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741.
742.
Feed additives can change the microbiological environment of the animal digestive track, nutrient composition of feces, and its gaseous emissions. This 2-yr field study involving commercial laying-hen houses in central Iowa was conducted to assess the effects of feeding diets containing EcoCal and corn-dried distillers grain with solubles (DDGS) on ammonia (NH3), hydrogen sulfide (H2S), and greenhouse gas (CO2, CH4, and N2O) emissions. Three high-rise layer houses (256,600 W-36 hens per house) received standard industry diet (Control), a diet containing 7% EcoCal (EcoCal) or a diet containing 10% DDGS (DDGS). Gaseous emissions were continuously monitored during the period of December 2007 to December 2009, covering the full production cycle. The 24-month test results revealed that mean NH3 emission rates were 0.58 +/- 0.05, 0.82 +/- 0.04, and 0.96 +/- 0.05 g/hen/day for the EcoCal, DDGS, and Control diet, respectively. Namely, compared to the Control diet, the EcoCal and DDGS diets reduced NH3 emission by an average of 39.2% and 14.3%, respectively. The concurrent H2S emission rates were 5.39 +/- 0.46, 1.91 +/- 0.13, and 1.79 +/- 0.16 mg/ hen/day for the EcoCal, DDGS, and Control diet, respectively. CO2 emission rates were similar for the three diets, 87.3 +/- 1.37, 87.4 +/- 1.26, and 89.6 +/- 1.6 g/hen/day for EcoCal, DDGS, and Control, respectively (P = 0.45). The DDGS and EcoCal houses tended to emit less CH4 than the Control house (0.16 and 0.12 vs. 0.20 g/hen/day) during the monitored summer season. The efficacy of NH3 emission reduction by the EcoCal diet decreased with increasing outside temperature, varying from 72.2% in February 2009 to -7.10% in September 2008. Manure of the EcoCal diet contained 68% higher ammonia nitrogen (NH3-N) and 4.7 times higher sulfur content than that of the Control diet. Manure pH values were 8.0, 8.9, and 9.3 for EcoCal, DDGS, and Control diets, respectively. This extensive field study verifies that dietary manipulation provides a viable means to reduce NH3 emissions from modern laying-hen houses.  相似文献   
743.
Factors that diminish the effectiveness of phosphorus inputs from a municipal wastewater treatment facility (Metro) in contributing to phosphorus levels and its availability to support algae growth in a culturally eutrophic urban lake (Onondaga Lake, NY) were characterized and quantified. These factors included the bioavailability and settling characteristics of particulate phosphorus from this effluent, the dominant form (70%) of phosphorus in this input, and the plunging of the discharge to stratified layers in the lake. Supporting studies included: (1) chemical and morphometric characterization of the phosphorus-enriched particles of this effluent, compared to particle populations of the tributaries and lake, with an individual particle analysis technique; (2) conduct of algal bioavailability assays of the particulate phosphorus of the effluent; (3) conduct of multiple size class settling velocity measurements on effluent particles; and (4) determinations of the propensity of the discharge to plunge, and documentation of plunging through three-dimensional monitoring of a tracer adjoining the outfall. All of these diminishing effects were found to be operative for the Metro effluent in Onondaga Lake and will be integrated into a forthcoming phosphorus "total maximum daily load" analysis for the lake, through appropriate representation in a supporting mechanistic water quality model. The particulate phosphorus in the effluent was associated entirely with Fe-rich particles formed in the phosphorus treatment process. These particles did not contribute to concentrations in pelagic portions of the lake, due to local deposition associated with their large size. Moreover, this particulate phosphorus was found to be nearly entirely unavailable to support algae growth. While substantial differences are to be expected for various inputs, the effective loading concept and the approaches adopted here to assess the diminishing factors are broadly applicable.  相似文献   
744.
通过单因子实验考察了无硫膨胀石墨制备过程中氧化剂及插层剂用量、氧化反应及插层反应时间、氧化反应及插层反应温度对无硫膨胀石墨膨胀体积的影响。通过正交实验确定了制备无硫膨胀石墨的最优条件是:石墨(g)∶浓硝酸(mL)∶30%H2O2(mL)∶乙酸酐(mL)=1∶2.25∶0.25∶0.6,在30℃条件下氧化反应60 min,加入插层剂后在60℃条件下插层反应90 min,此条件无硫膨胀石墨的膨胀体积达317 mL/g使用XPS、FT-IR、XRD和SEM对无硫膨胀石墨进行了表征并对其吸油性能和再生性能进行了研究。结果表明,所制备无硫膨胀石墨对原油和柴油的最大吸附量分别为66.3 g/g和62.7 g/g。吸附原油后的无硫膨胀石墨抽滤再生后首次再生率为49.1%,原油的回收率为64.5%。  相似文献   
745.
