Anastassiadou Maria, Brancato Alba, Carrasco Cabrera Luis, Ferreira Lucien, Greco Luna, Jarrah Samira, Kazocina Aija, Leuschner Renata, Magrans Jose Oriol, Miron Ileana, Nave Stefanie, Pedersen Ragnor, Raczyk Marianna, Reich Hermine, Ruocco Silvia, Sacchi Angela, Santos Miguel, Stanek Alois, Theobald Anne, Vagenende Benedicte, Verani Alessia
EFSA J. 2019 Jul 31;17(7):e05744. doi: 10.2903/j.efsa.2019.5744. eCollection 2019 Jul.
In accordance with Article 6 of Regulation (EC) No 396/2005, Finland, hereafter referred to as the evaluating Member State (EMS), received an application from BASF SE to modify the temporary maximum residue level (MRL) for the active substance mepiquat in cultivated fungi based on monitoring data. Mepiquat residues in mushrooms do not result from the use of the active substance on mushrooms, but from the uptake of residues via the growth substrate composed of cereal straw that has been treated with mepiquat. Based on a total of 74 samples on oyster mushrooms, three different MRL proposals were derived. A risk management decision is required, considering the acceptable non-compliance rate, in order to decide which temporary MRL is the most appropriate to cover the presence of mepiquat chloride residues in oyster mushrooms. The exposure to residues of mepiquat chloride at the levels observed in the monitoring data on cultivated oyster mushrooms, which were the basis for deriving the MRL proposals, is unlikely to present a risk to consumer health.
根据欧盟委员会第396/2005号法规第6条,芬兰(以下简称评估成员国)收到了巴斯夫公司提交的申请,该申请基于监测数据,请求修改栽培真菌中活性物质甲哌鎓的临时最大残留限量(MRL)。蘑菇中甲哌鎓残留并非源于在蘑菇上使用该活性物质,而是通过用甲哌鎓处理过的谷物秸秆组成的生长基质吸收残留所致。基于总共74份平菇样本,得出了三种不同的最大残留限量提案。考虑到可接受的不符合率,需要做出风险管理决定,以确定哪种临时最大残留限量最适合涵盖平菇中甲哌鎓氯化物残留的情况。根据作为最大残留限量提案依据的栽培平菇监测数据中观察到的甲哌鎓氯化物残留水平,消费者接触该残留不太可能对健康构成风险。