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571.
Many Chinese biogas plants run in the lower range of mesophilic conditions. This study evaluated the performance of a completely stirred anaerobic reactor treating pig manure at different temperatures (20, 28 and 38 °C). The start-up phase of the reactor at 20 °C was very long and extremely poor performance was observed with increasing organic loading rate (OLR). At an OLR of 4.3 g ODM L?1 d?1, methane production at 28 °C was comparable (3% less) with that at 38 °C, but the risk of acidification was high at 28 °C. At low OLR (1.3 g ODM L?1 d?1), the biogas process appeared stable at 28 °C and gave same methane yields as compared to the reactor operating at 38 °C. The estimated sludge yield at 28 °C was 0.065 g VSS g?1 CODremoved, which was higher than that at 38 °C (0.016 g VSS g?1 CODremoved).  相似文献   
572.
通过室内培养试验和实时荧光定量PCR技术,研究了田间施用生物炭和有机肥对菜地土壤氧化亚氮(N_2O)排放、氨单加氧酶(amo A)和亚硝酸盐还原酶(nir S、nir K)、氧化亚氮还原酶(nos Z)基因丰度的影响,并探讨功能基因丰度对N_2O排放的影响.试验设置5个处理:CK(对照)、N(尿素)、N+BC(尿素和生物炭)、N+M(尿素和有机肥)和N+BC+M(尿素、生物炭和有机肥).结果表明,与CK处理相比,各施肥处理均降低了土壤氨氧化细菌(AOB)和氨氧化古菌(AOA)丰度,增加了nir K、nir S和nos Z基因丰度,并提高了培养期间N_2O累积排放量.与N处理相比,N+BC处理的土壤p H值提高了11.1%,并增加了AOB、AOA、nir S、nir K和nos Z基因丰度,增幅分别为105.8%、57.3%、22.0%、176.2%和204.9%,同时显著降低了培养期间N_2O累积排放量,降幅为58.1%;N+M处理增加了nir K和nir S基因丰度,增幅分别为58.8%和7.1%,对N_2O排放的影响不显著;N+BC+M处理增加了AOB、nir K、nir S和nos Z基因丰度,增幅分别为30.7%、68.7%、6.5%和84.5%,降低了N_2O累积排放量,降幅为14.4%.生物炭通过增加amo A、nir S和nir K基因丰度间接增加N_2O排放,同时通过增加nos Z基因丰度促进N_2O还原,综合效应表现为降低了菜地土壤N_2O排放.因此,通过施用生物炭改善土壤性质,增加功能基因丰度,降低土壤N_2O排放,是一种较好的N_2O减排措施.施用有机肥可以增加反硝化作用功能基因丰度,但对N_2O减排效果不显著.  相似文献   
573.
ABSTRACT: A two-year study was conducted to assess the effect of hog manure on the losses of nitrogen and phosphorus in runoff and drainage from grain-corn (Zea mays L.) plots, and the importance of spring versus annual loads. Treatments consisted of mineral N-P-K fertilizer applied at rates of 152 kg N ha-1, 35 kg P ha-1, and 86 kg K ha-1; and hog (Sus scrofa domestica L.) manure applied preplant or post-emergence (six-to-eight leaf stage), at 152 kg N ha-1, 39 kg P ha-1, and 112 kg K ha-1. The plots were rototilled (7 cm depth) in spring to incorporate fertilizer and preplant hog manure, and fall chisel-plowed (15 cm depth) to incorporate chopped corn residues. They were arranged in a completely randomized plot design. Flow volumes and nutrient levels in runoff and drainage waters were monitored year round but occurred mainly during the snowmelt (March 25-April 9), and post.snowmelt (April 10-May 13) periods. Of the total amount of water lost during snowmelt, 90 percent was in runoff, while 92 percent occurred as drainage in the post-snowmelt period. Sixty-five percent of the total annual volume of water lost was lost during these two periods as runoff and drainage. Treatments did not affect the annual snowmelt or post-snowmelt N and P loads. Total annual loads averaged 8.0 kg TKN ha-1, 1.8 kg NH4-N ha-1, 43 kg NO3-N ha-1, 0.4 kg TP ha-1, and 0.15 kg PO4-P ha-1. Spring (snowmelt and ost-snowmelt) runoff and drainage loads averaged 2.9 kg TKN ha-1, 1.2 kg NH4-N ha-1, 18 kg NO3-N ha-1, 0.25 kg TP ha-1, and 0.04 kg PO4-P ha-1, which were 40 percent to 70 percent of the yearly nutrient loads. Therefore, the hog manure management systems examined were of no greater threat to the environment than mineral fertilizers. However, spring N and P losses do represent an important part of the annual nutrient loss budget, even with conservation practices.  相似文献   
574.
