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951.
以牛粪发酵残余物沼渣为原料,设置不同的通风速率进行堆肥,堆体的通风速率分别是0.2,0.5,0.8L/(min·kg OM),分析堆肥20d过程中物理、化学和腐熟变化的特征,探讨不同通风速率对堆肥特性的影响.结果表明,通风速率为0.2,0.5L/(min·kg OM)的堆体维持高温阶段的时间为5d,而通风速率为0.8L/(min·kg OM)堆体维持高温阶段时间为4d;各堆体OM分解率分别是28.2%,32.9%,30.5%;通风速率对终产品pH值、电导率(EC)影响不大,pH值均能满足堆肥最优pH值,EC均未超过4mS/cm;通风速率为0.2L/(min·kg OM)的堆体终产品的NH4+-N含量超过400mg/kg,各堆体终产品NO3--N的含量分别是2545,3146,2735mg/kg;各堆体终产品C/N分别是16.5,14.1,15.6;各堆体终产品GI值分别是92.2%,96.6%,82.7%.通风速率为0.5L/(min·kg OM)堆体E465/E665(E4/E6)最小,其腐殖化程度最高.综合分析,0.5L/(min·kg OM)是沼渣堆肥最为合适的通风速率. 相似文献
952.
As a biomass agricultural waste material, coconut shells were used for the preparation of high-quality modified activated carbon. Chemical modification of the surface of the prepared activated carbon is done by oxidation using H2O2 and HNO3, respectively. The surface area and pore volume of the coconut shells activated carbon are increased by the chemical modification, and followingly the removal of the metals is improved. The structural morphology and composition of the modified activated carbon coconut shells (MACCS) were evaluated by Fourier transform infrared (FTIR) spectra, thermogravimetric analysis–differential thermal analysis (TGA-DTA), scanning electron microscope (SEM), X-ray diffraction (XRD), surface area analysis (SAA), X-ray fluorescence (XRF), and carbon, hydrogen, nitrogen, and sulfur (CHNS) elemental analysis. The prepared MACCS has reasonably good chemical stability. The influence of solution pH, contact time, adsorbent dosage, adsorption temperature, initial metal concentrations, and interfering ions on the adsorption performance of the investigated ions onto the prepared sorbent was examined by a batch method. The selectivity sequence for sorption of Eu3+, Ce3+, Sr2+, and Cs+ ions on MACCS was found to be Eu3+?>?Ce3+?>?Sr2+?>?Cs+. The saturation capacities of MACCS for the studied metal ions were found to be 136.84, 85.55, 69.85, and 60.00?mg?g?1 for Eu3+, Ce3+, Sr2+, and Cs+ ions, respectively. The thermodynamic parameters, ΔH°, ΔS°, and ΔG° were also evaluated. 相似文献
953.
Home composting is a waste prevention measure related to the management of the household's food waste, garden trimmings, and other smaller organic household waste streams. Thus, home composting is an alternative way of exploitation of the “biomass” generated from the households. It is an alternative to centralized composting. Biomass utilization is explicitly stated as a principle of green chemistry. The aim of this paper is presentation of the results of a case study dealing with the life cycle environmental assessment of home composting of food waste in households in Greece. The results of the study indicate that home composting is environmentally preferable over the current organic waste management situation in Greece. 相似文献
954.
Yan SHAO Haobo HOU Guangxing WANG Sha WAN Min ZHOU 《Frontiers of Environmental Science & Engineering》2016,10(1):192-200
Fly ash is a hazardous byproduct of municipal solid wastes incineration (MSWI). An alkali activated blast furnace slag-based cementitious material was used to stabilize/solidify the fly ash at experimental level. The characteristics of the stabilized/solidified fly ash, including metal leachability, mineralogical characteristics and the distributions of metals in matrices, were tested by toxic characteristic leaching procedure (TCLP), X-ray diffraction (XRD) and scanning electron microscopy-energy dispersive spectrometer (SEM-EDS) respectively. Continuous acid extraction was utilized to extract metal ions and characterize their leaching behavior. The stabilization/solidification procedure for MSWI fly ash demonstrates a strong fixing capacity for the metals by the formation of C-S-H phase, hydrated calcium aluminosilicate and ettringite. The stabilized/solidified fly ash shows a dense and homogeneous microstructure. Cr is mainly solidified in hydrated calcium aluminosilicate, C-S-H and ettringite phase through physical encapsulation, precipitation, adsorption or substitution mechanisms, and Pb is mainly solidified in C-S-H phase and absorbed in the Si-O structure. 相似文献
955.
Although Beijing has carried out municipal solid waste (MSW) source separation since 1996, it has largely been ineffective. In 2012, a “Green House” program was established as a new attempt for central sorting. In this study, the authors used material flow analysis (MFA) and cost benefit analysis (CBA) methods to investigate Green House’s environment and economic feasibility. Results showed that the program did have significant environmental benefits on waste reduction, which reduced the amount of waste by 34%. If the Green House program is implemented in a residential community with wet waste ratio of 66%, the proportion of waste reduction can reach 37%. However, the Green House is now running with a monthly loss of 1982 CNY. This is mainly because most of its benefits come from waste reduction (i.e., 5878 CNY per month), which does not turn a monetary benefit, but is instead distributed to the whole of society as positive environmental externalities. Lack of government involvement, small program scale, and technical/managerial deficiency are three main barriers of the Green House. We, thus, make three recommendations: involve government authority and financial support, expand the program scale to separate 91.4 tons of waste every month, and use more professional equipment/technologies. If the Green House program can successfully adopt these suggestions, 33.8 tons of waste can be reduced monthly, and it would be able to flip the loss into a profit worth 35034 CNY.
