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1.
为明确牛粪堆肥过程中3种四环素类抗生素(四环素、土霉素、金霉素)的降解及其影响因素,以牛粪和玉米秸秆为原料,用小型泡沫盒在恒温培养箱中进行为期40 d的堆肥试验。设置3因素3水平处理:抗生素质量浓度(25、50、75 mg/kg)、培养温度(25、35、45℃)和C/N(质量比,15、25、35),通过优化的高效液相色谱法检测堆肥过程中抗生素的降解情况。结果表明,好氧堆肥有效地降低了牛粪中四环素类抗生素的含量,残留率小于24.1%。随着抗生素浓度的增加,四环素、土霉素、金霉素的残留率均逐渐增加,并达到显著水平(p<0.05);随着培养温度的增加,四环素的残留率逐渐降低,且处理间差异显著(p<0.05);当堆体的C/N为25时,3种抗生素的残留率最低,且显著低于其他两个处理(p<0.05)。整个堆肥过程中,抗生素在第5~14天降解最快,这段时间堆体温度也相对较高,说明四环素类抗生素的降解主要发生在高温阶段。好氧堆肥处理虽然可以有效降低牛粪中四环素类抗生素的残留,但不能完全将其去除。因此,在农业生产中,需酌量使用有机肥。  相似文献   

2.
为了明确不同生化黄腐酸投加量对木薯渣堆肥效果的影响,以木薯渣、干鸡粪和烟杆粉为原料,设置了T1(堆肥原料+1‰生化黄腐酸)、T2(堆肥原料+2‰生化黄腐酸)、T3(堆肥原料+3‰生化黄腐酸)和CK(不添加生化黄腐酸的堆肥原料)4个处理,测定不同堆肥处理对温度、含水率、淀粉、水溶性碳(DOC)、纤维素、半纤维素、木质素含量以及一些腐熟程度指标的影响。结果表明,添加生化黄腐酸能促进堆体升温,有效降低堆体含水率,能使堆肥过程中淀粉、DOC、纤维素、半纤维素的降解率分别提高5.95%、5.29%、7.35%和4.95%,并且腐熟程度指标的变化也表明添加生化黄腐酸能有效促进堆肥腐熟程度,缩短腐熟周期。4个处理的总体堆肥效果表现为:T2T1T3CK,说明添加2‰的生化黄腐酸的堆肥效果最好。  相似文献   

3.
生活垃圾堆肥浸提液组成及其演化规律   总被引:2,自引:0,他引:2  
堆肥浸提液与渗滤液组成相似,研究生活垃圾堆肥浸提液组成与演化特征可以为堆肥过程污染控制和堆肥质量改善提供科学依据。通过基本理化指标和三维荧光光谱分析,研究了生活垃圾堆肥浸提液的组成和转化特性。结果显示,在堆肥一次和二次发酵过程中,浸提液p H由5.43上升至9.24,无机阴离子无显著变化,电导率(EC)稳定在7.50m S/cm上下波动,ORP为正值,总氮从611.08 mg/L下降至177.43 mg/L,NH+4-N和NO-3-N浓度变化不明显,NO-2-N从未检出到后期达10.28 mg/L,有机氮从246.64 mg/L下降至172.52 mg/L。溶解性有有机物含量(DOC)从7 419.00 mg/L降至5 569.00 mg/L,其中的有机物发生降解和转化,生成胡敏酸和富里酸等物质。浸提液中重金属Fe、Cd、Cu、Zn、Cr、Mn、Ni和As浓度升高。通过研究发现,在堆肥中添加木屑等填料可以降低浸提液中NH+4-N的浓度,具有除臭作用,同时对p H值、EC和ORP均有调节作用,能提高堆肥的土地可利用性。  相似文献   

