富集植物在现场修复中的必要手段,优化施磷技术可大大提高砷污染土壤的修复效率.  相似文献   
80.
CO2减排和土壤污染修复是我国实现经济和环境可持续发展必须解决的两大难题.基于生物固碳对根际微环境的影响,本研究提出通过增施CO2强化土壤有机污染的植物修复过程,为同时解决CO2减排和土壤污染植物修复面临的困境提供新思路.在模拟的CO2增施环境中,以C3植物菜豆和C4植物玉米为供试植物,以氯氰菊酯为目标污染物,研究增施CO2对C3和C4植物根际氯氰菊酯残留浓度的影响.结果表明,增施CO2可显著增加C3植物菜豆的地上和地下干重,在氯氰菊酯添加浓度为0、20、40 mg.kg-1时地下干重分别比自然CO2水平时增加了54.3%、31.9%和30.0%.增施CO2提高了未添加氯氰菊酯土壤的菜豆根际微生物数量,但降低了添加氯氰菊酯土壤的菜豆根际微生物数量.增施CO2对未添加氯氰菊酯土壤的菜豆根际氯氰菊酯残留浓度没有显著影响,但降低了菜豆根际氯氰菊酯的残留浓度,分别比自然CO2水平时下降24.0%(20mg.kg-1)和16.9%(40 mg.kg-1).然而,对C4植物玉米而言,增施CO2对植物生物量、根际微生物、根际氯氰菊酯残留浓度下降没有明显促进作用,甚至有抑制作用.本实验表明,增施CO2降低了C3植物根际氯氰菊酯残留浓度,可以考虑将增施CO2作为C3植物修复土壤污染的强化措施,但对C4植物的影响还有待进一步研究.  相似文献   
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