Environmental Impacts of Farm-Scale Composting Practices

被引:14
作者
Joséphine Peigné
Philippe Girardin
机构
[1] ISARA,
[2] INRA Centre de Colmar,undefined
来源
Water, Air, and Soil Pollution | 2004年 / 153卷
关键词
air pollution; assessment; composting; environmental impacts; water pollution;
D O I
暂无
中图分类号
学科分类号
摘要
Because of its agronomic benefits, farm-scale composting is an efficient means of recycling agricultural waste. Composting process is an aerobic degradation of fresh organic matter in mature compost. Nevertheless, according to the literature, composting may induce some environmental problems. The environmental impacts of composting will be described, along with an assessment of farm-scale composting practices which play a major role in pollution. The main environmental components potentially affected by composting pollution are air and water. Various gases released by composting, such as NH3, CH4 and N2O, can impact air quality and are therefore studied because they all have environmental impacts and can be controlled by composting management. The effect on water quality can be evaluated by considering loss of NO3-, NH4+, organic compounds and PO43-. Technical evaluation criteria for the impact of farm-scale composting on the air are determined from the physical and chemical characteristics of the raw materials, the use of additives, the turning method and frequency and the duration of the composting operations. Regarding water, the weather conditions at the beginning of the composting operation, the location of the heap, the protection against rain, the water addition during the process, the use of covers and the recovery of leaching and runoff water are also taken into account. The two main practices which control the air and water pollution from composting are: the choice of the raw material which influences gas emissions and the choice of composting location which have an high effect on losses by leaching and runoff.
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页码:45 / 68
页数:23
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共 131 条
[11]  
Kirchmann H.(1996)Composting of food waste with straw and other carbon sources for nitrogen catching Environ. Sci. Technol. 30 2519-2525
[12]  
Bouwman A. F.(1997)Occurrence, degradation and fate of pesticides during composting. Part II: Occurence and fate of pesticides in compost and composting systems J. Environ. Qual. 26 189-193
[13]  
Brink N.(2000)Effects of biodynamic preparations on compost development Compost Sci. Util. 8 160-172
[14]  
Brink N.(2000)Remediation of pesticide contaminated soil by planting and compost addition Bioresour. Technol. 74 125-133
[15]  
Büyüksönmez F.(1999)Composting: Art and science of organic waste conversion to a valuable soil resource Courr. Environ. INRA 38 67-74
[16]  
Rynk R.(2000)Measurements of N Sci. Total Environ. 254 65-74
[17]  
Hess T. F.(1997)O composted organic wastes Appl. Environ. Microbiol. 63 1011-1018
[18]  
Bechinski E.(1984)Nutrient, carbon, and mass loss during composting of beef cattle feedlot manure J. Fac. Agric. Hokkaido Univ. 62 61-73
[19]  
Carpenter-Boggs L.(2000)Composting short paper fiber with broiler litter and additives, part I: Effects of initial pH and carbon/nitrogen ratio on ammonia emission Bioresour. Technol. 71 159-165
[20]  
Reganold J.-P.(1988)Composting and storage of organic household waste with different litter amendments. II: Nitrogen turnover and losses Biol. Wastes 26 247-259