相似文献
956.
为满足大宗废渣经济性处理的需要,从碱性物质、磷酸盐、碳酸盐类药剂筛选出“物美价廉”稳定剂,考察了CaO、MgO和Ca10(PO4)6(OH)2及其与NaHCO3和Na3PO4的组合对电解锰废渣中的可溶性锰的稳定化效果,并采用矿物组成分析、锰价态分析和形态变化探讨可溶性锰固定机理.结果表明:投加10%MgO锰渣中可溶性锰固定率达到100%,9%CaO+5%NaHCO3和9%CaO+5%Na3PO4的组合实现可溶性锰固定率95%以上.上述3组稳定剂将可溶性Mn2+先转变为沉淀态锰进一步转变为高价态含锰物相.后两组中NaHCO3或Na3PO4的加入促进了Mn2+向Mn3+、Mn4+的转化. 相似文献
957.
京津冀地区钢铁行业高时空分辨率排放清单方法研究 总被引:13,自引:0,他引:13
针对目前京津冀地区钢铁行业大气污染物排放量基数不清,排放清单缺失的现状,以钢铁行业调研、企业在线监测、污染源调查等数据为基础,综合考虑钢铁行业具体工艺设备、环保措施、产能等信息,按照自下而上的方法建立了一套高时空分辨率排放清单.经计算,2012年京津冀地区钢铁企业排放SO2为47.16万t,NOx为37.22万t,烟粉尘为34.15万t,其中烧结和高炉工艺为京津冀钢铁行业污染物的主要来源;从空间分布来看,唐山、邯郸两地区集中了整个京津冀地区一半以上的钢铁企业,其污染物排放量占到了整个区域钢铁企业排放总量的一半以上. 相似文献
958.
设计湿热水解预处理温度(80、120、150和200 ℃)、时间(40、50、60和70 min)、加水量(40%、60%、80%和100%)的三因素四水平正交试验,研究湿热水解预处理对餐厨废弃物液相可浮油脱出量、ρ(CODCr)、糖类、ρ(VFA)(VFA为挥发性脂肪酸)等的影响. 结果表明:餐厨废弃物经湿热水解预处理后可浮油脱出量明显提高. 在150 ℃、加水量40%、处理60 min的湿热水解条件下,可浮油脱出量(67.7 mL/kg)最高,比未经预处理的对照组提高了2.65倍;同时,ρ(还原糖)和ρ(总糖)也达到最高,分别比对照组增加了16.29%和38.92%.随着温度升高和处理时间的延长,ρ(CODCr)不断升高,在200 ℃、加水量40%、处理70 min的湿热水解条件下,ρ(CODCr)最高为109.729 g/L,比对照组提高了1.39倍. 经湿热水解预处理后,ρ(VFA)也呈显著增加,在200 ℃、加水量100%、处理40 min的湿热水解条件下,ρ(VFA)达到最高,比对照组增加了66.26%.预处理后,ρ(乙酸)、ρ(丁酸)升高,ρ(乙醇)降低. 方差、极差综合分析表明,在湿热水解过程中,温度是影响餐厨废弃物液相物质转化的主控因子,其次是加水量和时间. 相似文献
959.
960.
液体吸收法应用于处理工业有机废气涉及到2个关键因素,即吸收剂的选择与吸收液的再生处理. 选择8种水溶性吸收剂——2种氟碳表面活性剂(FSO100和FSN100)、2种非离子表面活性剂〔TW80(吐温80)和SP20(斯盘20)〕、2种阴离子表面活性剂〔脂肪醇聚氧乙烯醚硫酸钠(AES)和脂肪醇聚氧乙烯醚羧酸钠(AEC)〕及2种类表面活性剂〔β-CD(β-环糊精)和SA(乙酸钠), 对模拟甲苯废气进行了动力学吸收试验,研究吸收性能和加热蒸馏法对甲苯回收与吸收剂溶液再生的可行性. 结果表明:吸收剂类型是影响甲苯吸收能力的最主要因素. 2种氟碳表面活性剂吸收液的甲苯吸收能力最强,其次是SP20与AES,而其他4种吸收剂溶液对甲苯的吸收能力很弱. 上述3类吸收剂对甲苯的初始去除率分别为80%~90%、75%左右与60%~70%,甲苯饱和吸收浓度(以w计)分别为0.58~3.45、0.38~1.44与0.14~1.01 mg/g. 除TW80吸收液热稳定性差、不宜采用加热蒸馏方法再生外, 其他吸收剂溶液经5次重复使用,甲苯回收率可达70%~85%,并能保持其原有吸收性能. 甲苯分配系数计算结果表明,FSO100和FSN100分别为0.41、0.62, SP20和AES分别为0.76、0.95, 其他4种吸收剂溶液在1.12~3.54之间;甲苯分配系数与饱和吸收浓度呈负相关、与体积传质系数呈正相关. 因此,2种氟碳表面活性剂吸收液对甲苯的吸收能力强,加热蒸馏法回收甲苯与再生吸收液具有经济性,用于处理甲苯废气具有广泛的应用前景. 相似文献