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61.
鸡粪腐解过程中不同溶性腐殖质结合铜的变化   总被引:2,自引:1,他引:2  
以鸡粪为材料,添加不同比例的铜锌进行腐解试验,研究了腐解过程中不同溶性腐殖质结合态铜(水溶性、氢氧化钠溶性、氢氧化钠-焦磷酸钠混合液溶性)浓度的动态变化、受锌含量的影响及其与有效铜的关系.结果表明,粪肥原样H2O-Cu(水溶性腐殖质结合态铜)占其全铜量的10.97%,在腐解过程中先上升后下降;随着粪肥中添加铜量的增加(1:1、2:1、3:1处理),H2O-Cu占其全铜的比例相应减少了(平均分别占其全铜的比例的7.10%、5.18%和3.74%);H2O-Cu随着腐解时间延长呈增加趋势;在腐解的后期(45、60d),粪肥中锌含量的增加会降低H2O-Cu含量.腐解初期粪肥原样NaOH浸提腐殖质-铜(NaOH-Cu)占其全铜量的70.87%,随腐解进行其比例大幅度下降;NaOH-Cu占其全铜的比例随着加入铜的增大而有所下降,分别为55.59%、46.04%和38.08%,且随着腐解时间延长呈下降趋势;粪肥中锌含量的增加对NaOH-Cu含量变化影响较小.粪肥原样中NaOH-Na4P2O7提取腐殖质结合态铜(NaOH-Na4P2O7-Cu)占其全铜量的24.29%,随腐解过程呈增加趋势,NaOH-Na4P2O7-Cu量随着加入铜量的增加而增加,占其全铜比例的15%~25%;粪肥中锌含量增加对NaOH-Na4P2O7-Cu有促进作用.粪肥添加铜锌后,3种浸提剂提取的可溶性腐殖质结合态铜有55%~80%分配在NaOH的溶液中,10%~30%分配在NaOH-Na4P2O7碱性混合液中,0~10%在水溶液中;随加入铜含量和锌含量的增加,NaOH-Na4P2O7-Cu平均分配比(占3种町浸提性腐殖质-Cu的比例)增加,NaOH-Cu和H2O-Cu的分配比减少.相关性分析结果表明:H2O-Cu、NaOH-Cu和NaOH-Na4P2O7-Cu之间显著正相关,它们与有效铜之间呈显著正相关关系(p<0.01).  相似文献   
62.
将源分类家庭生物有机垃圾同秸秆按质量比10:1混合后进行堆肥处理,应用气相色谱-质谱联用仪(GC-MS)按照U.S.EPA 8270方法对生物有机垃圾及其堆肥产品中16种PAHs进行分析测试,比较生物有机垃圾及其堆肥产品中16种PAHs含量、分布及生物降解率,评估堆肥产品PAHs农田风险,综合论述影响家庭有机垃圾堆肥过程中PAHs降解因素,为生物有机垃圾堆肥农田利用提供依据.结果表明,源分类家庭生物有机垃圾及其堆肥产品中∑PAH16化合物含量分别为2.19和1.96mg/ks(以干重计,下同),其中萘、芴、菲、荧蒽含量相对较高,占总量的79.76%和81.76%,这4种有机物的苯环在2-3之间,属于易降解非致癌物质,在农田施用中易被降解;在生物垃圾堆肥过程中∑PAH16的生物降解率为25.88%,堆肥后产品PAHs含量符合农田使用标准.  相似文献   
63.
利用土壤五氯酚(PCP)污染模拟实验,研究两种不同生态型蚯蚓(赤子爱胜蚓Eisenia foetida和壮尾环毛蚓Amynthas robustus E.Perrie)和堆肥固定化添加模式对漆酶降解土壤PCP的影响。在42 d培养期内,测试了不同处理下PCP质量分数、漆酶活性,以及土壤呼吸和微生物碳氮等微生物指标。结果表明:堆肥固定化漆酶降解土壤PCP的效果优于壳聚糖固定化漆酶和自由漆酶,主要原因是堆肥固定化漆酶能够有效地提高漆酶稳定性,减缓其活性下降速度。此外,堆肥还能提高土壤微生物的数量与活性,显著提升土壤漆酶的活性。添加两种生态型蚯蚓对漆酶活性影响不显著,但均可以显著提高土壤微生物的数量与活性,加速土壤中PCP的降解。壮尾环毛蚓对土壤微生物数量与活性的提升效果优于赤子爱胜蚓。  相似文献   
64.
