2024年新疆某地州疾控中心食品安全風(fēng)險(xiǎn)監(jiān)測(cè)結(jié)果分析
Analysis of Food Safety Risk Monitoring Results in 2024 from a Prefecture-Level CDC in Xinjiang
SUNJing', JINHaiqiang2 (1.Changji Hui Autonomous Prefecture Center for Disease Control and Prevention (Prefecture Health Supervision Institute), Changji 831100, China; 2.Hunan University of Technology, Zhuzhou 412007, China)
Abstract: Objective: To analyze the results of food safety risk monitoring in a prefecture in Xinjiang in 2024, clarifythe characteristics ofchemical polutants and microbial pollution,and provide ascientific basis forregional food safety management. Method: According to the national and autonomous region monitoring programs, a total of28 pesticides in 5categorieswere detected,including organophosphorus,neonicotinoids,and pyrethroids.Atotal of 225 food samples were collected from seven counties and cities across the state for surveilance of chemical contaminants,microorganisms and foodborne diseases. Result: The overall pass rate was 95.56% ,the pass rate of chemical pollutants was 97.37% , and the pass rate of microbial pollution was 91.78% . The problem of pesticide residues in vegetables and fruits is more prominent,and diazepam in aquatic animals and their products exceeds the standard (exceeding the standard rate of 25% ),which is the first time in the region. The results of foodborne disease surveillance showed that norovirus was the main causative agent, and family clusters accounted for 75% of the events. Conclusion: The fod safety risk ofa prefecture in Xinjiang wascharacterized by‘high front-end polutionand excelent processing links"and the contamination risk ofbulk food was significantly higher than that of prepackaged fod (p<0.01) ! It is recommended to strengthen the supervision of pesticide use,establish a screening system for new pollutants such as diazepam, and improve the prevention and control capacity of foodborne diseases in family clusters.
Keywords: food safety; risk monitoring; chemical contaminants; microbial contamination
食品安全關(guān)系到人們的身體健康,也是社會(huì)穩(wěn)定和經(jīng)濟(jì)發(fā)展的重要保障。(剩余3148字)
-
-
- 食品安全導(dǎo)刊
- 2025年07期
- 河南省市場(chǎng)監(jiān)管局組織專家團(tuán)隊(duì)為...
- 瀘縣農(nóng)產(chǎn)品質(zhì)量安全監(jiān)管工作現(xiàn)狀...
- swop2025構(gòu)建“深度包裝...
- 新時(shí)代背景下加強(qiáng)糧食儲(chǔ)備管理面...
- 2020-2024年南充市順慶...
- 消費(fèi)者對(duì)保健食品安全風(fēng)險(xiǎn)認(rèn)知現(xiàn)...
- 統(tǒng)計(jì)數(shù)據(jù)分析在食品安全保障中的...
- 大數(shù)據(jù)背景下食品質(zhì)量安全管理的...
- 食品接觸用塑料制品健康風(fēng)險(xiǎn)的產(chǎn)...
- 食品質(zhì)量安全檢測(cè)問題及檢測(cè)準(zhǔn)確...
- 2020一2024年慶陽(yáng)市鎮(zhèn)原...
- 2024年新疆某地州疾控中心食...
- 基層疾控中心微生物實(shí)驗(yàn)室質(zhì)量控...
- 食品快檢技術(shù)在食品質(zhì)量控制中的...
- 食品檢測(cè)中樣品管理和質(zhì)控問題與...
- 食品檢驗(yàn)質(zhì)量控制的關(guān)鍵因素及優(yōu)...
- 農(nóng)產(chǎn)品檢測(cè)質(zhì)量控制措施研究...
- 食品中沙門氏菌、單核細(xì)胞增生李...
- 麗水市作坊白酒危害物質(zhì)與元素含...
- 液相色譜質(zhì)譜聯(lián)用法同時(shí)測(cè)定谷物...
- 生活飲用水溶解性總固體檢測(cè)技術(shù)...
- 市售牡蠣中副溶血性弧菌檢出情況...
- 基于GC-Q-TOF/MS的蘭...
- 高效液相色譜法測(cè)定干型葡萄酒中...
- 乳粉中金黃色葡萄球菌檢測(cè)能力驗(yàn)...
- 稻谷儲(chǔ)藏過程中品質(zhì)變化的研究...
- 可降解氨基甲酸乙酯釀酒酵母NX...
- 合肥市市售嬰幼兒食品中克羅諾桿...
- 氣相色譜法測(cè)定生濕面制品中4種...
- 兒童挑食行為對(duì)營(yíng)養(yǎng)攝入的影響及...
- 食品加工過程中營(yíng)養(yǎng)流失問題與解...
- 水提法提取鐵皮石斛多糖的工藝優(yōu)...
- 八寶茶風(fēng)味發(fā)酵乳的制備工藝研究...
- 生姜中姜酚的提取工藝研究...
- 光譜技術(shù)在食品檢驗(yàn)檢測(cè)中的應(yīng)用...
- 大連市農(nóng)產(chǎn)品智慧供應(yīng)鏈體系發(fā)展...
- 瓊脂基可降解食品包裝薄膜在食品...
- 數(shù)字鄉(xiāng)村建設(shè)下農(nóng)產(chǎn)品現(xiàn)代營(yíng)銷模...
- 食品檢驗(yàn)檢測(cè)中樣品采集問題與改...
- 準(zhǔn)營(yíng)承諾即入制下食品相關(guān)產(chǎn)品的...
- 智慧化餐飲集配中心建設(shè)與管理創(chuàng)...
- 免疫傳感技術(shù)在食源性病原體快速...
- 食品中微量成分的檢測(cè)技術(shù)及控制...
- 食品中添加劑殘留的快速檢測(cè)方法...
- 漯河市預(yù)制菜產(chǎn)業(yè)高質(zhì)量發(fā)展路徑...
- 食品檢驗(yàn)檢測(cè)信息化管理中的問題...
- 食品塑料包裝安全問題的產(chǎn)生原因...
- 酸奶中益生菌活性檢測(cè)及其對(duì)健康...
- 老年群體常見飲食誤區(qū)及飲食健康...
- 食品生物技術(shù)在功能性食品開發(fā)中...
- 功能性高蛋白食品的多元應(yīng)用與發(fā)...
- 黎麥產(chǎn)品營(yíng)養(yǎng)成分檢測(cè)的現(xiàn)存問題...
- 醬料生產(chǎn)中微生物風(fēng)險(xiǎn)控制存在的...
- 食品抽樣注意事項(xiàng)和存在問題及改...
- 食品加工企業(yè)在數(shù)字經(jīng)濟(jì)時(shí)代的商...
- 食用植物油質(zhì)量安全風(fēng)險(xiǎn)指標(biāo)檢測(cè)...
- 食品安全抽樣檢驗(yàn)中的誤差原因及...