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首页> 外文期刊>Journal of Cleaner Production >Successful utilization of waste cooking oil in Neem oil based fungicide formulation as an economic and eco-friendly green solvent for sustainable waste management
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Successful utilization of waste cooking oil in Neem oil based fungicide formulation as an economic and eco-friendly green solvent for sustainable waste management

机译:基于杀菌剂的杀菌剂制剂的废物食用油成功利用作为可持续废物管理的经济和生态友好的绿色溶剂

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摘要

Globally, about 34.22 million liters of waste cooking oil (WCO) is produced with 2% increments per year. This increase may leads to environmental risks if disposed of untreated. Beneath this backdrop, this study was designed to develop Neem emulsifiable concentrate (EC) formulation (up-to 70% Neem oil content) by utilizing WCO as solvent system. This study opens new gate way to manage the over-rising increments of WCO and give safer and green agriculture product for pest management. The goal was also to explore the economic and industrial feasibility of WCO as alternate source to persistent toxic, non-renewable petroleum solvents. So, processed (transesterified) WCO and aromatic hydrocarbon solvent (C-9) based EC formulations were developed and different physico-chemical properties including physical appearance, acidity/alkalinity, flashpoint, emulsion stability, shelfelife, droplet size, interfacial tension etc were comparatively assessed as per CIPAC (Collaborative International Pesticides Analytical Council) protocols using Abel Flashpoint Apparatus, Particle Size Analyzer, High Performance Liquid Chromatography (HPLC), Fourier Transform Infrared Spectroscopy (FTIR) and Spinning Drop Tensiometer (SDT). Assessment results proved that WCO based formulation is more stable with brown color, low odor, high flashpoint (282.16 K) compared to solvent (C-9) based with less stable (crystallization/sedimentation), light colored, high smell, low flashpoint (268.46 K). Aqueous oil-in-water (O/W) emulsions of WCO and C-9 based formulations were measured with droplet size (2.6 and 3.5 mu m) and emulsion stability (79.6 and 98.8%). Interfacial tension reading (0.8 Nmm(-1)) in WCO based EC indicated good dispersion with no creaming or sedimentation. Furthermore, stability and compatibility study of active constituents recorded of 1.28 and 50% degradation in WCO and solvent based formulations respectively. WCO based EC inhibited 90% where as C-9 based formulations reduced only 68% growth of Rhizoctonia solani. WCO based EC is also free from dermal toxicity, inhalation hazards and phyototoxicity. Finally, average cost effectiveness and economic advantages were calculated and found significantly (60.32%, 1787.5 Vt(-1)) superior to C-9 based EC. Waste cooking oil can be ecologically, economically and commercially explored as an alternate green solvent and resourceful waste management. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在全球范围内,大约3422万升的储物油(WCO)每年产生2%的增量。如果处置未经处理的情况,这种增加可能导致环境风险。本研究旨在通过利用WCO作为溶剂系统,设计该研究的旨在开发Neem可乳化浓缩物(EC)制剂(EC)制剂(EC)制剂(EC至70%的新EX)。本研究开设了新的门方式来管理WCO的超越增量,并为害虫管理提供更安全和绿色农业产品。目标也是探讨WCO的经济和工业可行性作为持续的有毒,不可再生的石油溶剂的替代来源。所以,经过加工(酯化的)WCO和芳烃溶剂(C-9)的EC配方,并产生了不同的物理化学性质,包括物理外观,酸度/碱度,闪点,乳液稳定性,避难所,液滴尺寸,界面张力等相对相比根据CIPAC(协作国际农药分析委员会)的协议评估使用ABEL闪光灯装置,粒度分析仪,高性能液相色谱(HPLC),傅里叶变换红外光谱(FTIR)和旋转滴压计(SDT)。评估结果证明,与溶剂(C-9)相比,基于WCO的配方与棕色的棕色,低气味,高闪点(282.16 k),基于稳定性(结晶/沉降),浅色,高气味,低闪点( 268.46 k)。通过液滴尺寸(2.6和3.5μm)和乳液稳定性(79.6和98.8%)测量WCO和C-9种基配方的水性水溶液(O / W)乳液。基于WCO的EC中的界面张力读数(0.8nmm(-1))表明没有奶油或沉降的良好分散。此外,分别记录了1.28和50%的活性成分的稳定性和相容性研究,分别记录了1.28和50%降解的WCO和溶剂基配方。基于WCO的EC抑制了90%,随着C-9基配方仅减少了Rhizoctonia Solani的68%。基于WCO的EC也没有皮肤毒性,吸入危害和植物毒性。最后,计算了平均成本效益和经济优势,显着(60.32%,1787.5Vt(-1))优于C-9基于EC。垃圾烹饪油可以是生态的,经济和商业探索,作为替代的绿色溶剂和高兴的废物管理。 (c)2020 elestvier有限公司保留所有权利。

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