Feasibility of NaOH-treatment for improving biogas production of digested Spartina alterniflora

文献类型: 外文期刊

第一作者: Chen, Guangyin

作者: Chen, Guangyin;Chang, Zhizhou;Chen, Guangyin;Zheng, Zheng

作者机构:

关键词: Advanced biogasification;NaOH-treatment;Spartina alterniflora;Anaerobic digestion;Biogas

期刊名称:INTERNATIONAL BIODETERIORATION & BIODEGRADATION ( 影响因子:4.32; 五年影响因子:4.719 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: order to improve the biotransformation rate of Spartina alterniflora (SA) and evaluate the feasibility of NaOH-treatment as a pretreatment of digested SA (DSA) for advanced anaerobic biogasification, two experiments were conducted under lab-scale conditions. First, SA was directly digested under 35 +/- 1 degrees C with initial total solid (TS) loading of 20% (the first stage). After 90 day's reaction, cumulative biogas yield of SA and average methane content were 388 22 ml g(-1) TSadded and 59.62 +/- 1.88%, respectively. Then the DSA was treated with 5% NaOH solution and was used for advanced biogasification (the second stage). The cumulative biogas yield of NaOH-treatment and control were 210 +/- 11 ml g(-1) TSadded and 103 +/- 16 ml g(-1) TSadded, respectively, with 70.78 +/- 2.11% and 76.92 +/- 1.94% of average methane content. The total cumulative biogas yield (sum of the first stage and the second stage of NaOH-treatment) and TS removal rate of SA were 495 24 ml g(-1) TSadded and 76.85 +/- 1.94%. After NaOH treatment, surface lignin and some carbohydrate of DSA were destructed into lignin fragment, organic acids, and some other small molecular organic matter; while the skeleton structure of lignin and cellulose were not destructed significantly. The results of C-13 NMR showed that methyl and carboxylic C groups of DSA were decomposed significantly. The results indicated that NaOH-treatment was a good pretreatment for DSA

分类号: Q93

  • 相关文献

[1]Alkaline Pretreatment of Banana Stems for Methane Generation: Effects of Temperature and Physicochemical Changes. Chen, Xue Lan,Han, Ya Xin,Zhang, Cheng Ming,Jiang, Li,Zhang, Lei,Li, Ji Hong,Li, Shi Zhong,Zhang, Cheng Ming,Feng, Guang Qiang,Zhao, Ming Xing,Yue, Rui Xue,Yue, Rui Xue,Li, Yan Fei,Han, Ya Xin,Jiang, Li,Zhang, Lei,Li, Ji Hong,Li, Shi Zhong. 2017

[2]A bibliometric analysis of anaerobic digestion for methane research during the period 1994-2011. Wang, Li-Hong,Wang, Qunhui,Zhang, Xiao,Cai, Weiwei,Wang, Li-Hong,Sun, Xiaohong. 2013

[3]Plant effects on burrowing crab morphology in a Chinese salt marsh: Native vs. exotic plants. Wang, Jin-qing,Lu, Wei-guang,Wang, Jin-qing,Li, Bo,Chen, Jia-kuan,Bertness, Mark D..

[4]Potential use of Spartina alterniflora as forage for dairy cattle. Qin, Fengfei,Shi, Chuanyan,Qin, Pei,Qin, Fengfei,Ding, Liren,Tang, Boping,Zhang, Huanshi,Zhou, Wenzong.

[5]The effects of N deposition on allelopathic potential of invasive plant Spartina alterniflora Loisel. Li, F. R.,Liang, S. C.,Li, M.,Duan, L. L..

