Full Text:   <2857>

CLC number: S141.4

On-line Access: 2014-04-06

Received: 2013-08-13

Revision Accepted: 2014-01-10

Crosschecked: 2014-03-18

Cited: 10

Clicked: 5476

Citations:  Bibtex RefMan EndNote GB/T7714

-   Go to

Article info.
Open peer comments

Journal of Zhejiang University SCIENCE B 2014 Vol.15 No.4 P.353-364

http://doi.org/10.1631/jzus.B13a0271


Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system*


Author(s):  Xiang-ping Sun1,2, Peng Lu3, Tao Jiang4, Frank Schuchardt5, Guo-xue Li2

Affiliation(s):  1. Institute of Bast Fiber Crops, Chinese Academy of Agricultural Sciences, Changsha 410205, China; more

Corresponding email(s):   sunxp66@163.com

Key Words:  Organic waste, Composting, Bulking agent, Gaseous emission, Pig manure


Xiang-ping Sun, Peng Lu, Tao Jiang, Frank Schuchardt, Guo-xue Li. Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system[J]. Journal of Zhejiang University Science B, 2014, 15(4): 353-364.

@article{title="Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system",
author="Xiang-ping Sun, Peng Lu, Tao Jiang, Frank Schuchardt, Guo-xue Li",
journal="Journal of Zhejiang University Science B",
volume="15",
number="4",
pages="353-364",
year="2014",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.B13a0271"
}

%0 Journal Article
%T Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system
%A Xiang-ping Sun
%A Peng Lu
%A Tao Jiang
%A Frank Schuchardt
%A Guo-xue Li
%J Journal of Zhejiang University SCIENCE B
%V 15
%N 4
%P 353-364
%@ 1673-1581
%D 2014
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.B13a0271

TY - JOUR
T1 - Influence of bulking agents on CH4, N2O, and NH3 emissions during rapid composting of pig manure from the Chinese Ganqinfen system
A1 - Xiang-ping Sun
A1 - Peng Lu
A1 - Tao Jiang
A1 - Frank Schuchardt
A1 - Guo-xue Li
J0 - Journal of Zhejiang University Science B
VL - 15
IS - 4
SP - 353
EP - 364
%@ 1673-1581
Y1 - 2014
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.B13a0271


Abstract: 
Mismanagement of the composting process can result in emissions of CH4, N2O, and NH3, which have caused severe environmental problems. This study was aimed at determining whether CH4, N2O, and NH3 emissions from composting are affected by bulking agents during rapid composting of pig manure from the Chinese Ganqinfen system. Three bulking agents, corn stalks, spent mushroom compost, and sawdust, were used in composting with pig manure in 60 L reactors with forced aeration for more than a month. Gas emissions were measured continuously, and detailed gas emission patterns were obtained. Concentrations of NH3 and N2O from the composting pig manure mixed with corn stalks or sawdust were higher than those from the spent mushroom compost treatment, especially the sawdust treatment, which had the highest total nitrogen loss among the three runs. Most of the nitrogen was lost in the form of NH3, which accounts for 11.16% to 35.69% of the initial nitrogen. One-way analysis of variance for NH3 emission showed no significant differences between the corn stalk and sawdust treatments, but a significant difference was noted between the spent mushroom compost and sawdust treatments. The introduction of sawdust reduced CH4 emission more than the corn stalks and spent mushroom compost. However, there were no significant differences among the three runs for total carbon loss. All treatments were matured after 30 d.

“干清粪”系统猪粪快速堆肥过程中添加剂对甲烷、氧化亚氮和氨气排放的影响

研究目的:在“干清粪”系统猪粪堆肥过程中,不同添加剂(玉米秸秆、锯末和蘑菇渣)处理对甲烷、氧化亚氮和氨气排放的影响。
创新要点:将不同的添加剂(玉米秸秆、锯末和蘑菇渣)应用到快速堆肥系统中进行堆肥,测定了猪粪堆肥过程中甲烷、氧化亚氮和氨气的排放规律,为国内猪粪堆肥的应用提供理论指导。
重要结论:玉米秸秆作为添加剂能增加猪粪堆肥过程中氧化亚氮的排放;蘑菇渣添加剂增加了堆肥过程中甲烷的排放,然而减少了氧化亚氮及氨气的排放;锯末处理能增加堆肥过程中氨气的排放。添加剂能显著影响堆肥过程中氮素的损失。

关键词:有机废弃物;堆肥;添加剂;气体排放;猪粪

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

References

[1] Adhikari, B.K., Barrington, S., Martinez, J., 2009. Effectiveness of three bulking agents for food waste composting. Waste Manage, 29(1):197-203. 


