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51.
规模化养殖畜禽粪主要有害成分测定分析研究   总被引:148,自引:3,他引:148  
随着我国规模化养殖业的快速发展,畜禽粪中重金属、兽药残留、盐分及有害菌等有害污染物的增加,构成影响农田土壤健康功能的限制因素,甚至带来生态环境风险。对我国7个省、市、自治区的典型规模化养殖畜禽粪的主要化学组成进行了测定。结果表明,规模化养殖畜禽粪中富含有机质、氮、磷、钾及钙、镁、铁、钠、锰、钴等矿质元素;砷、铜、锌、铬等重金属及盐分含量较高,55个猪粪、鸡粪样中,Cu、Zn、Cr、As含量变幅分别为10.7~1591mg/kg、71.3~8710.mg/kg、0~688.mg/kg、0.01~65.4.mg/kg。同时多有四环素类抗生素残留,32个猪粪样中,土霉素、四环素、金霉素平均含量分别为9.09.mg/kg、5.22.mg/kg、3.57.mg/kg;23个鸡粪样中,土霉素、四环素、金霉素平均含量分别为5.97.mg/kg2、.63.mg/kg1、.39.mg/kg。因此,规模化养殖畜禽粪对农田施用后存在潜在危害性,规模化养殖畜禽粪必须进行无害化处理,才能资源化利用。  相似文献   
52.
微生态调节剂CHM-2对禽畜粪便高温堆肥的影响   总被引:1,自引:2,他引:1  
利用自行研制的微生态调节剂CHM-2对鸡粪、猪粪、牛粪等禽畜粪便进行高温好氧堆肥化处理,探讨该制剂对堆肥过程温度和种子发芽指数的影响。结果表明:应用该制剂在猪粪、鸡粪、牛粪堆肥化处理中,最高温度分别达到61.6℃、65℃、56.5℃,且持续时间达到无害化的要求;在种子发芽指数试验中,猪粪、鸡粪、牛粪堆肥到达GI>50%时间分别为15 d、15 d、10 d,均较EM对照组和空白组提早。  相似文献   
53.
UASB的启动及其对畜禽废水处理的试验研究   总被引:1,自引:0,他引:1  
利用UASB反应器处理畜禽废水的试验运行。结果表明,用畜禽废水直接启动UASB反应器是切实可行的,絮状污泥接种后经过54d的驯化,有机负荷由0.8kgCOD·(m^3·d)^-1提升到5kg COD·(m^3·d)^-1,进料COD浓度由800mg·L^-1提高到4000mg·L^-1,去除率基本稳定在85%以上;用UASB反应器处理畜禽废水也是切实可行的,畜禽废水经过UASB反应器处理,COD的去除率达到85%以上,同时对TN和TP也有一定的去除,且反应器较稳定,具有较强的抗冲击负荷能力。  相似文献   
54.
以牛粪、猪粪和玉米秸秆为堆肥原料,添加不同调理剂,在自制的强制通风静态垛堆肥反应器中进行堆肥试验,研究不同处理的微生物变化规律。各处理在堆肥过程中的微生物总数呈波浪型的变化,其中细菌的数量变化类似于微生物总数的变化;真菌的数量变化呈现一条类似于"W"型曲线;放线菌一直呈下降趋势。牛粪和猪粪处理分别添加果园粘土和炉渣对堆肥过程中的微生物影响大,添加果园粘土能够增加微生物总数。堆肥处理中细菌是优势种群,Bacillus sp.和Aspergillus sp.是优势种。家畜粪便的粪大肠菌值在堆肥末期第39天以后达到GB规定的标准。  相似文献   
55.
