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首页> 外文期刊>Chemosphere >Pharmaceutical and personal care products in groundwater, subsurface drainage, soil, and wheat grain, following a high single application of municipal biosolids to a field
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Pharmaceutical and personal care products in groundwater, subsurface drainage, soil, and wheat grain, following a high single application of municipal biosolids to a field

机译:大量将市政生物固体应用于农田后,地下水,地下排水,土壤和小麦籽粒中的药品和个人护理产品

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摘要

Dewatered municipal biosolids (DMBs) were applied to a field at a rate of ~22 Mgdwha~(-1) in October 2008. Pharmaceuticals and personal care products (PPCPs) were monitored in groundwater, tile drainage, soil, DMB aggregates incorporated into the soil post-land application, and in the grain of wheat grown on the field for a period of ~1 year following application. Over 80 PPCPs were analyzed in the source DMB. PPCPs selected for in-depth monitoring included: antibiotics (tetracydines, fluoroquinolones), bacterio-cides (tridosan, triclocarban), beta-blockers (atenolol, propranolol, metaprolol), antidepressants (fluoxe-tine, citalopram, venlafaxine, sertraline), antifungals (miconazole), analgesics (acetaminophen, ibuprofen) and anticonvulsants (carbamazepine). PPCPs in tile were observed twice, ~3 weeks and 2 months post-application. Of all PPCPs measured in tile drainage, only carbamazepine, ibuprofen, acet-aminophen, triclosan, triclocarban, venlafaxine, and citalopram were detected (5-74 ng L~(-1)). PPCPs were not detected in groundwater >2 m depth below the soil surface, and concentrations above detection lim-its at 2 m depth were only observed once just after the first rain event post-application. In groundwater, all compounds found in tile, except carbamazepine, acetaminophen and citalopram, were detected (10-19ngL~(-1)). PPCPs were detected in DMB aggregates incorporated in soil up to 1 year post-application, with miconazole and fluoxetine having the lowest percent reductions over 1 year (~50%). For several compounds in these aggregates, concentration declines were of exponential decay form. No PPCPs were detected in the grain of wheat planted post-application on the field. No PPCPs were ever detected in water, soil or grain samples from the reference plot, where no DMB was applied.
机译:2008年10月,以〜22 Mgdwha〜(-1)的比例将脱水的城市生物固体(DMB)施用到田间。监测了地下水中的药品和个人护理产品(PPCP),瓷砖排水,土壤,DMB的聚集体。土地施用后,以及田间种植的小麦籽粒,施用后约1年。在源DMB中分析了80多个PPCP。选择用于深度监测的PPCP包括:抗生素(四cydines,氟喹诺酮类),杀菌剂(tridosan,triclocarban),β-受体阻滞剂(阿替洛尔,普萘洛尔,间苯丙醇),抗抑郁药(氟西汀,西酞普兰,文拉法辛,舍曲林),抗真菌药(咪康唑),止痛药(对乙酰氨基酚,布洛芬)和抗惊厥药(卡马西平)。施用后两次,〜3周和2个月观察到瓷砖中的PPCP。在瓷砖排水中测量的所有PPCP中,仅检测到卡马西平,布洛芬,对乙酰氨基酚,三氯生,三氯卡班,文拉法辛和西酞普兰(5-74 ng L〜(-1))。在土壤表面以下2 m深度的地下水中未检测到PPCPs,在施用后的第一个降雨事件发生后,仅在2 m深度的检测限以上浓度才检测到PPCP。在地下水中,除卡马西平,对乙酰氨基酚和西酞普兰外,在瓷砖中发现的所有化合物均被检出(10-19ngL〜(-1))。在施用后长达1年的时间内,在掺入土壤的DMB聚集物中检测到PPCPs,其中咪康唑和氟西汀的减少百分比在1年内最低(〜50%)。对于这些聚集体中的几种化合物,浓度下降呈指数衰减形式。在田间施用后种植的小麦籽粒中未检测到PPCP。在未应用DMB的参考地块的水,土壤或谷物样品中从未检测到PPCP。

著录项

  • 来源
    《Chemosphere》 |2012年第2期|p.194-203|共10页
  • 作者单位

    Agriculture and Agri-Food Canada. Ottawa, ON, Canada K1A 0C6;

    Agriculture and Agri-Food Canada, London, ON, Canada N5V4T3;

    Water Quality Centre, Trent University, Peterborough, ON, Canada K9J 7B8;

    Agriculture and Agri-Food Canada. Ottawa, ON, Canada K1A 0C6;

    Ontario Ministry of Agriculture, Food and Rural Affairs, Stratford, ON, Canada N5A 5T8;

    Ontario Ministry of the Environment, Toronto, ON, Canada M4V 1M2;

    Agriculture and Agri-Food Canada. Ottawa, ON, Canada K1A 0C6;

    Agriculture and Agri-Food Canada. Ottawa, ON, Canada K1A 0C6;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pharmaceuticals; Municipal biosolids; Land application; Groundwater; Soil; Crop;

    机译:药品;市政生物固体;土地申请;地下水;泥;作物;

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