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首页> 外文期刊>Chemosphere >Study on effects of temperature, moisture and pH in degradation and degradation kinetics of aldrin, endosulfan, lindane pesticides during full-scale continuous rotary drum composting
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Study on effects of temperature, moisture and pH in degradation and degradation kinetics of aldrin, endosulfan, lindane pesticides during full-scale continuous rotary drum composting

机译:温度,湿度和pH对艾氏剂,硫丹,林丹农药在大规模连续转鼓堆肥中降解和降解动力学的影响研究

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摘要

Study focused on effects of temperature, moisture and pH on degradation and degradation kinetics of aldrin, endosulfan (a), endosulfan (p) and lindane during vegetable waste composting using full-scale continuous rotary drum composter (FSCRDC). Extraction, concentration and quantification of pesticides were made from waste material at different stages by ultra-sonification, silica gel column and GC-MS analysis. Removal efficiency of aldrin, endosulfan α, endosulfan p and lindane was found 85.67%, 84.95%, 83.20% and 81.36% respectively due to optimum temperature, moisture, pH and enhanced micro-bial activity. Maximum temperature in inlet zone was found 60-65 ℃ which is most suitable for complex microbial population. After feeding and turning in inlet zone, temperature reduced to 38 ℃ from 60 to 65 ℃ and regained it within 7-8 h, and pH reduced to 5.3 ± 0.2 from 7.5 ± 0.3 in 4 h and regained it in 10h. Heterotrophic bacteria Bacillus sp., Pseudomonas sp. and Lactobacillus sp. also decreased from 4.4 × 10~3 to 7.80 × 10~2 CFU g~(-1) in 2 h due to gradual variation in temperature and pH. No significant temperature change was found in middle and outlet zones during feeding and turning. Degradation of pesticides was observed as first order kinetics and half-life of aldrin, endosulfan a, endosulfan p and lindane was reduced to 25.54,18.43, 18.43 and 27.43 d from 1095,60, 270 and 160 d respectively. Thus, the observations in contrast of removal and degradation kinetics of organochlorine pesticides residues in vegetable waste though full-scale rotary drum composting proved it the best suited technique.
机译:研究集中在温度,湿度和pH值对使用全尺寸连续旋转鼓式堆肥机(FSCRDC)进行蔬菜废物堆肥过程中艾氏剂,硫丹(a),硫丹(p)和林丹的降解和降解动力学的影响。通过超声波,硅胶柱和GC-MS分析,从不同阶段的废料中提取,浓缩和定量农药。由于最佳温度,水分,pH和增强的微生物活性,发现艾氏剂,硫丹α,硫丹p和林丹的去除效率分别为85.67%,84.95%,83.20%和81.36%。发现入口区域的最高温度为60-65℃,最适合复杂的微生物种群。进料并进入入口区后,温度从60℃降至65℃,在7-8小时内恢复到原来的温度; pH在4 h内从7.5±0.3降低到5.3±0.2,并在10小时内恢复到原来的水平。异养细菌芽孢杆菌属,假单胞菌属。和乳杆菌由于温度和pH值的逐渐变化,在2小时内也从4.4×10〜3降至7.80×10〜2 CFU g〜(-1)。在进料和转弯过程中,中部和出口区域均未发现明显的温度变化。观察到农药的降解,因为艾氏剂,硫丹a,硫丹p和林丹的一级动力学和半衰期分别从1095、60、270和160 d降低到25.54、18.43、18.43和27.43 d。因此,通过全面的转鼓堆肥,尽管观察到了蔬菜废料中有机氯农药残留的去除和降解动力学,但观察到的结果证明了它是最合适的技术。

著录项

  • 来源
    《Chemosphere》 |2014年第5期|68-75|共8页
  • 作者单位

    Department of Chemistry, Indian Institute of Technology Roorkee (IITR), Roorkee 247667, India;

    Department of Civil Engineering, Indian Institute of Technology Roorkee (IITR). Roorkee 247667, India;

    Department of Chemistry, Indian Institute of Technology Roorkee (IITR), Roorkee 247667, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aldrin; Endosulfan α; Endosulfan β; Lindane; Degradation; FSCRDC;

    机译:艾氏剂硫丹α;硫丹β;林丹降解;框架;

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