4.
城市生活垃圾和污泥混合堆肥中氮素变化规律研究   总被引:4,自引:0,他引:4  
进行了不同比例的垃圾和污泥混合的高温好氧静态堆肥小试试验,主要研究了堆肥过程中全氮、氨氮、硝态氮、水溶性氮以及有机碳等的变化.结果表明,堆肥过程中有机碳、全氮和碳氮比呈下降趋势;堆肥产品中全氮与其初始浓度成正比,初始浓度越高,结束时全氮越高;碳氮比在整个堆肥过程中变化不大;氨氮的变化显著,堆肥23 d,3种比例的混合样品(垃圾和污泥体积比分别为9∶1、5∶1和3∶1)中的氨氮分别由堆肥前的11.1、10.9、10.5 g/kg下降到1.1、2.1、3.1 g/kg;水溶性全氮和水溶性氨氮的下降趋势明显,水溶性氨氮是构成水溶性全氮的主要成分,堆肥前期温度的上升引起水溶性全氮和水溶性氨氮的迅速下降;硝态氮和水溶性硝态氮的浓度低,变化小;氮素损失主要在第3~10天的堆肥高温期,污泥量越大,氮素损失越严重,氮素损失率最高达45%.  相似文献   

5.
中国商品有机肥重金属分析   总被引:7,自引:0,他引:7  
测定了来自10个地区不同生产原料的118个商品有机肥样品的重金属含量.结果表明:(1)商品有机肥样品中的Cd、Hg、Pb、Cr、As、Zn、Cu、Ni的平均值分别为0.600、0.120、7.34、84.30、9.45、202.91、91.06、11.01 mg/kg.(2)河南、湖北、上海的商品有机肥中8种重金属平均值均较高;内蒙古的商品有机肥中Cr平均值为20.32 mg/kg,广西的商品有机肥中Zn平均值为51.36mg/kg,远低于所有样品中Cr和Zn平均值.(3)以猪粪为主要生产原料的商品有机肥中重金属平均值最高.(4)Cr超过中国商品有机肥重金属限量标准、欧盟生态标志法的重金属限量标准、加拿大堆肥重金属限量标准(A级)和加拿大堆肥重金属限量标准(B级);As、Cd超过中国商品有机肥重金属限量标准、欧盟生态标志法的重金属限量标准和加拿大堆肥重金属限量标准(A级);Cu、Zn超过欧盟生态标志法的重金属限量标准和加拿大堆肥重金属限量标准(A级);Hg超过加拿大堆肥重金属限量标准(A级);Pb超过中国商品有机肥重金属限量标准;Ni均未超标.  相似文献   

6.
猪粪经蝇蛆生态处理后粪臭素和排污量的变化   总被引:3,自引:0,他引:3  
观察家蝇幼虫 (蝇蛆 )生态处理猪粪后 ,猪粪中粪臭素和排污量的变化。以养猪场的猪粪为试验材料 ,经当地蝇蛆处理的猪粪作为处理组 ,未经蝇蛆处理的猪粪为对照组 ,测定两组猪粪样本中粪臭素 ( 3 -甲基吲哚 ,简称 3 -MI)、CODCr、BOD5和 NH3-N的质量浓度。经蝇蛆处理后每 kg猪粪中的 3 -MI、CODCr、BOD5和 NH3-N分别为 2 .76× 10 - 3、5 6.3 6、14 .84和 3 .41g;对照组中上述物质分别为 3 8.5 8× 10 - 3、12 3 .0 1、60 .0 7和 3 .64 g。经蝇蛆处理后的猪粪中的 3 -MI、CODCr和 BOD5分别减少了 92 .8%、5 4.2 %和75 .3 %;而 NH3-N的含量仅减少 6.3 %。蝇蛆生态处理猪粪可有效减少粪臭素和有机污染物 ,有利于改善环境  相似文献   

