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1.
蛋鸡舍冬季CO2浓度控制标准与最小通风量确定   总被引:3,自引:2,他引:1  
中国现行的蛋鸡舍内CO_2浓度控制的农业行业标准为1 500 mg/m~3,主要适用于传统的刮板式清粪鸡舍。目前新建、改建鸡舍都采用传送带清粪方式,鸡舍内的相对湿度和氨气等有害气体浓度均明显减少,其冬季最小通风量和舍内CO_2浓度参数标准均有待重新研究。该文通过总结分析国内外相关学者对不同清粪方式蛋鸡舍内NH_3、CO_2浓度的测试数据,提出传送带清粪蛋鸡舍内CO_2浓度取值建议,并根据CO_2浓度平衡原理,提出该类蛋鸡舍冬季最小通风量的取值建议。结果表明:传送带清粪蛋鸡舍内CO_2浓度参数控制标准建议可取5 000 mg/m~3;蛋鸡舍冬季连续通风最小通风量为0.40~0.50 m~3/(h·kg)。该研究为中国新建、改建传送带清粪模式蛋鸡舍CO_2浓度参数标准的取值以及调控蛋鸡舍冬季通风与保温矛盾等问题提供了参考依据。  相似文献   

2.
秸秆对厨余垃圾堆肥臭气和渗滤液减排的影响   总被引:14,自引:5,他引:14  
厨余垃圾单独堆肥会产生大量渗滤液及臭气物质,严重影响环境质量。该试验以玉米秸秆作为添加材料,按质量比(湿基)为1∶3添加到厨余垃圾中进行堆肥试验,并以厨余垃圾单独堆肥为对照,对比分析了2个堆肥处理的腐熟度变化、主要臭气物质及渗滤液的排放规律。研究结果表明:从温度、pH值、电导率(EC)、固相C/N和发芽率指数(GI)来看,添加秸秆的堆肥处理其腐熟度明显优于厨余垃圾单独堆肥处理,且添加秸秆后,可有效稀释厨余垃圾堆肥产品的盐分含量;2个堆肥处理的臭气物质浓度分析表明:添加秸秆的厨余堆肥处理NH3的平均排放浓度比厨余垃圾单独堆肥提高了3.3%,而甲硫醚、硫化氢和甲硫醇的平均排放浓度分别降低了62.3%,67.9%和49.6%;厨余垃圾单独堆肥过程中渗滤液的产生量占堆肥原料质量的32.6%(湿基),添加秸秆的处理在堆肥过程中不产生渗滤液。因此,玉米秸秆在提高厨余垃圾堆肥腐熟度、控制渗滤液和臭气物质排放方面具有显著的促进作用。  相似文献   

3.
自动防疫系统对冬季鸡舍空气净化的效果   总被引:2,自引:1,他引:1  
试验选用300型空气电净化自动防疫系统和3DDC-12型粪道等离子体除臭灭菌系统(二者简称为自动防疫系统),测定其对冬季蛋鸡舍空气的净化效果。选取尺寸、样式和饲养密度等完全相同的两栋蛋鸡舍作对比试验,两栋鸡舍通风采用自动控制装置。在试验鸡舍安装自动防疫系统,测定两栋鸡舍舍内有毒有害气体和空气细菌总数的浓度。结果显示,两栋鸡舍在适当通风条件下(使舍内温度维持在(14.2±0.4)℃),对照鸡舍和试验鸡舍的空气细菌总数平均浓度分别为 17.8 cfu/L和11.72 cfu/L(P<0.01),自动防疫系统使之降低34.2%;空气粉尘的平均质量浓度分别为5.52 mg/m3和 3.54 mg/m3(P<0.01),自动防疫系统使之降低35.9%;蛋鸡平均日死亡只数分别为4.68只和2.53只(P<0.01),自动防疫系统使之降低46.0%。试验表明,舍内安装自动防疫系统能显著降低鸡舍空气细菌总数浓度和空气粉尘浓度,降低蛋鸡死亡率。  相似文献   

4.
猪粪堆肥臭气产生与调控的研究   总被引:30,自引:4,他引:30  
通过两次室外中型堆肥试验,研究在相同水分条件(68.8%),不同调理剂、不同碳氮比(C/N)、不同通气方式以及不同添加剂对猪粪堆肥过程中臭气产生与控制的影响。研究表明:猪粪堆肥中,臭气的主要形式是氨气,主要产生在堆肥的升温及高温期。降低堆肥的pH值、增加微生物对NH+4-N的固定等是控制臭气的有效措施;过磷酸钙添加量为1.5%时,可以降低堆肥的pH值,使NH3浓度减小,促进NH+4-N向其它形式的氮转变,且不影响堆肥的腐熟;除臭剂试验组堆肥过程中臭味小,堆肥结束后的物理性状最好,不影响猪粪堆肥进程,可在生产中推广。  相似文献   