ABSTRACT: Agricultural practices such as cattle grazing and animal manure application can contribute to relatively high runoff concentrations of fecal coliform (FC) and fecal streptococcus (FS). Available information, however, is inconsistent with respect to the effects of such practices as well as to measures that can discriminate among candidate sources of FC and FS. The objective of this study was to assess the effects of grazing, time of year, and runoff amounts on FC and FS concentrations and to evaluate whether FCIFS concentration ratios are consistent with earlier values reported as characteristic of animal sources. Runoff from four Northwest Arkansas fields was sampled and analyzed for fecal coliform (FC) and fecal streptococcus (FS) for nearly three years (1991–1994). Each field was grazed and fertilized, with two fields receiving inorganic fertilizer and two receiving animal manure. Runoff amount had no effect on runoff concentrations of FC or FS. There were no consistent relationships between the presence of cattle and FC and FS runoff concentrations. Both FC and FS concentrations were affected by the season during which the runoff occurred. Higher concentrations were observed during warmer months. Runoff FC concentrations exceeded the primary contact standard of 200 cfu/100 mL during at least 89 percent of all runoff events and the secondary contact standard of 1000 cfu/100 mL during at least 70 percent of the events. Ratios of FC to FS concentrations varied widely (from near zero to more than 100), confirming earlier findings that FC/FS ratios are not a reliable indicator of the source of FC and FS.  相似文献   
575.
抗性基因(Antibiotic Resistance Genes,ARGs)是一种新兴污染物,持续累积会引发环境健康风险,也可通过水平转移诱导耐药细菌产生,从而危害人类健康与国家生物安全.当前关于ARGs的研究多集中于水、土壤、大气等环境介质,固体废弃物领域ARGs研究尚局限于其丰度变化与影响因素方面,对抗生素-ARGs剂量-效应关系、导致ARGs丰度变化的微生物响应机制仍有待深入研究.基于此,开展了不同浓度水平环丙沙星(Ciprofloxacin,CIP)胁迫下猪粪堆肥试验,环丙沙星添加量分别为25 mg/kg(A25)、50 mg/kg(A50)、100 mg/kg(A100),同时设置空白对照0 mg/kg(CK).采用分子生物学手段、网络分析、统计学分析等方法,解析了不同浓度环丙沙星胁迫猪粪好氧堆肥过程中喹诺酮类ARGs丰度变化的微生物响应关系,并重点探讨了潜在宿主菌中致病菌的分布及其与ARGs的相关性.结果表明:①经堆肥处理,CK、A25和A100堆体中喹诺酮类ARGs总丰度均受到不同程度削减,A50堆体中ARGs总丰度未被削减(升高2.73倍).而高温期除CK外,3个处理组中ARGs丰度均显著降低(P < 0.05),表明堆肥高温期或是削减ARGs的关键阶段.②狭义梭菌属(Clostridium_sensu_stricto_1)、水微菌属(Aquamicrobium)、乳杆菌属(Lactobacillus)及交替赤杆菌属(Altererythrobacter)既是堆肥环境中优势菌属,也是喹诺酮类ARGs潜在宿主微生物,主要分布在厚壁菌门(Firmicutes)和变形菌门(Proteobacteria).③丰度较高的致病菌Clostridium_sensu_stricto_1和链球菌(Streptococcus)是喹诺酮类ARGs的潜在宿主菌,且至堆肥腐熟期,仍有部分致病菌均未被完全去除,可见猪粪堆肥过程中存在ARGs向致病菌转移的环境健康风险.研究显示,加强高温期干预调控,是有效阻控ARGs环境污染行为的关键节点,研究可为固废资源化过程中ARGs环境健康风险防控提供参考.   相似文献   
576.
