Xiang Qiu-Jie, Yang Yu-Han, Zhang Cheng, Xiang Xin-Yi, Mu Zhi-Jian
College of Resources and Environment, Southwest University, Chongqing 400715, China.
Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing 400715, China.
Huan Jing Ke Xue. 2017 Oct 8;38(10):4390-4397. doi: 10.13227/j.hjkx.201703224.
Effect of adding bamboo biochar into the compost at different dosages on greenhouse gas emissions was investigated by analyzing the dynamic characteristics of the process of municipal sludge composting with four different composts (S1:adding 2.5% bamboo biochar, S2:adding 5% bamboo biochar, S3:adding 10% bamboo biochar, CK:without bamboo biochar). The results showed that CH emissions mainly occurred during the heating period and the beginning of the altithermal period, accounting for 99.01%-99.81% of the total emissions. When the added bamboo biochar is less than 5%, CH emissions decrease with the increase in the amount of bamboo biochar. If it is more than 5%, CH emissions will clearly increase. CO emissions mainly occurred during the heating period and the altithermal period, accounting for 75.65%-86.58% of the total emissions. Adding bamboo biochar can reduce 3.37%-13.48% of the CO emissions but there is no significant difference between the treatments (>0.05). NO emissions mainly occurred during the heating period and the rotten period. Adding bamboo biochar can reduce the emissions of NO; the more the amount of bamboo biochar, the less NO emissions (<0.05). The emission factors of CK, S1, S2, and S3 were 44.10, 37.57, 35.10, and 35.44 kg·t of dry sludge, respectively. S1, S2, and S3 showed 14.81%-20.41% reduction in greenhouse gas emissions owing to the addition of bamboo biochar, indicating that bamboo biochar can reduce the carbon emissions in the process of sludge composting.
通过分析四种不同堆肥(S1:添加2.5%竹炭,S2:添加5%竹炭,S3:添加10%竹炭,CK:不添加竹炭)的城市污泥堆肥过程的动态特性,研究了不同剂量竹炭添加到堆肥中对温室气体排放的影响。结果表明,CH排放主要发生在升温期和高温期初期,占总排放量的99.01%-99.81%。当添加的竹炭小于5%时,CH排放量随竹炭添加量的增加而降低。如果超过5%,CH排放量将明显增加。CO排放主要发生在升温期和高温期,占总排放量的75.65%-86.58%。添加竹炭可减少3.37%-13.48%的CO排放,但各处理之间无显著差异(>0.05)。NO排放主要发生在升温期和腐熟期。添加竹炭可减少NO排放;竹炭添加量越多,NO排放量越少(<0.05)。CK、S1、S2和S3的排放因子分别为44.10、37.57、35.10和35.44 kg·t干污泥。由于添加了竹炭,S1、S2和S3的温室气体排放量减少了14.81%-20.41%,表明竹炭可以减少污泥堆肥过程中的碳排放。