5.
碳氮比对鸡粪堆肥腐熟度和臭气排放的影响   总被引:4,自引:2,他引:2  
为确定鸡粪堆肥最优碳氮比(C/N比),该研究以新鲜鸡粪为堆肥原料,添加玉米秸秆调节初始C/N比为14、18和22进行好氧堆肥,研究不同C/N比对鸡粪堆肥腐熟度和臭气排放(NH3和H2S)的影响。结果表明:C/N比为14的处理堆肥产品未腐熟,C/N比为18和22的处理均达到腐熟。C/N比为18的处理NH3累积排放量和总氮(TN)损失率最高;C/N比为18~22时,C/N比越高,NH3累积排放量和TN损失率越低。C/N比为14的处理H2S累积排放量和总硫(TS)损失率最高;C/N比为18和22的两个处理,H2S累积排放量显著降低,且无显著差异。此外,C/N比为18处理的微生物群落多样性在整个堆肥过程中显著高于C/N比为14和22处理。堆肥的理化指标、臭气排放与微生物群落之间的相关性分析表明,高温、高pH和缺氧环境会增加Firmicutes丰度,进而促进NH3和H2S的排放,相反地,低温、低pH和氧气充足的环境更有利于Actinobacteria增殖,有利于减少NH3和H2S的排放。综合考虑堆肥产品腐熟度和臭气减排效果,建议低C/N比鸡粪堆肥的初始C/N比为18~22。当秸秆资源不足时,建议初始C/N比为18;秸秆资源充足时,建议初始C/N比为22。  相似文献   

6.
蛋鸡发声与机械噪声特征提取及分类识别   总被引:3,自引:1,他引:2  
规模化蛋鸡舍中不同机械设备运行所产生的噪声会干扰蛋鸡声音提取。为了分析分类识别蛋鸡发声与机械噪声的可行性,该研究以蛋鸡产蛋发声、鸣唱声和规模化蛋鸡舍中通风系统、饲喂系统、清粪系统、集蛋系统单独运行时的噪声为研究对象,运用LabVIEW软件提取了蛋鸡发声和机械噪声的功率谱密度,以子带功率比为特征向量,在数据挖掘平台Weka上应用J48决策树算法构建声音分类识别器。结果表明,蛋鸡产蛋发声和鸣唱声的最大功率比位于频率范围689~1 378 Hz内,通风系统噪声和饲喂系统噪声的最大功率比位于频率范围0~689 Hz内,清粪系统噪声和集蛋系统噪声的最大功率比位于频率范围1 378~2 756 Hz内;该声音分类识别模型的平均识别率为93.4%,其中蛋鸡鸣唱声和产蛋发声的识别率分别为85.9%和92.5%,机械噪声的分类识别率更高,说明基于子带功率比的声音识别方法具有较好的识别效果,该结果为规模化蛋鸡养殖舍复杂声音环境中检测蛋鸡声音提供了参考。  相似文献   

7.
生物滤池填料及工艺参数去除鸡粪堆肥臭气效果研究   总被引:8,自引:2,他引:6  
为探讨利用生物滤池法去除鸡粪堆肥臭气的可行性,对生物滤池的填料组合、填料层高度、填料初始含水率及停留时间进行了筛选,并考察了生物滤池对挥发性有机物(VOCs)的去除情况.结果表明:生物滤池在处理鸡粪堆肥臭气过程中,以腐熟鸡粪堆肥和树皮组成填料、填料层高度为50 cm、填料初始含水率为50%以及停留时间为90.0 s的处理效果最佳;处理前后臭气中VOCs的分析结果表明,生物滤池对堆肥臭气中VOCs有很好的去除效果,处理后的堆肥臭气中VOCs的种类和浓度较处理前明显减少;比较堆肥臭气中氨和VOCs的总浓度后发现,氨所占的比例高达98.70%,说明用氨浓度来表示容器式鸡粪堆肥的臭气浓度具有可行性.就地利用鸡粪堆肥及树皮组合作为生物滤池填料去除鸡粪堆肥过程中的臭气具有很好的去除效果,可以在工厂化鸡粪堆肥中推广应用.  相似文献   

