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[污泥堆肥产品施用对土壤和植物中总汞和甲基汞的影响]

[Effect of Sewage Sludge Compost Products Application on Total Mercury and Methylmercury in Soil and Plants].

作者信息

Yu Ya-Wei, Yang Yu-Han, Zhang Cheng, Yi Jian-Ting, An Si-Wei, Wang Ding-Yong

机构信息

College of Resources and Environment, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing 400715, China.

出版信息

Huan Jing Ke Xue. 2017 Jan 8;38(1):405-411. doi: 10.13227/j.hjkx.201606045.

Abstract

Two different sludge composting products (with and without biochar) were applied in field to study the variations of total mercury (THg) and methylmercury (MeHg) in soil and plants,as well as their migration in the soil-plant system and accumulation ability in plants during the sludge compost land use process.The results indicated that the concentrations THg and MeHg in soil increased after applying sewage sludge compost products,while the THg level was still lower than the secondary standard of national soil environmental quality.Biochar was speculated to probably promote the soil mercury methylation with lower MeHg/THg ratios in different soil treatments.THg concentrations in mature plants were significantly lower than those in seedling stage,but MeHg levels were higher than those in seedling stage.An obvious influence of composting on MeHg enrichment in plants was observed,and this similar effect was not found for THg enrichment.MeHg concentration in the soils applied with biochar compost was significantly higher than that without applying biochar compost soil,while MeHg in plant presented a contrary trend with higher level observed in no-biochar compost soil,suggesting that the addition of biochar could be in favour of soil MeHg formation and inhibit the MeHg accumulation in plants by influencing its migration.Since a strong MeHg accumulation ability with BCF of 1.24-14.63 was present in plant,the mercury ecological risk in soil environment caused by long-term fertilizing should be noticed.

摘要

将两种不同的污泥堆肥产品(含生物炭和不含生物炭)应用于田间,研究污泥堆肥土地利用过程中土壤和植物中总汞(THg)和甲基汞(MeHg)的变化,以及它们在土壤 - 植物系统中的迁移情况和在植物中的积累能力。结果表明,施用污水污泥堆肥产品后土壤中THg和MeHg的浓度增加,而THg水平仍低于国家土壤环境质量二级标准。推测生物炭可能通过不同土壤处理中较低的MeHg/THg比值促进土壤汞甲基化。成熟植物中的THg浓度显著低于苗期,但MeHg水平高于苗期。观察到堆肥对植物中MeHg富集有明显影响,而对THg富集未发现类似效果。施用生物炭堆肥的土壤中MeHg浓度显著高于未施用生物炭堆肥的土壤,而植物中的MeHg呈现相反趋势,在未添加生物炭堆肥的土壤中含量更高,这表明添加生物炭可能有利于土壤MeHg的形成,并通过影响其迁移抑制植物中MeHg的积累。由于植物具有较强的MeHg积累能力,生物富集系数为1.24 - 14.63,因此应注意长期施肥对土壤环境造成的汞生态风险。

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