Functional Materials Laboratory (FML), School of Materials & Mineral Resources, Xi'an University of Architecture and Technology, Xi'an, Shaanxi 710055, China.
Functional Materials Laboratory (FML), School of Materials & Mineral Resources, Xi'an University of Architecture and Technology, Xi'an, Shaanxi 710055, China.
Bioresour Technol. 2018 Sep;263:517-524. doi: 10.1016/j.biortech.2018.05.042. Epub 2018 May 11.
To improve the methane yield and digestate utilization of anaerobic digestion (AD), low-cost composited accelerants consisting of urea (0.2-0.5%), bentonite (0.5-0.8%), active carbon (0.6-0.9%), and plant ash (0.01-0.3%) were designed and tested in batch experiments. Total biogas yield (485.7-681.9 mL/g VS) and methane content (63.0-66.6%) were remarkably enhanced in AD systems by adding accelerants compared to those of control group (361.9 mL/g VS, 59.4%). Composited accelerant addition led to the highest methane yield (454.1 mL/g VS), more than double that of control group. The TS, VS, and CODt removal rates (29.7-55.3%, 50.9-63.0%, and 46.8-69.1%) for AD with accelerants were much higher than control group (26.2%, 37.1%, and 39.6%). The improved digestate stability and enhanced fertilizer nutrient content (4.95-5.66%) confirmed that the digestate of AD systems with composited accelerants could safely serve as a potential component of bioorganic fertilizer. These findings open innovative avenues in composited accelerant development and application.
为提高厌氧消化(AD)的甲烷产量和消化物利用率,设计并测试了由尿素(0.2-0.5%)、膨润土(0.5-0.8%)、活性炭(0.6-0.9%)和植物灰(0.01-0.3%)组成的低成本复合促进剂。与对照组(361.9 mL/g VS,59.4%)相比,添加促进剂可显著提高 AD 系统的总沼气产量(485.7-681.9 mL/g VS)和甲烷含量(63.0-66.6%)。复合促进剂的添加可使甲烷产量达到最高(454.1 mL/g VS),是对照组的两倍多。添加促进剂的 AD 的 TS、VS 和 CODt 去除率(29.7-55.3%、50.9-63.0%和 46.8-69.1%)明显高于对照组(26.2%、37.1%和 39.6%)。消化物稳定性的提高和肥料养分含量的增加(4.95-5.66%)证实,添加复合促进剂的 AD 系统的消化物可安全用作生物有机肥的潜在成分。这些发现为复合促进剂的开发和应用开辟了创新途径。