8.
不同原料好氧发酵产生的臭气物质组分和浓度存在差异。以牛粪和玉米秸秆为原料研究好氧发酵过程挥发性有机物(Volatile Organic Compound,VOCs)的产排特征及主要致臭物质,开展牛粪好氧发酵试验,采用气相色谱-质谱法分析测定发酵升温期、高温期、降温期及腐熟期等不同发酵阶段的VOCs组分和浓度,硼酸溶液吸收,盐酸滴定法测定NH3,便携式检测器(Tion NH3-H2S 300 G)测定H2S,3点比较式臭袋法测定不同发酵阶段臭气浓度。结果表明,牛粪好氧发酵过程中共检出31种VOCs,其中含硫化合物42种,醇类1种,酯类1种,酮类1种,卤代烃4种,苯系物9种,烷烃类8种,烯烃3种;在好氧发酵高温期臭气浓度最高为724(无量纲),VOCs产生与排放主要在高温期。基于恶臭污染排放标准和恶臭物质气味活度值,并结合各物质检出率、GS-MS图谱及相关性分析,发现NH3、H2S、甲硫醚是牛粪好氧发酵过程的主要致臭物质;其次芳香族化合物对臭气浓度贡献也相对较大,应进行重点监测与控制。该研究可为牛粪好氧发酵过程臭气物质减控提供理论支撑。  相似文献   

9.
规模化笼养蛋鸡舍冬季氨气和颗粒物排放特征研究   总被引:2,自引:2,他引:0  
畜禽养殖的氨气(NH3)和颗粒物(particulatematter,PM)排放已成为危害人畜健康,并可能造成环境风险的重大问题。该文选择北京郊区一典型规模化蛋鸡养殖舍,对典型冬季条件下蛋鸡舍的NH3和PM排放进行了连续8d的监测;并根据二氧化碳平衡原理,对NH3及PM的排放通量进行了估算。研究结果表明,蛋鸡舍出风口处NH3平均质量浓度为(4.58±3.29)mg/m3,每只鸡NH3排放通量为(32.2±12.5)mg/d。蛋鸡舍出风口处PM2.5、PM10和总悬浮颗粒物(total suspended particulates, TSP)质量浓度为(0.13±0.06)、(0.81±0.16)、(3.28±1.32)mg/m3,每只鸡PM2.5、PM10和TSP排放通量分别为(0.7±0.4)、(6.3±1.4)、(27.6±12.5)mg/d。氨气以及PM的排放均随着舍内1次/2 d的机械清粪频率呈现2 d的周期变化趋势。除清粪作业、鸡群日间活动等影响外,舍内PM2.5浓度一定程度上受舍外环境本底值影响。舍内PM2.5与PM10的比例在10.4%~20.4%之间。舍内PM2.5颗粒上所含的K+、Mg2+含量均显著高于舍外环境本底PM2.5(P0.05)。同时舍内及舍外PM2.5颗粒上解析出来的阳离子所带的电荷量均高于阴离子。研究结果可为畜禽养殖NH3和PM排放清单的编制提供基础参数;同时对畜禽舍PM的组分研究,可为后续开展二次无机气溶胶形成机理以及颗粒物源解析的研究提供支撑。  相似文献   

10.
为探究锰矿物添加对微好氧堆肥过程腐熟、温室气体和臭气排放的影响,以由厨余垃圾、水稻秸秆、羊粪和尾菜组成的多元混合物料堆肥为研究对象,共设3个处理,采用间歇通风方式,将通风速率为0.14 L/(kg·min)设置为好氧堆肥对照(CK),速率为0.06 L/(kg·min)为微好氧处理(T1),添加二氧化锰(MnO2)的微好氧处理为T2。结果表明:多元废弃物好氧或微好氧堆肥在堆制70 d后均能腐熟,但T2处理腐熟度显著高于T1。微好氧处理T1、T2减少了26.47%~30.29%的NH3和33.19%~38.60%的N2O的排放,总温室效应减少了29.26%~31.38%。臭气的排放集中在前14 d,T1、T2处理的H2S和VOCs的释放量显著增加了320.35%~501.04%和39.82%~53.63%。因此,微好氧堆肥可达到减排目的,但却加剧臭气的排放;MnO2可提高促进堆肥腐熟,降低温室气体和臭气的排放。  相似文献   

