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Effect of C/N ratio, aeration rate and moisture content on ammonia and greenhouse gas emission during the composting 总被引:3,自引:0,他引:3
Gaseous emission (N2O, CH4 and NH3) from composting can be an important source of anthropogenic greenhouse gas and air pollution. A laboratory scale orthogonal experiment was conducted to estimate the effects of C/N ratio, aeration rate and initial moisture content on gaseous emission during the composting of pig faeces from Chinese Ganqinfen system. The results showed that about 23.9% to 45.6% of total organic carbon (TOC) was lost in the form of CO2 and 0.8% to 7.5% of TOC emitted as CH4. Most of the nitrogen was lost in the form of NH3, which account for 9.6% to 32.4% of initial nitrogen. N2O was also an important way of nitrogen losses and 1.5% to 7.3% of initial total nitrogen was lost as it. Statistic analysis showed that the aeration rate is the most important factor which could affect the NH3 (p = 0.0189), CH4 (p = 0.0113) and N2O (p = 0.0493) emissions significantly. Higher aeration rates reduce the CH4 emission but increase the NH3 and N2O losses. C/N ratio could affect the NH3 (p = 0.0442) and CH4 (p = 0.0246) emissions significantly, but not the N2O. Lower C/N ratio caused higher NH3 and CH4 emissions. The initial moisture content can not influence the gaseous emission significantly. Most treatments were matured after 37 days, except a trial with high moisture content and a low C/N ratio. 相似文献
744.
Engineered oxide nanoparticles (NPs) are widely applied in insulators, catalyzers, paints, cosmetic products, textiles and semiconductors. Their attachment on cell membrane may lead to cytotoxicity. The effects of Al2O3, Fe2O3, SiO2, TiO2 and ZnO NPs on membrane integrity and fluidity were studied using giant or small unilamellar vesicles in this study. Al2O3 and SiO2 NPs disrupted the oppositely charged membrane, indicating the important role of electrostatic attraction. However, Fe2O3, TiO2 and ZnO NPs did not cause serious membrane disruption as Al2O3 and SiO2 NPs. Membrane fluidity was evaluated by the generalized polarity (GP) values of Laurdan fluorescent emission. SiO2 NPs induce the membrane gelation of both positively and negatively charged membrane. Al2O3 and ZnO NPs induced the gelation of the oppositely charged membrane, but did not cause obvious membrane gelation to the like charged membrane. The phospholipid molecular structural changes after NP exposure were analyzed by Fourier transform infrared (FT-IR) spectroscopy. FT-IR spectra revealed the hydrogen bond formation between NPs and the carbonyl/phosphate groups of phospholipids. Al2O3 and SiO2 NPs showed strongest evidence of hydrogen bonding on their FT-IR spectra. It was consistent with the microscopic observation and fluorescent data that Al2O3 and SiO2 NPs caused more serious membrane disruption and gelation. This study on membrane damage provides further knowledge on the cytotoxicity of nanomaterials and the safety of NP application. 相似文献
745.
原生垃圾密度很小,为提高填埋垃圾堆体密实度、延长填埋场使用寿命,对填埋垃圾进行压实处理很重要。本文通过现场工程试验对影咱填埋垃圾堆体平面压实效果的主要因素进行了系统研究。实验结果表明:为取得最佳的垃圾堆体平面压实效果,最佳垃圾摊铺厚度在0.5m—0.7m之间,最佳机械行程次数为3次,增加碾压次数有利于提高垃圾堆体密实度,垃圾最佳含水率在30%——50%之间。 相似文献
746.
铁屑微电解法预处理硝基氯苯生产废水的研究 总被引:15,自引:0,他引:15
研究了铁屑微电解法预处理某农药厂硝基氯苯生产废水。实验结果表明,铁屑微电解法可有效降低废水CODcr和色度,显著提高废水可生化性。废水经处理,CODcr去除率为73%,色度去除率达90%,BODs/CODcr从0.06提高到0.31。通过实验确定了最佳工艺条件,并探讨了各主要因素对处理效果的影响。另外,本文还分析了废水可生化性提高的原因。 相似文献
747.
近15年科尔沁沙地及其周围地区土地利用变化分析 总被引:29,自引:1,他引:29
利用2期土地利用图形数据对科尔沁沙地及其周围地区的土地利用变化进行分析发现:1985~2000年该地区耕地增加15.34%,林地增加2.48%,草地减少6.28%,水域减少7.72%,城乡工矿居民用地增加1.99%,未利用地减少4.04%;其中草地向耕地转化的面积最大,为4932.00km2,占全区土地利用变化总面积的63.85%,转化的空间分布呈现出向科尔沁沙地边沿及其外围扩展的态势。经相关分析及文献调研得知,人口增长和经济发展是研究地区耕地增加、进而导致系列土地利用变化的根本原因;此外,土地开发和生态环境保护等宏观政策也是影响区域土地利用变的重要人文驱动力。 相似文献
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