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Impact of total carbon/sulfate on methane production and sulfate removal from co-digestion of sulfate-containing wastewater and corn stalk

机译:总碳/硫酸盐对甲烷生产和硫酸盐从共消化中的硫酸盐去除的影响 - 含硫废水和玉米秸秆

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摘要

During the process of preparing furfural by straw depolymerization with dilute sulfuric acid, large amounts of high temperature sulfate-rich organic wastewater were produced. It cannot be treated directly by anaerobic digestion and converted to bioenergy due to high concentrations of sulfate. In this study, anaerobic co-digestion of sulfate containing wastewater and corn stalk was performed at thermophilic conditions to investigate the influences of total carbon (TC)/sulfate (6, 16, 35 and 110) on methane production and sulfate removal. The results showed that the highest methane production of 260.14 mL g(-1) volatile solid (VS) was achieved at TC/sulfate of 35, which was significantly higher than 12.53 mL g(-1) VS obtained at TC/sulfate of 6. Moreover, the results of sulfate balance analysis showed a maximum sulfate removal of 93.43% was achieved at TC/sulfate of 16, and sulfate concentration in biogas slurry was less than 0.1 g/L regardless of TC/sulfate after 28 days of co-digestion. The microbial community was analyzed using 16S rDNA sequencing technology, the results showed that methane was mainly produced by Methanoculleus and Methanosarcina, and sulfate was removed via Desulfotomaculum, and the relative abundance of methanogenic archaea (MA) and sulfate reducing bacteria (SRB) were significantly correlated with methane production and sulfate removal. It can concluded that higher methane production and sulfate removal can be obtained by anaerobic co-digestion of sulfate containing wastewater and corn stalk at properly TC/sulfate.
机译:在用稀硫酸用秸秆脱聚的制备糠醛的过程中,制备大量高温硫酸盐的有机废水。由于高浓度的硫酸盐,不能直接通过厌氧消化治疗并转化为生物能量。在该研究中,在嗜热条件下进行含含硫酸盐和玉米秸秆的厌氧共消化,以研究总碳(TC)/硫酸盐(6,16,35和110)对甲烷生产和硫酸盐去除的影响。结果表明,在35的Tc /硫酸酯的Tc /硫酸盐中实现了260.14ml G(-1)挥发性固体(Vs)的最高甲烷产量,其在Tc /硫酸盐中获得的硫酸盐显着高于12.53ml g(-1)vs 。此外,硫酸盐平衡分析的结果显示在Tc /硫酸盐中获得的最大硫酸盐去除93.43%,沼气浆料中的硫酸盐浓度小于0.1g / L,无论在28天的合作后消化。使用16S RDNA测序技术分析微生物群落,结果表明,甲烷主要由甲烷素和甲蛋白酶产生,并通过脱硫颗粒除去硫酸盐,并且显着地除去甲状腺原煤(MA)和硫酸盐还原细菌(SRB)的相对丰度与甲烷生产和硫酸盐去除相关。它可以得出结论,通过在适当的Tc /硫酸盐处的含有废水和玉米秸秆的硫酸盐的厌氧共消化可以获得更高的甲烷生产和硫酸盐去除。

著录项

  • 来源
    《Journal of Environmental Management》 |2019年第1期|411-418|共8页
  • 作者单位

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China|Northeast Petr Univ Coll Architecture & Civil Engn 199 Dev Rd Daqing 163318 Peoples R China;

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China;

    Northeast Agr Univ Dept Agr Biol Environm & Energy Engn 600 Changjiang Rd Harbin 150030 Heilongjiang Peoples R China;

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

    Total carbon/sulfate; Sulfate-containing wastewater; Corn stalk; Co-digestion; Methane production; Sulfate removal;

    机译:总碳/硫酸盐;含硫酸盐的废水;玉米茎;共消化;甲烷生产;硫酸盐去除;

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