为了缓解污水处理厂日益严重的污泥处置难题,实现剩余活性污泥的无害化、减量化、稳定化、资源化利用。采用SBR系统对剩余活性污泥进行10 d的驯化,加入4.0 g/L的乙酸钠作为发酵培养基碳源和前体物质,累积聚羟基烷酸酯(polyhydroxyalkanoates,PHA)。30℃好氧发酵10 h后,PHA积累达1 125 mg/L,占污泥浓度(MLSS)的质量分数为35.7%。然后经过离心、烘干、粉碎后模压成型加工成一次性使用的可生物降解材料。使用正交实验进行优化,结果表明:其最佳的物料配比和模压条件为:干污泥57%;稻草纤维20%;聚乙烯醇(PVA)19%;硬脂酸钡2%;氧化钙2%;最佳工艺条件为100℃,加热1.5 h,此时加工出来的产品具有最优的抗压强度和拉伸强度。以本方法制成的可生物降解花盆其所含细菌总数、粪大肠菌群、蛔虫卵死亡率均达到国标所规定的污泥农用生物安全要求;另外,试样中未检出病毒;其重金属含量也达到国标所规定的污泥农用标准;其可生物降解性能达到了可降解材料的要求。因而本研究制备的一次性使用可降解花盆具有较好的开发和应用价值。  相似文献   
746.
Fenton 法降解抗生素磺胺间甲氧嘧啶钠   总被引:3,自引:1,他引:2  
应用Fenton高级氧化技术降解水溶液中抗生素磺胺间甲氧嘧啶钠(SMMS),系统探讨了起始pH、CSMMS、CFe2+、CH2O2和温度等因素对SMMS降解效果的影响。结果表明:CSMMS=4.53 mg/L,pH=4.0,CH2O2=0.49 mmol/L,CFe2+=19.51μmol/L,T=25℃为最佳反应条件。在最佳条件下,87.4%的SMMS可以在120 min内降解。反应动力学研究表明Fenton氧化降解SMMS分为两个阶段,快速反应阶段和慢速反应阶段,并建立了两阶段动力学模型,模型拟合结果较好。研究结果为含有SMMS的污废水处理提供了基础数据和科学参考。  相似文献   
747.
748.
以四氢呋喃和N,N-二甲基甲酰胺为溶剂,配制三元乙丙橡胶(EPDM)纺丝液,通过静电纺丝技术制备了EPDM超细纤维,进而以聚偏氟乙烯(PVDF)微滤膜为基膜制备了EPDM超细纤维复合膜。采用红外光谱(FTIR)和扫描电子显微镜(SEM)对EPDM超细纤维的结构和形态进行了表征。考察了复合膜对苯乙烯废水的截留效果和复合膜通量的变化情况。实验结果表明:EPDM超细纤维具有类似无纺布形式的多孔纤维网状结构,其直径在0.2~2.0μm之间;复合膜在操作压力为0.1MPa的条件下,处理质量浓度为100μg/mL的模拟苯乙烯废水,膜通量约为5.90mL/(cm2.h),苯乙烯去除率可达89.7%。  相似文献   
749.
随着电子信息产业的高速发展和人民生活水平的不断提高,电子废弃物的数量也不断增长,成为21世纪增长最快的固体废弃物。从我国电子废弃物的回收利用现状入手进行分析,提出建设一套专业回收利用体系,形成以城市社区回收点为基础,中转交投中心为纽带,资源循环利用为目的,点面结合、三位一体的电子废弃物回收利用体系,逐步提高回收、集散、循环利用能力,促进行业健康、有序发展。  相似文献   
750.
This paper estimates the true economic income of Peru’s metal mining sector for the period 1992–2006, using a model of green economic income based on Hamilton (2000). The total depletion of natural capital caused by metal mining is calculated by estimating, on the one hand, the depreciation of mining resources (using the Hotelling rent approach) and, on the other, the environmental degradation provoked by metal mining activities. The results show that the total loss of natural capital represents between 31% and 51% of the metal mining GDP and between 2% and 4.9% of Peru’s GDP. On the other hand, correcting the usual GDP measure produced by the traditional National Account System (NAS) for the total loss of natural capital caused by mining activities shows that the GDP traditional measure overestimated by 51–64% the true economic income generated by Peruvian's metal mining sector during the period 1992–2006. The importance of the generation, taxation, and disposition of mining economic rents for Peru’s sustainable development in the future is also discussed.  相似文献   
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