Previous research in our laboratory reported a convenient laboratory-scale composting test method to study the weight loss of polymer films in aerobic thermophilic (53°C) reactors maintained at a 60% moisture content. The laboratory-scale compost reactors contained the following synthetic compost mixture (percentage on dry-weight basis): tree leaves (45.0), shredded paper (16.5), food (6.7), meat (5.8), cow manure (17.5), sawdust (1.9), aluminum and steel shavings (2.4), glass beads (1.3), urea (1.9), and a compost seed (1.0) which is designated Mix-1 in this work. To simplify the laboratory-scale compost weight loss test method and better understand how compost mixture compositions and environmental parameters affect the rate of plastic degradation, a systematic variation of the synthetic mixture composition as well as the moisture content was carried out. Cellulose acetate (CA) with a degree of substitution (DS) value of 1.7 and cellophane films were chosen as test polymer substrates for this work. The extent of CA DS-1.7 and cellophane weight loss as a function of the exposure time remained unchanged when the metal and glass components of the mixture were excluded in Mix-2. Further study showed that large variations in the mixture composition such as the replacement of tree leaves, food, meat, and sawdust with steam-exploded wood and alfalfa (forming Mix-C) could be made with little or no change in the time dependence of CA DS-1.7 film weight loss. In contrast, substituting tree leaves, food, meat, cow manure, and sawdust with steam-exploded wood in combination with either Rabbit Choice (Mix-D) or starch and urea (Mix-E) resulted in a significant time increase (from 7 to 12 days) for the complete disappearance of CA DS-1.7 films. Interestingly, in this work no direct correlation was observed between the C/N ratio (which ranged from 13.9 to 61.4) and the CA DS-1.7 film weight loss. Decreasing moisture contents of the compost Mix-2 from 60 and 50 and 40% resulted in dramatic changes in polymer degradation such that CA DS-1.7 showed an increase in the time period for a complete disappearance of polymer films from 6 to 16 and 30 days, respectively.Guest Editor: Dr. Graham Swift, Rohm & Haas.Paper presented at the Bio/Environmentally Degradable Polymer Society—Second National Meeting, August 19–21, 1993, Chicago, Illinois.  相似文献   
65.
Source separation, composting and anaerobic digestion, with associated land application, are increasingly being considered as alternative waste management strategies to landfilling and incineration of municipal solid waste (MSW). Environmental life cycle assessments are a useful tool in political decision-making about waste management strategies. However, due to the diversity of processed organic MSW and the situations in which it can be applied, the environmental impacts of land application are very hard to determine by experimental means. In the current study, we used the agroecosystem model Daisy to simulate a range of different scenarios representing different geographical areas, farm and soil types under Danish conditions and legislation. Generally, the application of processed organic MSW resulted in increased emissions compared with the corresponding standard scenarios, but with large differences between scenarios. Emission coefficients for nitrogen leaching to the groundwater ranged from 0.03 to 0.87, while those for nitrogen lost to surface waters through tile drains ranged from 0 to 0.30. Emission coefficients for N2O formation ranged from 0.013 to 0.022 and for ammonia volatilization from 0.016 to 0.11. These estimates are within reasonable range of observed values under similar conditions. Furthermore, a sensitivity analysis showed that the estimates were not very sensitive to the mineralization dynamics of the processed organic MSW. The results show that agroecosystem models can be powerful tools to estimate the environmental impacts of land application of processed MSW under different conditions. Despite this, agroecosystem models have only been used to a very limited degree for this purpose.  相似文献   
66.
城市污泥堆肥中水溶性有机物的理化特性变化   总被引:13,自引:1,他引:12  
通过透析和XAD-8树脂等方法研究了城市污泥堆肥过程中水溶性有机物(DOM)的理化特性变化.结果表明,随着堆肥的进行,堆肥DOM的浓度和pH值分别降低了58.4%和9.5%;DOM中小分子组分和亲水性组分分别减少了13.1%和9.2%,而大分子组分与疏水性组分有所增加,疏水性组分/亲水性组分由0.89增至1.29;DOM中C、H、N、S含量和C/H、C/N、C/S、C/(N+S)均呈降低趋势.这些变化趋势与堆肥过程中有机物的变化规律一致,因此,堆肥DOM的理化特性能用以表征堆肥的腐熟度.  相似文献   
67.
