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首页> 外文期刊>Ecotoxicology and Environmental Safety >Improvement in fluoride remediation technology using GIS based mapping of fluoride contaminated groundwater and microbe assisted phytoremediation
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Improvement in fluoride remediation technology using GIS based mapping of fluoride contaminated groundwater and microbe assisted phytoremediation

机译:使用基于GIS的氟化物污染的地下水和微生物辅助植物修复的制图技术改进氟化物修复技术

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Fluoride (F) in groundwater is a major issue of water pollution. Geo-statistical analysis of groundwater quality in Newai Tehsil, (India) has been done in order to identify the possible spatial distribution of water quality parameters and to assess the spatial dependence of water properties with the help of principal component analysis (PCA) structure. Two types of maps (spatial map and principal component map) of groundwater quality have been developed. A field experiment was conducted to investigate the effect of different Fluoride (F) concentration combined with Pseudomonas fluorescens (P.F) on Prosopis juliflora plant. The field design was used as completely randomized block design with three replicates. Study revealed that parameters were found to be positively and highly correlated with principal component. Low and high values (with their acceptable limit) have also been displayed over the each spatial map. Plants treated with P. fluorescens showed the highest F uptake in root, shoot and leaves tissues were 33.14, 19.41 and 15.15 mg kg(-1) after 120 days, respectively. Both total bioaccumulation factor (BF) and translocation factor (TF) were obtained above one i.e., 1.06 and 1.04, this confirmed the high accumulation and translocation of F in plant tissues. The F uptake efficiency of plant was enhanced to 67.7% and plant biomass was increased upto 57.03%. According to the available literature, this is the first spatial field study for the remediation of F polluted soil through P. fluorescens. The present study will be beneficial for researchers working towards further improvement of F phytoremediation technology. Also, GIS based study can be very useful for decision maker's exploration of groundwater to understand the potential of present research work on fluoride contamination.
机译:地下水中的氟化物(F)是水污染的主要问题。为了确定水质参数可能的空间分布并借助主成分分析(PCA)结构评估水属性的空间依赖性,已对印度Newai Tehsil的地下水水质进行了地统计分析。已经开发了两种类型的地下水水质图(空间图和主成分图)。进行了田间试验,研究了不同浓度的氟化物(F)与荧光假单胞菌(P.F)的组合对胡桃(Prosopis juliflora)植物的影响。现场设计被用作具有三个重复的完全随机区组设计。研究表明,参数与主成分呈正相关且高度相关。低值和高值(及其可接受的极限)也已显示在每个空间图上。用荧光假单胞菌处理的植物在120天后根,茎和叶组织中的最高F吸收分别为33.14、19.41和15.15 mg kg(-1)。总生物积累因子(BF)和易位因子(TF)均高于1.0,即1.06和1.04,这证实了F在植物组织中的高积累和易位。植物的F吸收效率提高到67.7%,植物生物量提高到57.03%。根据现有文献,这是首次通过荧光假单胞菌修复F污染土壤的空间研究。本研究对致力于进一步改善F植物修复技术的研究人员将是有益的。同样,基于GIS的研究对于决策者进行地下水勘探以了解当前有关氟化物污染的研究工作的潜力也可能非常有用。

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