[2] Angnes, G., Nicoloso, R.S., da Silva, M.L.B., 2013. Correlating denitrifying catabolic genes with N2O and N2 emissions from swine slurry composting. Bioresource Technol, 140:368-375. 


[3] Atkinson, C.F., Jones, D.D., Gauthier, J.J., 1996. Biodegradabilities and microbial activities during composting of oxidation ditch sludge. Compost Sci Utiliz, 4(1):84-96. 


[4] Barrington, S., Choinire, D., Trigui, M., 2002. Effect of carbon source on compost nitrogen and carbon losses. Bioresource Technol, 83(3):189-194. 


[5] Beck-Friis, B., Pell, M., Sonesson, U., 2000. Formation and emission of N2O and CH4 from compost heaps of organic household waster. Environ Monit Assessm, 62(3):317-331. 


[6] Beck-Friis, B., Smars, S., Jonsson, H., 2001. Gaseous emissions of carbon dioxide, ammonia and nitrous oxide from organic household waste in a compost reactor under different temperature regimes. J Agric Eng Res, 78(4):423-430. 


[7] Chang, J.I., Chen, Y.J., 2010. Effects of bulking agents on food waste composting. Bioresource Technol, 101(15):5917-5924. 


[8] Czepiel, P., Douglas, E., Harriss, R., 1996. Measurements of N2O from composted organic wastes. Environ Sci Technol, 30(8):2519-2525. 


[9] Dias, B.O., Silva, C.A., Higashikawa, F.S., 2010. Use of biochar as bulking agent for the composting of poultry manure: effect on organic matter degradation and humification. Bioresource Technol, 101(4):1239-1246. 


[10] Doublet, J., Francou, C., Poitrenaud, M., 2011. Influence of bulking agents on organic matter evolution during sewage sludge composting; consequences on compost organic matter stability and N availability. Bioresource Technol, 102(2):1298-1307. 


[11] El Kader, N.A., Robin, P., Paillat, J.M., 2007. Turning, compacting and the addition of water as factors affecting gaseous emissions in farm manure composting. Bioresource Technol, 98(14):2619-2628. 


[12] Fukumoto, Y., Osada, T., Hanajima, D., 2003. Patterns and quantities of NH3, N2O and CH4 emissions during swine manure composting without forced aeration—effect of compost pile scale. Bioresource Technol, 89(2):109-114. 


[13] Garca, C., Hernndez, T., Costa, F., 1991. Study on water extract of sewage-sludge composts. Soil Sci Plant Nutr, 37(3):399-408. 


[14] Gea, T., Barrena, R., Artola, A., 2007. Optimal bulking agent particle size and usage for heat retention and disinfection in domestic wastewater sludge composting. Waste Manage, 27(9):1108-1116. 


[15] Goyal, S., Dhull, S.K., Kapoor, K.K., 2005. Chemical and biological changes during composting of different organic wastes and assessment of compost maturity. Bioresource Technol, 96(14):1584-1591. 


[16] Hao, X.Y., Chang, C., Larney, F.J., 2001. Greenhouse gas emissions during cattle feedlot manure composting. J Environ Qual, 30(2):376-386. 


[17] Hao, X.Y., Chang, C., Larney, F.J., 2004. Carbon, nitrogen balances and greenhouse gas emission during cattle feedlot manure composting. J Environ Qual, 33(1):37-44. 


[18] He, Y.W., Inamori, Y., Mizuochi, M., 2000. Measurements of N2O and CH4 from the aerated composting of food waste. Sci Total Environ, 254(1):65-74. 


[19] Huang, G.F., Wong, J.W.C., Wu, Q.T., 2004. Effect of C/N on composting of pig manure with sawdust. Waste Manage, 24(8):805-813. 


[20] Imbeah, M., 1998. Composting piggery waste: a review. Bioresource Technol, 63(3):197-203. 


[21] Iqbal, M.K., Shafiq, T., Ahmed, K., 2010. Characterization of bulking agents and its effects on physical properties of compost. Bioresource Technol, 101(6):1913-1919. 


[22] Jarvis, .., Sundberg, C., Milenkovski, S., 2009. Activity and composition of ammonia oxidizing bacterial communities and emission dynamics of NH3 and N2O in a compost reactor treating organic household waste. J Appl Microbiol, 106(5):1502-1511. 