以铜绿假单胞菌和枯草芽孢杆菌为对象,通过序批实验和柱淋洗实验考察了堆肥介质中的腐殖质含量对细菌的吸附、传输性能的影响.结果表明,随着堆肥介质中腐殖质含量从0.21mg/g增至4.38mg/g,两种细菌在堆肥颗粒中的吸附系数均呈现降低趋势,降幅分别为24.9%和22.7%;2种细菌的穿透率均明显提高,最大穿透率铜绿假单胞菌从0.141提高到0.234,枯草芽孢杆菌从0.254提高到0.348.说明,堆肥介质中腐殖质的存在能够减弱两种高效细菌的吸附性能,促进其在堆肥介质中的传输分散,且腐殖质含量越高,效果越好.  相似文献   
68.
The spent mushroom compost of Lentinus edodes was used as a biosorbent for adsorbing cadmium, lead and chromium from solutions under batch conditions for the first time. Titration of the biomass revealed that it contained at least three types of functional groups. The Fourier transform infrared spectrometry showed that the carboxyl, phosphoryl, phenolic groups were the main groups. The simulated values of pK, and molar quantity were 5.00 and 0.44 mmol/g, 7.32 and 1.38 mmol/g, 10.45 and 1.44 mmol/g, respectively. The biosorption ability increased with pH in acid condition. When 10 mg/L biomass dosage was added in, there was no significant increment of metal uptake. The maximum uptake estimated with the Langmiur isotherm model were 833.33 mg/g for Cd( Ⅱ ), 1000.00 mg/g for Pb( Ⅱ ) and 44.44 mg/g for Cr( Ⅲ ), respectively. All the results showed that vast potential sorption capacity was existed in the biomass for adsorbing these three kinds of metals studied.  相似文献   
69.
土霉素降解菌TJ-1在猪粪无害化处理中的作用   总被引:6,自引:0,他引:6  
利用普通理化分析结合Biolog微平板技术研究了土霉素高效降解菌Staphylococcus sp.TJ-1在新鲜猪粪无害化处理中的作用.结果表明,土霉素高效降解菌的接种能显著提高猪粪中土霉素的降解效率(p<0.05),21d堆肥结束时可将土霉素降解率从62.7%提升至82.0%.堆肥结束后,不接种降解菌的普通堆肥工艺和接种降解菌的高效堆肥工艺中NH+4-N含量分别为189.34、42.36 mg·kg-1,NO-3-N含量分别为439.38、238.06 mg·kg-1.Biolog结果显示,土霉素降解菌TJ-1对土霉素中碳源的代谢有利于堆体中氨基酸类及芳香族化合物等氮源的降解,缓解了堆体中有毒有害物质对其他微生物的损伤,保证了微生物群落的多样性和活性,对维护堆体生态系统的稳定性具有良好作用.因此,接种高效降解菌进行堆肥是一种良好的消除抗生素残留的猪粪无害化工艺.  相似文献   
70.
Composting has emerged as a valuable route for the disposal of urban waste, with the prospect of applying composts on arable fields as organic amendments. Proper management of urban waste composts (UWC) requires a capacity to predict their impacts on carbon and nitrogen dynamics in the field, an issue in which simulation models are expected to play a prominent role.Here, we used a deterministic soil-crop model to simulate C–N dynamics in an arable field amended with three types of UWC (green waste and sludge, biodegradable waste, and solid waste), and a reference amendment (farmyard manure). The model is a version of CERES in which the soil C–N module was substituted with the NCSOIL model, whose microbiological parameters were determined from either laboratory incubation data or biochemical fractionation in a previous paper. CERES was tested against data from a field trial set up in 1998 in the Paris area, and managed as a maize (Zea mays L.)–wheat (Triticum aestivum L.) rotation. Comparison of observed and simulated data over the first 4 years of the field trial showed that CERES predicted the soil moisture and inorganic N dynamics reasonably well, as well as the variations in soil organic C. In particular, the parameterization of UWC organic matter from biochemical fractions achieved a similar fit as the parameterization based on incubation data. Wheat yields were also correctly predicted, but a systematic under-estimation of maize yields pointed at an under-estimation of spring and summer mineralization of N by CERES.Simulated N fluxes showed that the organic amendments induced an additional leaching ranging from 1 to 8 kg N ha−1 yr−1, which can be related to the initial mineral N content of the amendments. After 4 years, the composts had mineralized 3–8% of their initial organic N content, depending on their stability. Composts with slower N release had higher N availability for the crops. CERES could thus be used to aid in selecting the timing of compost application, in relation to its stability, based on both environmental and agronomical criteria.  相似文献   
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