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Degradation of bioplastics in organic waste by mesophilic anaerobic digestion, composting and soil incubation

机译:嗜合厌氧消化,堆肥和土壤孵化中有机废物中生物塑料的降解

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摘要

The aim of the study was to assess the effects of high concentrations (10 % w/w, data projected for 2030) of commercial bioplastics, i.e. starch based shopping bags (SBSB) and polylactic acid (PLA) tableware, in the organic fraction of municipal solid wastes (MSW) on compost quality obtained by pilot-scale dry mesophilic anaerobic digestion and subsequent composting of the digestate. After the biological processes, 48.1 % total solids (TS) of SBSB and 15 % TS of PLA degraded, resulting in a high bioplastics content (about 18 % TS) in compost. Subsequent compost incubation in soils indicated that bioplastics degraded by pseudo-zero order kinetics (0.014 and 0.010 mg C cm~(-2) d~(-1) for SBSB and PLA, respectively), i.e. complete degradation was expected in 1.6 years (SBSB) and 7.2 years (PLA), confirming the intrinsic biodegradability of bioplastics. Nevertheless, enhancing the rate and amount of bioplastics degradation during waste management represents a goal to decrease the amount of bioplastics reaching the environment.
机译:该研究的目的是评估商业生物塑料的高浓度(10%w / w,预计的数据,预计的10%)的商业生物塑料,即淀粉基的购物袋(SBSB)和聚乳酸(PLA)餐具,在有机分数中城市固体废物(MSW)堆肥质量通过试验级干嗜苯酚厌氧消化,随后堆肥消化。在生物学过程之后,48.1%的SBsb总固体(TS)和PLA的15%TS降解,导致堆肥中的高生物塑料含量(约18%TS)。土壤中的后续堆肥孵育表明,分别通过伪零阶动力学(0.014和0.010mg C cm〜(-2)d〜(-2)d〜(-1)分别用于SBSB和PLA的生物塑料,即预期在1.6岁时完全降解( SBSB)和7.2年(PLA),确认生物塑料的内在生物降解性。然而,增强废物管理期间的生物塑料劣化的速率和数量代表了降低达到环境的生物塑料量的目标。

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  • 来源
    《Waste Management 》 |2021年第10期| 67-77| 共11页
  • 作者单位

    Gruppo Ricicla Lab. - DiSAA - Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Gruppo Ricicla Lab. - DiSAA - Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Dipartimento di Scienze delta Terra Ardito Desio - Universita degli Studi di Milano Via Mangiagalli 34 20133 Milano Italy;

    Gruppo Ricicla Lab. - DiSAA - Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

    Gruppo Ricicla Lab. - DiSAA - Universita degli Studi di Milano Via Celoria 2 20133 Milano Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Biodegradability; Composting; Polylactic acid; Starch-based bioplastics;

    机译:厌氧消化;生物降解性;堆肥;聚乳酸;基于淀粉的生物塑料;

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