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欧盟拟修订敌菜宁在块根芹中的最大残留限量

放大字体  缩小字体 时间:2021-03-23 10:01 来源:食品伙伴网 作者: 泽夕   
核心提示:2021年3月22日,欧盟食品安全局(EFSA)发布消息称,拟修订敌菜宁(phenmedipham)在块根芹中的最大残留限量。
   食品伙伴网讯  2021年3月22日,欧盟食品安全局EFSA)发布消息称,拟修订敌菜宁(phenmedipham)在块根芹中的最大残留限量
 
  根据欧盟条例(EC) No 396/2005第6章的规定,UPL Europe Ltd. 提交了该修订申请。目前敌菜宁在块根芹中现有的最大残留限量为0.01mg/kg,拟议的最大残留限量为0.15mg/kg(需要进一步的风险管理考虑)。
 
  部分原文报道如下:
 
  In accordance with Article 6 of Regulation (EC) No 396/2005, the applicant UPL Europe Ltd. submitted an application to the competent national authority in Germany (evaluating Member State, EMS) to raise the existing maximum residue level (MRL) to 0.15 mg/kg for the active substance phenmedipham in celeriac. The submitted residue trials are sufficient to derive a tentative MRL of 0.15 mg/kg, pending further investigation of nature of phenmedipham residues in root crops. For this assessment EFSA considered that the available sugar beet metabolism data can be extrapolated to celeriac on a tentative basis. The acceptability of such proposal shall be further considered by risk managers. Adequate analytical methods for enforcement are available to control the residues of phenmedipham in celeriac at the validated limit of quantification (LOQ) of 0.01 mg/kg. Since the current MRL application was submitted before the finalisation of the EU pesticides peer review of the renewal of the approval of phenmedipham, the consumer exposure assessment was performed according to the conclusions on the toxicity of phenmedipham from the first approval under Directive 91/414/EEC. Accordingly, the long‐term intake of residues of phenmedipham resulting from the existing and the intended uses does not indicate a risk to consumer health. The present assessment does not consider the data gaps identified in the context of the renewal of the approval of phenmedipham under Regulation (EC) No 1107/2009 which prevented experts to derive toxicological reference values (TRVs) for phenmedipham, to derive the risk assessment residue definition for root crops other than sugar beet and to conclude on the toxicity of relevant metabolites.
 
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日期:2021-03-23
 
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