中国农田畜禽粪尿氮负荷量及其还田潜力   总被引:13,自引:0,他引:13  
刘晓永  王秀斌  李书田 《环境科学》2018,39(12):5723-5739
为准确掌握中国各省区畜禽粪尿及氮负荷量,以及还田利用潜力,本研究基于统计数据和已有资料,利用猪粪当量(N)估算了1978年以来中国畜禽粪尿量的变化规律,以及各类畜禽粪尿的构成比例,分析和评价了2016各省份畜禽粪尿、纯氮负荷量的空间分布和污染风险,并估算了各省份畜禽粪尿的还田潜力.结果表明,中国畜禽粪尿猪粪当量(N)及其N养分量总体上呈"快速增加(1978~2005年)-保持稳定(2006~2016年)"的变化态势,到2016年,分别达到366 822.01×10~4t和2 024.10×10~4t,均增长了105.78%,94.03%~98.34%的粪尿量来源于家禽、羊、猪和牛.畜禽粪尿猪粪当量(N)及其N养分量最大的区域是华北地区,其中河南省为最,分别占全国的22.25%和8.81%.其次是四川,占8.14%.按耕地、作物播种面积和农用地面积分别计算单位面积上的畜禽粪尿猪粪当量(N)及其N养分量,并进行r值分级和环境风险评价.如果承载场所为耕地,负荷量较大的是西南和东南地区,污染风险较严重的是华北地区,为Ⅳ级;若按农作物种植面积,西北和西南地区负荷量较大,西北和华北地区为Ⅲ级有污染风险;若按农用地计算,华北和东南地区负荷量较大,华北地区Ⅲ级有污染风险,湖南负荷量最大,北京、山东和河南为Ⅳ级较严重污染风险.全国畜禽粪尿猪粪当量(N)及其N养分还田量分别为113 480.75×10~4t和626.15×10~4t,按单位农用地面积分别相当于3.07 t·hm~(-2)和16.92 kg·hm~(-2),华北地区最大,为8.27t·hm~(-2)和45.62 kg·hm~(-2).若按50%的粪尿N养分环境容量(85 kg·hm~(-2))计算,全国可增加粪尿N养分还田量为2 520.21×10~4t,粮食主产区黑龙江还田潜力最大,其次是四川.  相似文献   
577.
鸡粪中高温厌氧甲烷发酵产气潜能与动力学特性   总被引:1,自引:0,他引:1  
采用富含氮素的鸡粪为原料,包括原料鸡粪、鸡粪固相部分和鸡粪液相部分,选取以鸡粪为原料连续稳定运行超过90d的中高温厌氧反应器新鲜出料为接种污泥,在中温(35℃)和高温(55℃)条件下开展动力学和产甲烷潜能试验.采用Gompertz模型、一级动力学模型和两阶段模型对鸡粪中高温累积产甲烷量进行拟合.结果表明,鸡粪中高温甲烷发酵均呈现明显的快速产气期和慢速产气期两阶段特征,快速产气期的动力学常数K1分别为0.4174和0.2104d-1,快速产气分别在4.5和6.5d结束,快速产气量占到总产气量的69%和58%.原料鸡粪和液相部分的中温发酵动力学常数(K1)分别为0.4177和0.2330d-1,均高于高温的0.1721,0.2214d-1,发酵产气速率较快.鸡粪固相部分中温发酵的动力学常数为0.1960d-1,低于液相中温发酵的0.2330d-1和固相高温的0.2310d-1,中温条件下,水解过程是限制鸡粪甲烷发酵速率的主要因素之一.鸡粪固体和鸡粪液体高温发酵的动力学常数K分别为0.2310,0.22214d-1,鸡粪固体发酵产甲烷的速率快于液相部分,水解过程不是限制鸡粪高温发酵产甲烷速率的最主要因素.产甲烷潜能试验表明鸡粪在中温和高温下产甲烷潜能分别为212,177mL/gTS.因此,仅从发酵效率的角度考虑,鸡粪中温发酵比高温发酵的产甲烷潜能更高,产甲烷速率更快.  相似文献   
578.
After describing an innovative technology, the close-coupled gasification and cyclonic combustor, this article explores the policy issues that inhibit a superior sustainable solution fromflourishing. Discussion of technology includes defining biomass,explaining what biomass to energy means, what the advantages of biomass to energy are, and why gasification is a superior biomassto energy technology. Specifically the environmental benefits ofalternatives to landspreading of traditional manure management arediscussed, as well as the advantages of gasification versus traditional combustion techniques for high nitrogen fuels. The policy environment is explored, particularly regarding sustainability, manure management, and renewable energy. Artificial, non-sustainable barriers to renewable energy, and the impact of wide jurisdictional variability are discussed. North Carolina is identified as a unique jurisdiction to monitor because of its high volume of livestock manure, and laggard position in renewable energy advocacy. The authors contend that these two positions are unsustainable, and that pressures can beexpected to force the state to modify its renewable energy policies or risk losing market share in livestock production tomore pro-sustainable policy oriented states.  相似文献   
579.
应用液态模锻工艺生产药简及弹体盂坯,具有简化工序、生产率高、提高材料利用率及降低能耗等优点,此文从消除铸件气孔和疏松缺陷,细化晶粒等方面简要地讨论了液态模锻黄铜盂坯的性能,并概略地分析了液态模锻生产黄铜盂坯的工艺和模具问题。  相似文献   
580.
汽车后桥壳主要由冲压—焊接和铸造这两种工艺方法生产而成.此文讨论了一种新型的汽车后桥壳生产工艺,轴向加压的液压胀形法,并讨论了它的工艺制定及模具设计的一些基本方法,对汽车后轿壳的液压胀形工艺的进一步完善和发展提供了一定的基础.最后,还推测了液压胀形这种新型的工艺方法和发展方向.  相似文献   
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