基于1978—2016年畜禽产品年度产量数据,采用HP滤波技术和非线性MS-AR模型,分析中国畜牧业生产波动的特征,从畜牧业生产区制转换的视角剖析畜牧业生产波动的具体路径,探讨影响畜牧业生产波动和路径转换的原因。结果表明:从生产波动变化趋势上看,猪肉生产增长高峰期出现最早,其次是牛肉、羊肉、禽肉和禽蛋生产,牛奶生产增长高峰期出现时间最晚;从生产波动比较上看,猪肉生产波动幅度最小,其他畜牧产业生产波动幅度相对较大,各畜牧产业生产波动趋势存在差异,但近年来总体趋于收敛。通过模型识别将畜牧业生产划分为低速、中速和快速增长3个区制,低速和中速增长区制下各畜禽业产品产量平均增长率在3%和5%左右,而快速增长区制下平均增长率在10%以上;猪肉生产倾向于保持中速增长,牛肉、羊肉和牛奶生产容易出现低中速增长往复徘徊的现象,禽肉和禽蛋生产在各区制下均较为稳定且区制变迁较为平稳;改革开放以来,除牛奶产业以外,其他畜牧产业生产基本在低速或中速增长区制时间最长。基于此,提出针对不同畜禽产业在不同发展阶段相机制定不同调控政策,推动畜禽产业规模化养殖和产业化经营水平,提高畜禽产业抗冲击能力等建议。  相似文献   
56.
滇池流域规模化畜禽养殖污染控制规划研究   总被引:3,自引:0,他引:3  
20世纪90年代以来,滇池流域畜禽养殖规模及生产集约化程度不断提高,由此引发的环境污染问题也日益突出。根据《全国第一次污染源普查》调查结果,首次全面掌握流域范围内规模化畜禽养殖污染产生及排放情况。在深入分析规模化畜禽养殖业污染特征基础上,从污染控制政策、技术管理措施、宣传引导等方面探讨污染控制规划对滇池流域环境保护的重要意义。  相似文献   
57.
利用福建统计年鉴数据对福建省农业废弃物产生量进行估算.结果显示:1990~2008年,福建省秸秆资源总量呈下降的趋势,产生量为805.09~1 077.41万t,其中粮食作物(谷类)秸秆产量下降幅度最大,稻秸产量下降了30.42%,麦秸下降了95%,经济作物(除甘蔗外)的秸秆产量呈上升趋势,从1990年到2005年上升...  相似文献   
58.
The present study was conducted on the Van Gujjar tribe inhabiting a sub-Himalayan tract in the North Western Himalayas of Uttarakhand State,India.The Van Gujjars have been practicing transmigration over hundreds of years.They migrate each year with their households and livestock between summer and winter pastures.A few years ago with the announcement of the establishment of the Rajaji National Park,the tribe has been forced out of the forest area and rehabilitated outside the park,which has affected their lifestyle.The newly established rehabilitation colony in the Gandikhata area of Haridwar District of Uttarakhand State was taken as a case study.The aims of the present study were to understand and evaluate the socio-economic status of the Van Gujjars in their newly established rehabilitation colony,the utilization pattern of forest resources by the tribe and their relative preference for selective trees for various uses.A total of 176 households were interviewed (giving equal weight to all economic classes and family every size) by using pre-structured questionnaires.The education level was very low (12.9%) and the average income per household was recorded as Rs.36000 (approximately $ 803) per year.The major source of income was dairy production (80.6%) followed by labor employment (13.9%),NTFPs (4.2%) and agricultural production (1.4%).More than 90% of fuel wood and fodder is extracted from the forest.The average fuel wood and fodder consumptions per household per day were recorded as 25.86 and 21.58 kg,respectively.A total of 35 species of cultivated plants and 89 species of wild plants were found to be utilized as food sources.Selectively 25 wild tree species are well known as being used by the Van Gujjars as fodder,fuel wood,agricultural implements,household articles,dye,medicine,fiber and other products.According to their utility value,the most preferred and useful tree species is Ougeinia oojeinensis,followed by Terminalia alata,Bombax ceiba,Shorea robusta and Dalbergia sissoo.  相似文献   
59.
