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1Effect of phosphogypsum and dicyandiamide as additives on NH_3,N_2O and CH_4 emissions during composting显示文摘A laboratory scale experiment of composting in a forced aeration system using pig manure with cornstalks was carried out to investigate the effects of both phosphogypsum and dicyandiamide (DCD, C2 H4 N4 ) as additives on gaseous emissions and compost quality. Besides a control, there were three amended treatments with different amounts of additives. The results indicated that the phosphogypsum addition at the rate of 10% of mixture dry weight decreased NH3 and CH4 emissions significantly during composting. The addition of DCD at the rate of 0.2% of mixture dry weight together with 10% of phosphogypsum further reduced the N20 emission by affecting the nitrification process. Reducing the phosphogypsum addition to 5% in the presence of 0.2% DCD moderately increased the NH3 emissions but not N20 emission. The additives increased the ammonium content and electrical conductivity significantly in the final compost. No adverse effect on organic matter degradation or the germination index of the compost was found in the amended treatments. It was recommended that phosphogypsum and DCD could be used in composting for the purpose of reducing NH3 , CH4 and N20 emissions.0ptimal conditions and dose of DCD additive during composting should be determined with different materials and composting systems in further study.Yiming Luo Guoxue Li Wenhai Luo Frank Schuchardt Tao Jiang Degang Xu 2013Journal of Environmental Sciences2013,25,7:28
2规模养猪场粪便堆肥处理生命周期评价实例分析显示文摘以北京郊区某规模化养猪场现有堆肥系统为例,运用生命周期评价方法,以养猪场现行堆肥工艺为参比,以4种不同翻堆频率条件下的条垛式堆肥工艺作为备选方案,对该养猪场粪便不同堆肥处理情景的环境影响进行系统对比分析。结果表明,每处理1 t新鲜猪粪的化石能源损耗潜力为80.8~221.5 MJ;堆肥氨挥发排放对系统总酸化效应和富营养化效应贡献率均达96%以上;CO^2和N2O等温室气体排放对总温室效应的贡献分别为58%~88%和8%~35%。能源投入和气体排放是猪粪堆肥生命周期环境影响的关键因素,实践生产中应注重使用清洁能源,并结合工艺特点采用氨挥发与温室气体减排技术,减少堆肥生产过程的环境污染。罗一鸣 张丽丽 李国学 吴迪梅 袁京 张卓毅 刘佳 2014农业环境科学学报2014,33,11:5
3Phosphorus status, use and recycling in a Chinese peri-urban region with intensive animal husbandry and cropping systems Results from case study in a Sino-German applied research collaboration project显示文摘The Sino-German research collaboration project,'Recycling of organic residues from agricultural and municipal origin in China'(2008–2012),comprising different interdisciplinary research groups,and also German small and medium-sized enterprises,aimed at developing integrated strategies and solutions for the recycling of organic residues in China.In an intensive crop-livestock agricultural region in the Shunyi District of Beijing,five typical cropping systems were investigated.The research was conducted in the form of analyses of phosphorus(P)in soil,plants,animal feed,animal products,manures,mineral and organic fertilizers and the derivation of the corresponding nutrient balances and P flows.The mean annual P balance surplus was492 kg·ha–1·yr–1 P for the vegetable production system,significantly higher(P<0.05)than that for orchards(130 kg·ha–1·yr–1 P)and cereal crops(83 kg·ha–1·yr–1 P).Plant-available P(Olsen-P)concentrations of topsoils(0–20 cm)had good correlations with the amounts of P applied(from mineral and organic sources).Compared to results from the Second Chinese National Soil Survey of 1981,mean concentrations of available P in soils of 19 plots investigated in Shunyi District increased 10-fold(from 7.3 to 60 mg·kg–1)from 1981 to 2009.On average,the critical limit for Olsen-P concentrations(>30 mg·kg–1)that can lead to increased risk of P loss was exceeded in all five cropping systems.With feed additives,the'natural background value'(Chinese Environmental Quality Standard for Soils)of copper and zinc in topsoils was exceeded at several sites.Screening for several substances in the veterinary antibiotic classes of sulfonamides,tetracyclines,and fluoroquinolones revealed widespread topsoil contamination.Calculated livestock densities were 10.6 livestock units per ha arable land in 2007.Animal husbandry is increasingly conducted in large operations,making traditional ways of reuse difficult to apply.Comparing three management systems for treatment of organic residues from a pig farm via aerobic(composting)or anaerobic(biogas)treatment in a life cycle assessment,the resulting cropland demand for a sustainable land application of biogas effluent varied between 139 and 288 ha·yr–1,well above the cropland area owned by the farm(10 ha).The mismatch problems in the above context between business-as-usual and improving performance are framed and discussed as(1)the mismatch between centralized animal husbandry and smallholder farming,(2)the mismatch between livestock density and cropland,(3)nutrient(including P)recycling and increasing organic matter content versus energy production,(4)subsidies for compost production and biogas,as well as(5)advances in the regulatory framework in China.Marco ROELCKE Lisa HEIMANN Yong HOU Jianbin GUO Qiaoyun XUE Wei JIA Anne OSTERMANN Roxana Mendoza HUAITALLA Moritz ENGBERS Clemens OLBRICH Roland W.SCHOLZ Joachim CLEMENS Frank SCHUCHARDT Rolf NIEDER Xuejun LIU Fusuo ZHANG 2019Frontiers of Agricultural Science and Engineering2019,6,4:0
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