11.
Dust levels and control methods in poultry houses   总被引:1,自引:0,他引:1  
This article summarizes information from the papers and posters presented at the international symposium on "Dust Control in Animal Production Facilities", held in Aarhus (Denmark) on 30 May-2 June 1999. Dust concentrations in poultry houses vary from 0.02 to 81.33 mg/m3 for inhalable dust and from 0.01 to 6.5 mg/m3 for respirable dust. Houses with caged laying hens showed the lowest dust concentrations, i.e., less than 2 mg/m3, while the dust concentrations in the other housing systems, e.g., perchery and aviary systems, were often four to five times higher. Other factors affecting the dust concentrations are animal category, animal activity, bedding materials and season. The most important sources of dust seem to be the animals and their excrements. Further studies on the effects of housing systems on dust sources and their compounds are desired for development of a healthier working environment in poultry production facilities. Adjustment of the relative humidity (RH) of the air in a broiler house to 75% will have an effect on inhalable dust, but not on respirable dust. A slight immediate effect on the respirable dust was observed after fogging with pure water or water with rapeseed oil. In an aviary system, a 50 to 65% reduction of the inhalable dust concentration was found after spraying water with 10% of oil and pure water, respectively. To obtain a higher dust reducing efficiency, improvement of techniques for application of droplets onto dust sources will be desired.  相似文献   

12.
蛋鸡的环境舒适度是多种因素相互作用的结果,其状况的好坏难以用数值来描述。该研究以蛋鸡为主体,通过文献资料确定影响蛋鸡舍舒适度的各环境因素的阈值,利用模糊数学理论对各环境因素数据进行融合,得到蛋鸡环境舒适评价结果,采用LabVIEW搭建蛋鸡舍环境舒适度实时监测系统,输出实时的环境舒适度评价结果,利用舒适度时间占比法对饲养周期内的数据进行分析。在实验室畜禽物联网平台的基础上,选取黄山德青源种禽有限公司试验鸡舍和中国农业大学上庄实验站试验鸡舍作为系统环境数据获取节点,对系统进行验证。结果显示:采用层次分析法得到冬季鸡舍环境因素(温度、湿度、风速、二氧化碳浓度和氨气浓度)的权重集W冬={0.4286,0.1511,0.0495,0.2828,0.0879},夏季为W夏={0.4326,0.2418,0.1029,0.0813,0.1414};与采用单一环境因素对舍内环境进行评价相比,系统能较全面的反映出舍内的舒适程度;冬季黄山德青源种禽有限公司试验鸡舍环境舒适度要好于中国农业大学上庄实验站试验鸡舍。该研究为蛋鸡舍内综合环境评价提供了一种新的方法,同时也为畜禽物联网实时监测数据的应用提供了一种新的思路。  相似文献   

13.
生物过滤法去除死猪堆肥排放臭气效果的中试   总被引:3,自引:2,他引:1  
为研究生物过滤法去除死猪堆肥发酵处理过程产生臭气以及挥发性有机物(volatile organic compounds,VOCs)的可行性,开展了死猪和猪粪混合堆肥试验,分析了死猪堆肥过程臭气浓度特性和VOCs组分特征,对生物过滤法去除臭气中VOCs的工艺关键参数-停留时间进行优化试验。死猪堆肥过程中排放VOCs种类达37种,其中主要致臭组分为三甲胺、二甲基硫、二甲基二硫、二甲基三硫;以腐熟猪粪堆肥作为滤料(添加3%活性污泥),在停留时间为30~100 s的条件下,生物过滤法对死猪堆肥排放臭气去除率达90%以上;停留时间60~100 s的条件下对VOCs中主要致臭组分的去除效率达82.2%~100%,生物过滤法去除死猪堆肥过程臭气浓度和VOCs的优化停留时间为60 s。研究结果能为死猪堆肥发酵过程排放臭气的处理和控制技术进一步研发提供科学依据。  相似文献   

14.
菌剂DF-1对啤酒厂污泥与鸡粪堆肥的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探讨功能性菌剂对堆肥化进程的影响,并为加快啤酒厂污泥与鸡粪堆肥化进程和减少臭气提供理论依据,将自制菌剂DF-1接种至啤酒厂污泥与鸡粪的堆体中,以不接种堆体为参照,测定了堆肥化过程中各参数的变化及菌剂DF-1中优势微生物变化情况。结果显示:两个堆体废气中NH3浓度均呈现先上升后下降的变化趋势,H2S浓度则呈现持续下降的变化情形;不接种堆体NH3浓度至堆肥腐熟期仍为0.39 mmol/m3,而接种堆体第10天为1.25 mmol/m3,此后无法检出;不接种堆体中H2S浓度在堆肥第22天仍为0.7 mg/L;而接种菌剂堆体第10天为0.48 mg/L,此后无法检出。接种菌剂DF-1不但能降低堆体水分含量,而且其堆体腐熟期TN含量高于未接种菌剂DF-1的堆体,说明接种菌剂后不但能有效减少臭气,而且有利于堆肥产品后期烘干制粒和优质高效有机肥的产生。菌剂DF-1中优势菌种乳酸乳球菌、热带假丝酵母及绿色木霉在堆肥过程中存在交替演变。  相似文献   