[6]Greenhouse Gas Mitigation of Rural Household Biogas Systems in China: A Life Cycle Assessment. Hou, Jun,Zhang, Weifeng,Wang, Pei,Dou, Zhengxia,Gao, Liwei,Styles, David. 2017

[7]Current status of biogas development in Anhui province, China. Li Hui,Li Buqing,Liu Zuojun. 2016

[8]Sustainable development of modern agriculture based on straw returning after biogas treatment. Li Buqing,Li Hui,Liu Zuojun. 2016

[9]Study on the Rice Straw Pretreated with NaOH for Biogasification. Li, Jiayou,Yu, Jianxing,Cai, Liling,Ruan, Shanming,Ye, Xiaomei,Chang, Zhizhou. 2011

[10]A first-principles study on the interaction of biogas with noble metal (Rh, Pt, Pd) decorated nitrogen doped graphene as a gas sensor: A DFT study. Zhao, Chunjiang,Wu, Huarui,Zhao, Chunjiang,Wu, Huarui,Zhao, Chunjiang,Wu, Huarui. 2018

[11]Using pig manure to promote fermentation of sugarcane molasses alcohol wastewater and its effects on microbial community structure. Han Fei,Zhang Junya,Li Junfang,Shen, Peihong,Su Shuquan,Chen Zhineng,Gan Jiayi,Feng Bin,Wu Bo.

[12]Enhancing anaerobic digestion of cotton stalk by pretreatment with a microbial consortium (MC1). Xufeng Yuan,Lei Ma,Boting Wen,Dayun Zhou,Meng Kuang,Weihua Yang,Zongjun Cui.

[13]Impact of roxarsone on the UASB reactor performance and its degradation. Shui, Mengchuan,Tang, Rui,Yuan, Shoujun,Wang, Wei,Hu, Zhenhu,Ji, Feng,Zhan, Xinmin,Wang, Wei,Hu, Zhenhu. 2016

[14]Combined effect of crude fat content and initial substrate concentration on batch anaerobic digestion characteristics of food waste. Zhang, Wanqin,Dong, Hongmin,Zhang, Wanqin,Li, Xin,Dong, Renjie,Lang, Qianqian,Fang, Ming,Bah, Hamidou.

[15]Performance evaluation of a novel anaerobic digestion operation process for treating high-solids content chicken manure: Effect of reduction of the hydraulic retention time at a constant organic loading rate. Zhang, Wanqin,Dong, Hongmin,Zhang, Wanqin,Dong, Renjie,Lang, Qianqian,Pan, Zhendong,Jiang, Yingqing,Liebetrau, Jan,Nelles, Michael.

[16]Effects of anaerobic digestion on chlortetracycline and oxytetracycline degradation efficiency for swine manure. Yin, Fubin,Dong, Hongmin,Tao, Xiuping,Chen, Yongxing,Ji, Chao.

[17]Using Contaminated Plants Involved in Phytoremediation for Anaerobic Digestion. Cao, Zewei,Wang, Shengxiao,Shen, Zhenguo,Chen, Yahua,wang, Ting,Chang, Zhizhou,Shen, Zhenguo,Chen, Yahua,Shen, Zhenguo,Chen, Yahua.

[18]Co-digestion of tobacco waste with different agricultural biomass feedstocks and the inhibition of tobacco viruses by anaerobic digestion. Liu, Yi,Liu, Gangjin,Yang, Hongnan,Wang, Lan,Kong, Chuixue,Zheng, Dan,Deng, Liangwei,Dong, Jianxin,Liu, Wei,Yang, Jinguang,Wang, Shusheng.

[19]Influence of Organic Loading Rate on the Performance of a Two-Phase Pressurized Biofilm (TPB) System Treating Food Waste. Li, Yeqing,Yan, Fang,Liu, Hong,Wang, Yafei,Jiang, Hao,Qian, Mingyu,Zhou, Hongjun,Liu, Hong,Nie, Hong,Qian, Mingyu. 2017

[20]Characteristics of Kitchen Waste and the Formation of Floating Brown Particles (FBP) in the Anaerobic Digestion Process. Li, Yeqing,Jiang, Hao,Liu, Hong,Luo, Sen,Nie, Hong,Wang, Yafei,Qian, Mingyu,Ding, Jiangtao,Zhou, Hongjun,Liu, Hong,Nie, Hong,Qian, Mingyu. 2018

作者其他论文 更多>>