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首页> 外文期刊>Journal of Applied Polymer Science >Amphiphilic chitosan/acrylic acid/thiourea based semi-interpenetrating hydrogel: Solvothermal synthesis and evaluation for controlled release of organophosphate pesticide, triazophos
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Amphiphilic chitosan/acrylic acid/thiourea based semi-interpenetrating hydrogel: Solvothermal synthesis and evaluation for controlled release of organophosphate pesticide, triazophos

机译:两亲壳聚糖/丙烯酸/硫脲的半互穿水凝胶:有机磷农药控制释放的溶剂热合成和评价,三唑酯

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The current study reports the solvothermal synthesis of amphiphilic chitosan-based semi-interpenetrating (CAT-SIPH) hydrogel for controlled release of an organophosphate pesticide, triazophos. CAT-SIPH is prepared from natural backbone polymer chitosan (CS) and monomer, acrylic acid (AA) employing initiator (K2S2O8), and cross-linker, thiourea (CSN2H4) using solvothermal technique under 7 Psi pressure in an autoclave. The polymerization reaction variables like reaction time, the volume of solvent, concentration of initiator, cross-linker, and monomer are optimized to get the best product yield in terms of percentage grafting. The optimized conditions for solvothermal polymerization reaction carried out for 60 min are solvent volume (10 ml), concentrations of acrylic acid (0.2 mol/L), K2S2O8 (0.45 x 10(-2)mol/L) and thiourea (1.75 x 10(-4) mol/L). The swelling behavior of CAT-SIPH hydrogel synthesized under optimized conditions is studied in the terms of swelling ratio. CAT-SIPH is characterized by Fourier transform infrared spectra (FT-IR), (HNMR)-H-I, thermal analysis (TA), Zeta potential, and scanning electron microscopy (SEM). The potential of cross-linked hydrogel CAT-SIPH for controlled release of an organophosphate pesticide, Triazophos on to sandy loam soil is assessed. The experimental investigations proved that synthesized hydrogel can be effectively employed as a pesticide carrier for controlled release on to loamy soil as the maximum release (53%) is observed even after 25 days at pH 6 and value get lowered under acidic and basic conditions. The present investigation demonstrated the potential of chitosan-based CAT-SIPH hydrogel as a pH-responsive release vehicle for agrochemicals onto the soil matrix and offers a potential solution for the prevention of surface and groundwater contamination.
机译:本研究报道了溶剂热法合成两亲性壳聚糖基半互穿(CAT-SIPH)水凝胶,用于有机磷农药三唑磷的控制释放。CAT-SIPH由天然主链聚合物壳聚糖(CS)和单体、使用引发剂(K2S2O8)的丙烯酸(AA)以及使用溶剂热技术在高压釜中在7 Psi压力下使用硫脲(CSN2H4)制备。通过优化反应时间、溶剂体积、引发剂浓度、交联剂和单体等聚合反应变量,以获得最佳的接枝率。溶剂热聚合反应进行60min的最佳条件为溶剂体积(10ml)、丙烯酸浓度(0.2mol/L)、K2S2O8(0.45x10(-2)mol/L)和硫脲(1.75x10(-4)mol/L)。从溶胀率的角度研究了在优化条件下合成的CAT-SIPH水凝胶的溶胀行为。CAT-SIPH通过傅里叶变换红外光谱(FT-IR)、HNMR-H-I、热分析(TA)、Zeta电位和扫描电子显微镜(SEM)进行表征。评估了交联水凝胶CAT-SIPH在沙壤土上控制释放有机磷农药三唑磷的潜力。实验研究证明,合成的水凝胶可以有效地作为农药载体在壤质土壤上进行控制释放,因为在pH值为6的条件下,即使在25天后,也可以观察到最大释放量(53%),并且在酸性和碱性条件下,释放值会降低。本研究证明了壳聚糖基CAT-SIPH水凝胶作为农药在土壤基质上的pH响应释放载体的潜力,并为防止地表水和地下水污染提供了潜在的解决方案。

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