7.
以秸秆等农业废物为主要原料,添加硝化抑制剂双氰胺(dicyandiamide,DCD)进行静态好氧堆肥实验,设置相同堆肥条件不添加DCD作为空白对照,分析了堆肥过程中各个时期不同处理的p H值、NH+4-N浓度、NO-3-N浓度和水溶性有机碳(WSC)理化参数的变化趋势,并应用定量聚合酶链式反应(real-time PCR)技术对参与反硝化过程的功能基因(nir K、nir S和nos Z)丰度随时间的变化情况进行了研究。结果表明,添加DCD明显地改变了堆肥过程的氮素转化,两组堆肥样品的p H值、NH+4-N浓度、NO-3-N浓度有显著差异(p0.001),但是对WSC的下降过程没有明显影响。DCD对nir K基因的抑制效果最显著,同时nir S和nos Z基因因为理化参数的改变而受到了间接影响。  相似文献   

8.
分离筛选出了4株猪粪堆肥菌种,初步的分类鉴定表明它们均属于芽孢杆菌属.利用这些菌种制成混合菌剂,并进行城市污泥堆肥对比试验,结果显示,接菌处理在各项堆肥指标上明显优于未接菌的空白处理,自制菌与酵素菌在堆肥过程中具有非常相似的发酵能力,均能加快堆肥的升温速度,提高堆肥的最高温度,加快物料含水率的下降.说明自制菌不但可以应用于猪粪的堆肥发酵,在城市污泥高温堆肥方面也有很好的应用潜力.  相似文献   

9.
不同质量比的膨松剂对家庭生物有机垃圾堆肥的影响   总被引:2,自引:0,他引:2  
冯磊  李润东  李延吉 《环境污染与防治》2007,29(10):731-734,776
为解决家庭生物有机垃圾堆肥反应中含水率高、含有机质多等问题,选择秸秆作为膨松剂对家庭生物有机垃圾进行堆肥处理,重点研究添加不同质量比的膨松剂对堆肥反应中堆体温度、含水率、有机质、pH、电导率及堆料质量减少率等评估堆肥质量参数变化的影响.结果表明,添加质量分数为5%、10%及20%的膨松剂的堆肥反应在第2天堆体温度超过55℃,并持续3 d以上,而添加质量分数为30%的膨松剂堆肥由于其含水率较低(约55%)在整个堆肥反应中堆体温度都低于55℃;堆肥1周内,有机质及含水率下降显著;添加20%膨松剂堆肥的堆料质量减少率最为明显,达39.6%;堆肥反应中,pH在5.5~8.5,在腐熟期pH趋于稳定,呈弱碱性;电导率随堆肥进行呈上升趋势,4种不同质量比膨松剂堆肥产品的电导率均位于1.88~1.96 mS/cm,可以安全使用.  相似文献   

10.
接种外源微生物菌剂对香蕉茎秆堆肥的影响   总被引:2,自引:0,他引:2  
为了研究接种外源微生物菌剂对香蕉茎秆堆肥的影响,本实验采用高温好氧堆肥技术,设计了对照(不接菌)、接种白腐菌及棱盖多孔菌3个处理,探讨了不同处理堆肥过程中堆体温度、水分、pH值、电导率、有机碳、C/N、发芽指数及堆肥质量的变化情况。结果表明,接种微生物菌剂处理的温度均高于对照,且高温期持续时间相对较长,以接种白腐菌处理的高温持续时间最长;接种外源微生物菌剂对堆肥含水率、pH、EC、全碳、C/N变化影响不大;与对照相比,接种白腐菌可增加全氮及全钾的含量,有利于提高堆肥产品质量;接种白腐菌处理在36 d(GI〉50%)就达到腐熟,比对照提前8 d腐熟,明显缩短堆肥腐熟时间;而接种棱盖多孔菌处理比对照推迟10 d腐熟,共需54 d不利于香蕉茎秆堆肥的进行。  相似文献   