[23] Jiang, T., Schuchardt, F., Li, G., 2011. Effect of C/N ratio, aeration rate and moisture content on ammonia and greenhouse gas emission during the composting. J Envir Sci-China, 23(10):1754-1760. 


[24] Jolanun, B., Towprayoon, S., 2010. Novel bulking agent from clay residue for food waste composting. Bioresource Technol, 101(12):4484-4490. 


[25] Kato, K., Miura, N., 2008. Effect of matured compost as a bulking and inoculating agent on the microbial community and maturity of cattle manure compost. Bioresource Technol, 99(9):3372-3380. 


[26] Kimberly, A.E., Roberts, M.G., 1905. A method for the direct determination of organic nitrogen by the kjeldahl process. Public Health Pap Rep, 31(2):109-122. 


[27] Komilis, D., Ham, R., 2006. Carbon dioxide and ammonia emissions during composting of mixed paper, yard waste and food waste. Waste Manage, 26(1):62-70. 


[28] Liang, Y., Leonard, J.J., Feddes, J.J.R., 2006. Influence of carbon and buffer amendment on ammonia volatilization in composting. Bioresource Technol, 97(5):748-761. 


[29] Liu, D., Zhang, R., Wu, H., 2011. Changes in biochemical and microbiological parameters during the period of rapid composting of dairy manure with rice chaff. Bioresource Technol, 102(19):9040-9049. 


[30] Martin, A.M., Evans, J., Porter, D., 1993. Comparative effects of peat and sawdust employed as bulking agents in composting. Bioresource Technol, 44(1):65-69. 


[31] Michel, F.C., Pecchia, J.A., Rigot, J., 2004. Mass and nutrient losses during the composting of dairy manure amended with sawdust or straw. Compost Sci Utiliz, 12(4):323-334. 


[32] Nolan, T., Troy, S.M., Healy, M.G., 2011. Characterization of compost produced from separated pig manure and a variety of bulking agents at low initial C/N ratios. Bioresource Technol, 102(14):7131-7138. 


[33] Osada, T., Kuroda, K., Yonaga, M., 1997. N2O, CH4 and NH3 emissions from composting of swine waste.  VOERMANS, JAM &. MGJ Iternational Symposium on Ammonia and Odour Control from Animal Production Facilities. Vinkeloord,the Netherlands :373-380. 

[34] Pagans, E., Barrena, R., Font, X., 2006. Ammonia emissions from the composting of different organic wastes. Dependency on process temperature. Chemosphere, 62(9):1534-1542. 


[35] Ren, L., Schuchardt, F., Shen, Y., 2010. Impact of struvite crystallization on nitrogen losses during composting of pig manure and cornstalk. Waste Manage, 30(5):885-892. 


[36] Sanchez-Monedero, M.A., Roig, A., Paredes, C., 2001. Nitrogen transformation during organic waste composting by the Rutgers system and its effects on pH, EC and maturity of the composting mixtures. Bioresource Technol, 78(3):301-308. 


[37] Sellami, F., Hachicha, S., Chtourou, M., 2008. Maturity assessment of composted olive mill wastes using UV spectra and humification parameters. Bioresource Technol, 99(15):6900-6907. 


[38] Shen, Y., Ren, L., Li, G., 2011. Influence of aeration on CH4, N2O and NH3 emissions during aerobic composting of a chicken manure and high C/N waste mixture. Waste Manage, 31(1):33-38. 


[39] Sommer, S.G., Moller, H.B., 2000. Emission of greenhouse gases during composting of deep litter from pig production—effect of straw content. J Agric Sci, 134(3):327-335. 


[40] Szanto, G.L., Hamelers, H.V.M., Rulkens, W., 2007. NH3, N2O and CH4 emissions during passively aerated composting of straw-rich pig manure. Bioresource Technol, 98(14):2659-2670. 


[41] Velasco-Velasco, J., Parkinson, R., Kuri, V., 2011. Ammonia emissions during vermicomposting of sheep manure. Bioresource Technol, 102(23):10959-10964. 


[42] Yeomans, J.C., Bremner, J.M., 1988. A rapid and precise method for routine detemination of organic carbon in soil. Commun Soil Sci Plant Anal, 19(13):1467-1476. 



Open peer comments: Debate/Discuss/Question/Opinion

<1>

Please provide your name, email address and a comment





Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou 310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn
Copyright © 2000 - 2024 Journal of Zhejiang University-SCIENCE