China Dairy ›› 2021, Vol. 0 ›› Issue (11): 73-82.doi: 10.12377/1671-4393.21.11.10

• OVERVIEW • Previous Articles     Next Articles

Research Progress on Semi-membrane Covered Compost

SUN Xiaoxi, HUANG Guangqun, HE Xueqin, JING Tianjun, ZHENG Yongjun*   

  1. China Agricultural University,College Of Engineering,Beijing 100083
  • Online:2021-11-25 Published:2021-12-21

Abstract: The annual output of livestock and poultry manure pollution in China is huge. If it is not reasonably utilized,it will lead to a series of ecological and environmental problems. As an important way to achieve the harmlessness, reduction, and resource utilization of agricultural organic solid waste, compost has developed rapidly with the attention of national policies in recent years. Windrow, static forced-aeration, trough and reactor are regarded as main techniques and currently used by domestic and foreign fertilizers to solidify waste fertilizer. Semi-membrane covered compost technology is an improved compost technology model based on static forced-aeration piles and has been widely used due to its characteristics (e.g. energy saving, environmentally friendly, intelligent, efficient, light, portable, economical and universal). This review is an overview of the technical origins and development process, technical characteristics and engineering applications, and domestic and foreign research ofsemi-membrane covered compost.Finally, the key direction of future research and development of semi-membrane covered compost technology is pointed out.