11.
Composting is one of the post-treatment methods for phytoremediation plants. Due to a high potential of water hyacinth to accumulate pollutants, the physicochemical parameters, microbial activity as well as fates of copper (Cu) and tetracyclines (TCs) were investigated for the different amended water hyacinth biomass harvested from intensive livestock and poultry wastewater, including unamended water hyacinth (W), water hyacinth amended with peat (WP), and water hyacinth amended with pig manure (WPM) during the composting process. Pig manure application accelerated the composting process as evidenced by an increase of temperature, electrical conductivity (EC), NH4-N, as well as functional diversity of microbial communities compared to W and WP treatments. Composting process was slowed down by high Cu, but not by TCs. The addition of peat significantly increased the residual fraction of Cu, while pig manure addition increased available Cu concentration in the final compost. Cu could be effectively transformed into low available (oxidizable) and residual fractions after fermentation. In contrast, less than 0.5% of initial concentrations of TCs were determined at the end of 60-day composting for all treatments in the final composts. The dissipation of TCs was accelerated by the high Cu concentration during composting. Therefore, composting is an effective method for the post-treatment and resource utilization of phytoremediation plants containing Cu and/or TCs.  相似文献   

12.
Fate of nitrogen during composting of chicken litter   总被引:25,自引:0,他引:25  
Chicken litter (a mixture of chicken manure, wood shavings, waste feed, and feathers) was composted in forced-aeration piles to understand the changes and losses of nitrogen (N) during composting. During the composting process, the chemical [different N fractions, organic matter (OM), organic carbon (C), and C:N ratio], physical, and microbial properties of the chicken litter were examined. Cumulative losses and mass balances of N and organic matter were also quantified to determine actual losses during composting. The changes in total N concentration of the chicken litter piles were essentially equal to those of the organic N. The inorganic N concentrations were low, and that organic N was the major nitrogenous constituent. The ammonium (NH(4)(+))-N concentration decreased dramatically during first 35 days of composting. However, the rapid decrease in NH(4)(+)-N during composting did not coincide with a rapid increase in (NO(3)(-)+NO(2)(-))-N concentration. The concentration of (NO(3)(-)+NO(2)(-))-N was very low (<0.5 g kg(-1)) at day 0, and this level remained unchanged during the first 35 days of composting suggesting that N was lost during composting. Losses of N in this composting process were governed mainly by volatilization of ammonia (NH(3)) as the pile temperatures were high and the pH values were above 7. The narrow C:N ratio (<20:1) have also contributed to losses of N in the chicken litter. The OM and total organic C mass decreased with composting time. About 42 kg of the organic C was converted to CO(2). On the other hand, 18 kg was lost during composting. This loss was more than half (59%) of the initial N mass of the piles. Such a finding demonstrates that composting reduced the value of the chicken litter as N fertilizer. However, the composted chicken contained a more humified (stabilized) OM compared with the uncomposted chicken litter, which would enhance its value as a soil conditioner.  相似文献   

13.
We examined chemical, microbiological and biochemical parameters in order to assess their effectiveness as stability and maturity indicators during the composting process of cattle manure. The composting material obtained after 15 d in trenches and at different times during the maturation phase (i.e. 80, 180 and 270 d) were analyzed. We found that the material collected at the end of the active phase was inadequate to be applied to soil as organic amendment due to its high content of NH4+, its high level of phytotoxicity and the low degree of organic matter stability. After a maturation period of 80 d, the stability of the sample increased. This was shown by a reduction in the dissolved organic carbon (DOC) content and NH4+ concentration and also by a reduction in the microbial activity and biomass; however, 180 d of composting were not sufficient to reduce the phytotoxicity to levels consistent for a safe soil application. Among the various parameters studied, the change in DOC with composting time gave a good indication of stability.  相似文献   

