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An integrated method to produce fermented liquid feed and biologically modified biochar as cadmium adsorbents using corn stalks

机译:使用玉米秸秆生产发酵液体饲料和生物改性生物炭作为镉吸附剂的综合方法

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摘要

The recycling of agricultural waste is a global challenge to the sustainable development of agriculture. By using corn stalks, we studied the feasibility of combining anaerobic fermentation and pyrolysis processes to produce both fermentated liquid feed and biologically modified biocharas cadmium adsorbents. Anaerobic ensiling enhanced the biodegradation of corn stalks by increasing crude protein and reducing fiber contents. After 24-h anaerobic fermentation, corn stalks silage was decomposed into the liquid filtrate and non-fermented residue. Fermented liquid feed (FLF) was prepared by storing feed and liquid filtrate (1:4.0, wt/wt) in a closed tank at 20 °C for 4 days, which showed desired properties (pH < 4.5, lactic acid bacteria greater than 9.0 lg cfu g~(-1) lactic acid greater than 100 mmol L~(-1)). The non-fermented residue was pyrolyzed at 500 °C to prepare biologically modified biochar (BCB24). In comparison with pristine biochar produced from corn stalks (CB), anaerobic ensiling and anaerobic fermentation significantly increased the surface area, oxygen-containing functional groups, as well as mineral components in BCB24. The maximum sorption capacity of Cd(Ⅱ) for BCB24 was 2.1 times of CB, suggesting that BCB24 is an effective adsorbent for Cd(Ⅱ) removal from water. Our results indicated that coupling anaerobic fermentation and pyrolysis technology can significantly improve the efficiency of corn stalks recycling.
机译:农业废物的回收是对农业可持续发展的全球挑战。通过使用玉米秸秆,我们研究了组合厌氧发酵和热解过程的可行性,以产生发酵液体进料和生物改性的生物质谱镉吸附剂。 Anaerobic exiling通过增加粗蛋白和还原纤维含量来增强玉米秸秆的生物降解。 24小时后厌氧发酵后,玉米秸秆青贮分解成液体滤液和非发酵残余物。通过在20℃下在封闭罐中储存液体滤液(1:4.0,WT / WT)来制备发酵液进料(FLF)4天,其显示出所需的性质(pH <4.​​5,乳酸菌大于9.0 LG CFU G〜(-1)乳酸大于100mmol L〜(-1))。在500℃下热解的非发酵残余物以制备生物改性的生物炭(BCB24)。与由玉米秸秆(CB)产生的原始生物炭相比,厌氧酶和厌氧发酵显着增加了表面积,含氧官能团以及BCB24中的矿物组分。 BCB24的CD(Ⅱ)的最大吸收能力为CB的2.1倍,表明BCB24是用于从水中去除CD(Ⅱ)的有效吸附剂。我们的结果表明,偶联厌氧发酵和热解技术可以显着提高玉米秸秆回收的效率。

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  • 来源
    《Waste Management》 |2021年第5期|112-120|共9页
  • 作者单位

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    Sichuan Tobacco Company Liangshanzhou Company Xichang Sichuan 615000 China;

    Institute of Animal Nutrition Key Laboratory of Bovine Low Carbon Farming and Safe Production Sichuan Agricultural University Chengdu Sichuan 611130 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Horticulture Sichuan Agricultural University Chengdu 611130 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

    College of Resources Sichuan Agricultural University Chengdu 611730 China;

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

    Anaerobic ensiling; Bio-modified biochar; Cd remediation; Anaerobic fermentation; Fermentated liquid feed;

    机译:Anaerobic Ensiling;生物改性生物炭;CD修复;厌氧发酵;发酵液体饲料;

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