Key words: compost, semi-membrane, research progress

[1] 李国学,张福锁. 固体废物堆肥化与有机复混肥生产[M]. 北京:化学工业出版社,2000.
[2] 李季,彭生平. 堆肥工程实用手册[M]. 北京:化学工业出版社,2011.
[3] Zeng J F, Shen X L, Han L J, et al. Dynamics of oxygen supply and consumption during mainstream large-scale composting in China[J]. Bioresource Technology, 2016, 220: 104-109.期号
[4] UmwelTpartner Vogel A G. UTV-Magazin[EB/OL]. https://www.kompostanlagen.de/utv-magazin/2015_de_en/files/assets/basic-html/page-1.html, 2021-11-13.
[5] Nigussie A, Bruun S, Kuyper T W, et al.Delayed addition of nitrogen-rich substrates during composting of municipal waste: Effects on nitrogen loss, greenhouse gas emissions and compost stability[J]. Chemosphere, 2017, 166: 352-362.
[6] Barrington S, Choinière D, Trigui M,et al.Effect of carbon source on compost nitrogen and carbon losses[J]. Bioresource Technology, 2002, 83(3): 189-194.
[7] Lim S, Park H, Hao X, et al.Nitrogen, carbon, and dry matter losses during composting of livestock manure with two bulking agents as affected by co-amendments of phosphogypsum and zeolite[J]. Ecological Engineering, 2017, 102: 280-290.
[8] 王涛. 膜覆盖条垛堆肥技术与应用案例[J]. 中国环保产业,2013(12):25-28.
[9] 张慧峰. ePTFE膜气体透过和透湿行为的研究[D]. 北京:北京化工大学,2003.
[10] 郭玉海,张建春,张旭东. 聚四氟乙烯薄膜防水透湿层压织物的研究[J]. 北京纺织,1998,(4):12-15.
[11] 郝荣耀,朱平. 可“呼吸”的功能性面料——聚四氟乙烯薄膜层压织物[J]. 现代纺织技术,2007,15(1):52-54.
[12] W. L. Gore Associates I. The principle of organic waste treatment with GORE® Cover[EB/OL]. https://www.gore.com/resources/principle-of-organic-waste-treatment-gore-cover?from=%5B%22product%3A7931%22%2C%22content_type%3A321%22%2C%22language%3Aen%22%5D, 2021-11-13.
[13] W. L. Gore Associates I. GORE® Cover for biosolids composting[EB/OL]. https://www.gore.com/resources/gore-cover-for-biosolids-composting?from=%5B%22product%3A7931%22%2C%22content_type%3A321%22%2C%22language%3Aen%22%5D, 2021-11-13.
[14] 陈佩芝,盛清凯. 德国UTV-GORE膜覆盖式畜禽粪便高温好氧发酵法[J]. 猪业科学,2016,33(6):52-53.
[15] Ma S S, Fang C, Sun X X, et al.Bacterial community succession during pig manure and wheat straw aerobic composting covered with a semi-permeable membrane under slight positive pressure[J]. Bioresource Technology, 2018, 259: 221-227.
[16] Sun X X, Ma S S, Han L J, et al.The effect of a semi-permeable membrane-covered composting system on greenhouse gas and ammonia emissions in the Tibetan Plateau[J]. Journal of Cleaner Production, 2018, 204: 778-787.
[17] Robledo-Mahón T, Martín M A, Gutiérrez M C, et al.Sewage sludge composting under semi-permeable film at full-scale: Evaluation of odour emissions and relationships between microbiological activities and physico-chemical variables[J]. Environmental Research, 2019, 177: 108624.
[18] González I, Robledo-Mahón T, Silva-Castro G A, et al. Evolution of the composting process with semi-permeable film technology at industrial scale[J]. Journal of Cleaner Production, 2016, 115: 245-254.
[19] Al-Alawi M, Szegi T, El Fels L, et al.Green waste composting under GORE (R) cover membrane at industrial scale: physico-chemical properties and spectroscopic assessment[J]. International Journal of Recycling of Organic Waste in Agriculture, 2019, 8(1): 385-397.
[20] 李广坤. 功能膜覆盖式污泥好氧堆肥系统的效能研究:[硕士论文][D]. 北京:北京林业大学,2016.
[21] Li Y C, Liu Y D, Yong X Y, et al.Odor emission and microbial community succession during biogas residue composting covered with a molecular membrane[J]. Bioresource Technology, 2020, 297: 122518. DOI10.1016/j.biortech.2019.122518.
[22] Biasioli F, Gasperi F, Odorizzi G, et al.PTR-MS monitoring of odour emissions from composting plants[J]. International Journal of Mass Spectrometry, 2004, 239(2-3): 103-109.
[23] 马双双,孙晓曦,韩鲁佳,等. 功能膜覆盖好氧堆肥过程氨气减排性能研究[J]. 农业机械学报,2017,48(11):344-349.
[24] Fang C, Yin H J, Han L J, et al.Effects of semi-permeable membrane covering coupled with intermittent aeration on gas emissions during aerobic composting from the solid fraction of dairy manure at industrial scale[J]. Waste Management, 2021, 131: 1-9. DOI10.1016/j.wasman.2021.05.030.
[25] Levis J W, Barlaz M A.What is the most environmentally beneficial way to treat commercial food waste?[J]. Environmental Science & Technology, 2011, 45(17): 7438-7444.
[26] Levis J W, Barlaz M A, Themelis N J, et al.Assessment of the state of food waste treatment in the United States and Canada[J]. Waste Management, 2010, 30(8-9): 1486-1494.
[27] 王军军. 膜高温好氧发酵技术在污泥处理工程中的应用[J]. 给水排水,2016,52(4):41-44.
[28] 盛金良,龚莹,宫宁,等. 污泥膜覆盖好氧发酵通风调节方法[J]. 环境工程学报,2013,7(2):705-710.
[29] 盛金良,朱金龙,胡海鹤,等. 污泥膜覆盖好氧发酵堆体流场模拟及应用研究[J]. 环境工程学报,2014,8(1):298-304.
[30] Ma S S, Xiong J P, Cui R X, et al.Effects of intermittent aeration on greenhouse gas emissions and bacterial community succession during large-scale membrane-covered aerobic composting[J]. Journal of Cleaner Production, 2020, 266: 121551. DOI10.1016/j.jclepro.2020.121551.
[31] 邹锦林,李伟光,吴传栋,等. 两种PTFE膜对污泥好氧发酵参数影响研究[J]. 给水排水,2016,52(4):37-40.
[32] 王涛,李成杰,李海漪. 污泥堆肥功能性覆盖膜阻氨特性的研究[J]. 中国环保产业,2019(5):52-55.
[33] Ma S S, Xiong J P, Wu X Y, et al.Effects of the functional membrane covering on the gas emissions and bacterial community during aerobic composting[J]. Bioresource Technology, 2021, 340: 125660. DOI:10.1016/j.biortech.2021.125660.
[34] 王涛. PMCT装配式膜覆盖堆肥系统研究[J]. 中国给水排水,2019,35(20):26-30.
[35] 孙晓曦,马双双,韩鲁佳,等. 智能型膜覆盖好氧堆肥反应器设计与试验[J]. 农业机械学报,2016,47(12):240-245.
[36] 孙晓曦,崔儒秀,马双双,等. 智能型规模化膜覆盖好氧堆肥系统设计与试验[J]. 农业机械学报,2018,49(10):356-362.
[37] Ma S S, Sun X X, Fang C, et al.Exploring the mechanisms of decreased methane during pig manure and wheat straw aerobic composting covered with a semi-permeable membrane[J]. Waste Management, 2018, 78: 393-400.
[38] Robledo-Mahón T, Aranda E, Pesciaroli C, et al.Effect of semi-permeable cover system on the bacterial diversity during sewage sludge composting[J]. Journal of Environmental Management, 2018, 215: 57-67.
[39] Gómez-Silván C, Andersen G L, Calvo C, et al.Assessment of bacterial and fungal communities in a full-scale thermophilic sewage sludge composting pile under a semipermeable cover[J]. Bioresource Technology, 2020, 298: 122550. DOI:10.1016/j.biortech.2019.122550.
[40] Xiong J P, Ma S S, He X Q, et al.Nitrogen transformation and dynamic changes in related functional genes during functional-membrane covered aerobic composting[J]. Bioresource Technology, 2021, 332: 125087. DOI:10.1016/j.biortech.2021.125087.
[1] CAO Zhetong, LENG Zhitao, YANG Yuanwen, SUN Changzheng, XIAO Shijun, GUO Xianfeng. The Research Progress of Aerobic Composting Technology In the Resource Utilization of Livestock and Poultry Manure [J]. China Dairy, 2021, 0(11): 65-72.
[2] LUO Shuai, SUN Zhimin, YUAN Qiaoxia, ZHONG Bo, LI Qingjiang. Analysis of Biological Composting of Cow Manure by Earthworms Model [J]. China Dairy, 2021, 0(11): 137-141.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!