14.
微生物生理群在猪粪秸秆高温堆肥碳氮转化中的作用   总被引:9,自引:0,他引:9  
在自制的强制通风静态堆肥反应箱中,猪粪与秸秆以鲜重7∶1的比例进行了堆肥化实验,在堆制的23 d里根据堆温变化分阶段采集堆肥样品,利用MPN法测定了堆料中纤维素分解菌和氮素微生物生理群的数量变化,同时测定了相应的碳、氮含量。结果表明,纤维素分解菌在稳定腐熟阶段较多,对于后期有机碳的降解和腐殖质含量的增大起了很大的作用,在堆制的23 d里,腐殖质增加了2.4%。整个堆制过程中,氨化细菌的数量最大且与氨气释放浓度和铵态氮含量呈显著正相关,都在高温期增加,降温期后减少,氨化细菌的数量在高温期的增加率远高于降温期后的减少率,而铵态氮在高温期的增加率远低于在降温后期的减少率,铵态氮总体上减少了74.1%;亚硝化细菌数量与硝态氮呈正相关;反硝化细菌数量在降温期上升幅度较大,堆制结束时为堆制初期的13倍,且与堆肥中硝态氮含量呈正相关;硝态氮含量增加了87.5%;堆肥后期硝态氮的增加可能与堆肥中存在能进行硝化作用的反硝化细菌有关。固氮菌数量在堆制结束时达堆制初期的2.61倍,主要在降温期增加较多,对堆肥中有机氮的形成起很大作用。  相似文献   

15.
添加小麦秸秆对猪粪高温堆肥腐熟进程的影响   总被引:6,自引:0,他引:6  
选用猪粪与小麦秸秆为堆肥原料进行高温好氧堆肥实验,研究添加小麦秸秆对猪粪高温好氧堆肥过程中堆体温度、pH值、种子发芽指数、碳氮比和养分等理化指标的影响,寻求猪粪高温堆肥时的最佳秸秆配比,旨在为猪粪快速资源化利用提供科学依据。结果表明,猪粪高温堆肥时添加小麦秸秆可以缩短进入高温发酵阶段的时间,减少氮素损失,加快C/N的降低速率,加速有毒有害物质分解。其中猪粪和小麦秸秆6∶4处理各层温度在2~5 d内上升至50℃,并持续37~46 d,在堆肥结束时,有机质和速效氮含量较堆肥初期下降幅度最小,分别为33.90%和23.76%,全氮、全磷、全钾、速效磷和速效钾含量较堆肥初期提高幅度最大,分别为13.34%、20.24%、53.19%、41.53%和16.57%。若以种子发芽指数80%作为堆肥腐熟的评价指标,猪粪和小麦秸秆6∶4配比堆肥的腐熟速度比纯猪粪快18 d,36 d即可腐熟。综合判断,实际应用中,猪粪与小麦秸秆按体积6∶4进行堆肥较为适宜。  相似文献   

16.
Spent litter (a mixture of partially composted pig manure and sawdust) was taken from pig pens employing the pig-on-litter system with and without the addition of a commercial bacterial product (Odor control (OC)-organic fertilizers (OF)). A duplicate series of windrows was set up with spent litter which contained the bacterial product and a further duplicate series was set up with spent litter which did not contain the bacterial product. All four sets had their initial moisture content adjusted to 60% but one of each duplicate pair had its moisture content adjusted to 60% during the entire period of further composting in windrows. The rate of further (windrow) composting was significantly different in the litter which contained no bacterial product and which only had its moisture content adjusted at the beginning of the experiment. Decomposition was incomplete in this set even after day 91. In the three other sets, the rate of decomposition was faster and the spent litter became stabilised by day 56. This result suggests that if the bacterial product has been added during the initial pig-on-litter composting process, moisture adjustment during further (windrow) composting is not important. Conversely, if moisture was adjusted during further composting, the addition of bacterial product during initial pig-on-litter composting would be of no value. Such a finding is of remarkable significance in the further composting of spent litter since this indicates that the process could be run on a much more economical basis.  相似文献   

17.
Aguilar L  Thibodeaux LJ 《Chemosphere》2005,58(10):1309-1318
Temporary water reservoirs built upon peat soil may exhibit water quality impairment from elevated dissolved organic carbon (DOC). Microbiological decay of the organic carbon in the bed with subsequent release produces "tea" colored water which may require treatment prior to use. This paper describes laboratory experiments designed to obtain data on the release process of DOC from soils containing 0.65%, 10% and 19% carbon. Parallel experiments with and without sodium azide treatment clearly distinguished the initial release of a porewater residual fraction and the microbial produced fraction. A one to two day quick-release DOC fraction, which ranges from 28% to 50%, first emerged from the bed, Step-1. This was followed by a constant rate of DOC production over four weeks, Step-2. The Step-2 average production rates were 3.4, 12, and 31 mg DOC/kg(dry)/day for the respective soils and increased as soil carbon content increased. The inorganic carbon (IC) behaved oppositely; its rate of production decreased with increasing soil carbon. A consistent and simple rate equation described the Step-2 DOC production process. This and other evidence obtained provided the basis for developing a mathematical model that couples both steps of the bed-to-water DOC release chemodynamics. The model is presented in a companion paper (Part-2).  相似文献   