15.
A survey of the production and use of animal manures in England and Wales   总被引:3,自引:0,他引:3  
Abstract. A survey of manure management practice was undertaken in 1996, by postal questionnaire submitted to a stratified sample of egg and broiler producers in England and Wales. Out of a target of 500 laying hen and 500 broiler (chickens produced for meat) production units in the survey sample, 356 (36%) returned questionnaires. The survey provided information on amount and type of manure production, manure storage and land application strategies (timing, techniques and awareness of nutrient content). Within the survey, no attempt was made to differentiate between organic and conventional production systems. About 45% of manure production was estimated to come from layer holdings, 55% from broiler litter. It was estimated that 70% of the national manure production is litter‐based and about 30% are droppings collected without litter. Sawdust/shavings are the most popular bedding material, with an average final depth of 100 mm for broilers and 140 mm on litter‐based layer units. Commonly, storage is available within housing for at least the length of the cropping cycle (6 weeks in broiler production, or 12 months in deep pit laying houses), around 60% of poultry manure is stored for a period following removal from the house, most commonly for 3‐6 months. Overall, autumn was the peak period for manure spreading, with over 40% of laying hen manure and 50% of broiler manure applied at that time. On grassland, spreading was reasonably evenly distributed throughout the year but autumn application was favoured for arable crops, especially before the establishment of cereals and root crops, overall, almost 50% of layer and broiler manure was applied in the autumn. In the survey, up to 10% of manures were claimed to be incorporated within a day of application and about 60% within a week of application, presumably because of concern about odour nuisance. Around 25% of poultry manure was applied by contractors. A high proportion of farmers (c. 40% with layers, c. 60% with broilers) exported manures from their holdings, the proportion removed amounting to almost 90% on these farms. Although evidence elsewhere indicates that farmers make little allowance for manures in planning crop fertilizer inputs, the survey responses suggested that farmers do make an effort to allow for manures but that their confidence in the advice available to them is lacking, or they may have other technical reasons for not taking advantage of the manurial value. Information provided by the survey is of significant importance to policy makers (e.g. for the construction of environmental emissions inventories), researchers, consultants and farmers.  相似文献   

16.
畜禽养殖舍生物土壤滤体除臭装置   总被引:1,自引:0,他引:1  
为研究土壤生物滤体除臭装置对于畜禽养殖场散发出的恶臭气体的去除效果,该文概述了生物土壤滤体除臭装置性能指标、结构和工作原理。确定了关键部件结构参数和运行参数,并通过在气体分布基质层中增加布气网管方式提高臭气滤除效果。采用的活性土壤滤层配方为:草腐土75%,珍珠岩20%,黑炭5%,滤层高度1000mm,滤料表面负荷15.5~22.0m3/(m2.h),滤料湿度控制范围(52±3)%。试验结果表明,主要恶臭物质NH3、CH4和CO2去除率大于95%;CO和氮氧化物(以NO2计)去除率大于85%,与畜禽臭气共同扩散的总挥发性有机物(TVOC)、可吸入颗粒物(PM10)和总悬浮物(TSP)去除率大于95%,系统排出气体的臭气浓度分别为7.5~8.0,符合达标排放要求。  相似文献   

17.
Onion is the one of the most important vegetable crops grown extensively throughout the world; hence, understanding the response of the crop to the form and amount of N provided is of immense importance. In a field experiment, poultry and cattle manure (at 10?t/ha) were compared with four inorganic nitrogen (N) application levels (0, 60, 90 and 120?kg?N/ha), and six combinations of manure and N applications were investigated. Plant growth and total yield (kg/ha) significantly increased, when N application increased from 0 to 120?kg/ha, with or without added poultry manure. Plant height, leaf number and neck thickness were significantly reduced at 0?kg/ha?N plus cattle manure. The bulb ascorbic acid concentration significantly increased with the use of poultry manure (15.94?mg/100?g) and cattle manure (15.94?mg/100?g), compared with 120?kg/ha inorganic N (11.42?mg/100?g). No significant effects were observed on total phenolics and total soluble solids of onion bulbs following the different fertiliser treatments. Cattle manure increased P and K concentrations, whilst poultry manure significantly increased Zn and Fe concentrations in onion bulbs. Onion bulb Ca and Mg concentrations were lower when cattle manure (0.19% and 0.12%) was used than when other organic or inorganic fertilisers were used. Therefore, organic manure increases the concentrations of certain minerals in onions, compared with inorganic N application, without negatively affecting bulb size.  相似文献   

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