With the intensification of livestock breeding, the air quality problem of livestock farms caused by high density breeding is becoming more and more serious. Animal husbandry has become one of the important sources of air pollutants in China. Air emitted from most intensive livestock houses contains a large amount of pollutants, including ammonia, sulfides, particulate matters (PM), volatile organic compounds (VOCs), which not only poses a big threat to animals and workers in livestock farms, but also spreads to the surrounding environment resulting in air pollution. Scientific and applicable air pollutants measuring methods are the basis of monitoring and controlling air pollution in livestock and poultry farms. In this article, the detection methods of livestock farming related hazardous gases (e.g., NH3, H2S), greenhouse gases, particulate matters and odor were summarized. The detection methods of hazardous gases in livestock houses mainly include chemical analysis, semiconductor gas sensor detection, spectroscopic methodology and mass spectrometry. The wet-chemical method is cheap and can detect gases sensitively and accurately, while it cannot detect gases in real time, and the process is time-consuming and labor-intensive. The gas tube is cheap and easy to operate, but the deviation is great. Electrochemical sensor is of high sensitivity, moderate cost and can be used to detect gas concentration continuously, however, the devices are easy to age. Spectrum method and mass spectrometry can detect gas quickly and accurately, but it is not suitable for conventional air detection of productive livestock farming due to its high costs. In this paper, the detection methods of greenhouse gases (e.g., CH4, CO2) generated from animal intestinal fermentation and livestock environment were also summarized. It is hard to conclude an accurate detection of greenhouse gases in animal husbandry, because the concentrations of greenhouse gases in animal husbandry changes all the time (diurnal and seasonal) and are related to other factors including sampling points. No international common testing method and measurement standard are concluded till now, therefore, the research of greenhouse gases detection method and standard in animal husbandry should be carried out as soon as possible. The detection methods of particulate matters (PM) in livestock farms were reviewed from three aspects: physical, chemical and biological characteristics. PM contains complex components in livestock farms, therefore, it is highly needed to improve PM detection technology. Besides, the component analysis and sensory analysis of odorous substances in livestock farms were overviewed. The odor analysis of professional olfactory discernment personnel owns stronger subjectivity and costs higher than gas chromatography- mass spectrometry. While, using gas chromatography-mass spectrometry is unable to determine all gaseous organic compounds with one sample. Combining gas chromatography and dynamic olfactometer can be more efficient for comprehensive analysis of odor samples. In this article, detection methods and techniques of air pollutants in animal husbandry were comprehensively reviewed to provide a reference for the development of air pollutants detection technologies in livestock and poultry breeding in China.  相似文献   
60.
畜禽粪便中铜和锌污染现状及风险分析   总被引:4,自引:0,他引:4  
为研究我国畜禽粪便中重金属Cu和Zn的现状及对土壤的污染风险,对数据库和课题组已有的数据进行整理,分析了我国畜禽粪便中Cu、Zn的现状,建立土壤中畜禽粪便重金属Cu和Zn的风险评估模型,预测施用畜禽粪便后土壤Cu、Zn的污染情况,并推算畜禽粪便Cu、Zn的阈值。研究发现,不同畜禽粪便中Cu、Zn含量差异较大,且Zn的含量均高于Cu含量。猪粪中Cu、Zn含量最高,中位值分别为406.9 mg·kg~(-1)和671.3 mg·kg~(-1),羊粪中Cu、Zn含量最低,中位值分别为28.7 mg·kg~(-1)和101.1 mg·kg~(-1)。施用猪粪的土壤中Cu和Zn的积累速率分别为12 080.0 g·hm~(-2)·a~(-1)和18 928.4 g·hm~(-2)·a~(-1);家禽粪的影响其次,Cu和Zn的积累速率分别为1 396.4 g·hm~(-2)·a~(-1)和7 978.1 g·hm~(-2)·a~(-1);牛粪和羊粪的污染风险较低。根据模型计算的阈值中,粪肥中Cu和Zn的阈值范围分别为80.8~2 256.6 mg·kg~(-1)和1 322.4~20 040.9 mg·kg~(-1);粪肥污染风险与阈值呈负相关,污染风险最高的猪粪,阈值最低,其Cu和Zn的阈值范围分别为80.8~163.2 mg·kg~(-1)和1 322.4~1 972.8 mg·kg~(-1)。  相似文献   
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