18.
选取通气量、含水率、温度、底物浓度等作为堆肥控制因子,在堆肥生物反应动力学的基础上,根据堆肥反应过程的物料平衡和能量平衡,以及微生物比生长速度与含水率、堆肥温度的依存关系,结合翻转式堆肥反应装置操作运行条件,对厨房垃圾好氧堆肥过程中堆温、含水率、有机物、微生物量及氧气消耗量等变化进行计算机模拟计算,并将模拟结果与堆肥实验结果进行对比。结果证明,除了由于反应装置保温不理想引起堆温和含水率二者有偏差外,总体模拟计算结果与实际堆肥结果基本吻合。另外还开展了利用所开发的模型进行堆肥通气优化的应用研究。模型计算结果表明当出口氧气控制在10%~18%时,采用间歇供氧,不仅能提高堆肥效率,而且可以使供氧时间减少40%以上。经过堆肥实验验证模拟结果是正确的。由此可见,利用模型模拟堆肥过程,快速优化堆肥方案是可行与有效的。  相似文献   

19.
This study examined physicochemical parameters to assess their effectiveness as stability and maturity indicators during the process of composting pig manure and fungus residue at different ratios. The results showed that composting mixtures with all ratios of pig manure to fungus residue maintained a temperature exceeding 50 °C for more than 10 days during composting and met the requirement for pathogen destruction. The treatment containing mainly pig manure showed higher nitrogen loss and a shorter thermophilic phase and maturity time than the treatment containing mainly fungus residue. The germination index (GI) values indicated that compost maturity was achieved in the final compost with initial ratios of pig manure to fungus residue of 9:1–7:3 (GIs of 101.4%, 91.2%, and 81.3%); the ratio of 6:4 did not reach compost maturity (GI of 63.8%) and had an inhibitory effect on seed germination. The results of this study suggest that a ratio of pig manure to fungus residue of approximately 8:2 can be considered suitable for the efficient and quality composting of pig manure and fungus residue.

Implications: Co-composting of pig manure and edible fungi residue with appropriate proportion can effectively reduce the risk of environmental pollution caused by agricultural wastes, as well as achieve a safer and high-quality organic fertilizer, which can be used to improve physical and chemical properties of the soil, increase crop yields, and promote agricultural sustainable development. Therefore, technique of co-composting of pig manure and edible fungi residue has a wide prospect of application in practical production all over the world.  相似文献   


20.
Cattle manure is produced in large quantities in industrial breeding facilities and the storage and/or spreading of this waste on land may cause contamination of the atmosphere, soil and water. The aim of the present study was to evaluate the effectiveness of the active phases of composting, vermicomposting, and also a combination of composting and vermicomposting for reducing the polluting potential and for stabilizing cattle manure in the short-term. For this, the degree of decomposition as well as the microbial activity and microbial composition of the resulting products after the active phase of composting and vermicomposting were analysed. None of the treatments significantly reduced the dissolved organic carbon and dissolved organic nitrogen contents relative to the control, and therefore more time may be required for stabilization. Nevertheless, the lowest values of microbial biomass and activity corresponded to the earthworm-worked substrates, in which fungal growth was also promoted; the combined treatment (composting + vermicomposting) was the most effective in terms of stabilizing the cattle manure. Moreover, earthworms promoted the retention of nitrogen and gradual release of P, as well as a reduction in electrical conductivity, thereby producing improved substrates for agricultural use.  相似文献   

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