...
首页> 外文期刊>Journal of environmental sciences >Co-inhibition of methanogens for methane mitigation in biodegradable wastes
【24h】

Co-inhibition of methanogens for methane mitigation in biodegradable wastes

机译:甲烷抑制甲烷可生物降解废物中甲烷的共抑制作用

获取原文
获取原文并翻译 | 示例
           

摘要

The inhibition effects and mechanisms of chlorinated methane and acetylene on methanogenesis in the anaerobic digestion process of the biodegradable wastes were investigated. It was found that both chloroform and acetylene could effectively inhibit methanogens while the biodegradability of the wastes was not affected. Acetylene inhibited the activity of methanogens, while chloroform inhibited metabolic process of methanogenesis. A central composite design (CCD) and response surface regression analysis (RSREG) were employed to determine the optimum conditions and interaction effects of chloroform and acetylene in terms of inhibition efficiency, production of volatile fatty acids (VAF) and molar ratio of propionic acid to acetic acid. Chloroform had significant effect on enhancing the production of VFA (F = 121.3; p < 0.01), and acetylene promoted the inhibition efficiency (F = 99.15; p < 0.05) more effectively than chloroform (F = 9.72; p > 0.05). In addition, a maximum molar ratio of propionic acid to acetic acid of 1.208 was estimated under the optimum conditions of chloroform concentration of 9.05 mg/kg and acetylene concentration of 3.6 × 10~(-3) (V/V). Hence, methanogens in the wastes can be inhibited while the stabilization process of the biodegradable wastes can still work well, as propionic acid generated during the inhibition process could hardly be utilized by methanogens.
机译:研究了可降解垃圾厌氧消化过程中氯甲烷和乙炔对甲烷生成的抑制作用及其机理。发现氯仿和乙炔都可以有效抑制产甲烷菌,而废物的生物降解性却没有受到影响。乙炔抑制产甲烷菌的活性,而氯仿抑制产甲烷的代谢过程。使用中央复合设计(CCD)和响应表面回归分析(RSREG)来确定氯仿和乙炔在抑制效率,挥发性脂肪酸(VAF)的产生以及丙酸与乙炔的摩尔比方面的最佳条件和相互作用效果醋酸。氯仿对提高VFA的产生具有显著作用(F = 121.3; p <0.01),并且乙炔比氯仿(F = 9.72; p> 0.05)更有效地提高了抑制效率(F = 99.15; p <0.05)。另外,在氯仿浓度为9.05 mg / kg,乙炔浓度为3.6×10〜(-3)(V / V)的最佳条件下,丙酸与乙酸的最大摩尔比为1.208。因此,可以抑制废物中的产甲烷菌,同时可生物降解废物的稳定化过程仍然可以很好地发挥作用,因为在抑制过程中产生的丙酸很难被产甲烷菌利用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号