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1.
Municipal solid waste (MSW) is one of the most well-known biomass resources that can be utilized to produce renewable energy. Numerous countries are plagued by the proliferation of waste, particularly organic waste that can be utilized for energy recovery. Palestine suffers from inefficient solid waste management, and only recently have a few projects focused on bioenergy production been implemented. Throughout the years, the city of Tulkarm experiences power outages which cause a challenge to the Palestine Technical University-Kadoorie campus in Tulkarm. Thus, the possibility of energy recovery from the organic portion in Palestine Technical University-Kadoorie was evaluated. The analysis of an economic impact included discussions of a number of economic aspects, including Levelized cost of energy, internal rate of return, present worth, annual worth, and payback period. On the other hand, a carbon dioxide savings analysis and gas emission were evaluated. The outcomes of the energy optimization demonstrated that the suggested system could supply the institution with an average of roughly 7 MWh of electrical energy. According to the economic study, this project offers 0.25 million dollars in present value, 0.144 million dollars in annual value, a 13 percent internal rate of return, a payback period of 6 years, and a levelized cost of energy of 0.11 dollars for each kWh generated. Additionally, the environmental assessment revealed that this system might reduce CO2 emissions by around 8,343,778 tons. For effective waste management, energy recovery, and emission reduction, it is advised to implement anaerobic digestion technology.  相似文献   
2.
Biohythane production via single-stage anaerobic digestion (AD) is an effective way for sustainable energy recovery from lignocellulosic biomass. In this paper, biohythane was produced through the AD process from pineapple peel waste substrate using purely cultured Methanosarcina mazei with the enhancement of palm oil mill effluent (POME) sludge as the inoculum. This study focuses on the effects of the lignocellulosic pre-treatment method, the addition of POME sludge into M. mazei culture medium as inoculum, and various operational conditions (food to microorganisms (F/M) ratios, temperature, pH) on gas production performances. The experimental results indicate that these parameters influenced the efficiency of biohythane production by producing the peak maximum biohythane production rate values (HPRmax) and (MPRmax), H2:CH4 = 1.93:0.67 L/L-d, and biohythane yield (HY) and (MY), H2:CH4 = 1.18:0.55 mL/L-substrate. This study demonstrates that biohythane gas (H2 + CH4 + CO2) production from pineapple waste can be accelerated by M. mazei only with the enhancement of POME sludge through single-stage AD system under mesophilic batch process conditions.  相似文献   
3.
采用特异性移动床生物膜反应器(SMBBR)和厌氧生物滤池(AF)组合工艺处理高氨氮农药废水。考察了HRT、pH和DO等工艺条件对SMBBR-AF-SMBBR组合工艺运行稳定期COD和氨氮去除率的影响。试验结果表明,在进水COD为2 408~7 440 mg/L、ρ(NH_4~+-N)为160.21~433.84 mg/L、TN为208.27~537.65 mg/L、HRT为8d、pH为8.0、DO为4 mg/L的条件下,处理后出水平均COD为342 mg/L,COD去除率达92.3%;ρ(NH_4~+-N)小于4.0mg/L,氨氮平均去除率为89.2%;TN小于50 mg/L,平均TN去除达83.0%。出水各指标均优于原A2O工艺出水。  相似文献   
4.
Aerobic treatment of swine manure was coupled with anaerobic digestion and microalgal cultivation. A 14-day aerobic treatment reduced the total solid content of swine manure by >15%. Ammonia and carbon dioxide were stripped by the air supplied, and this off-gas was further used to aerate the culture of Chlorella vulgaris. The microalgal growth rates in Bristol medium and the wastewater with the off-gas increased from 0.08 to 0.22 g/L/d and from 0.15 to 0.24 g/L/d, respectively. Meanwhile, the aerobically treated swine manure showed a higher methane yield during anaerobic digestion. The experimental results were used to establish a demonstration unit consisting of a 100 L composter, a 200 L anaerobic digester, a 60 L tubular photobioreactor, and a 300 L micro-open raceway pond.  相似文献   
5.
Trichoderma spp. are among the most widely recognized biocontrol fungi used to inhibit pathogens and promote plant growth. These functions are related to primary and secondary metabolites. This study investigated the different metabolites in Trichoderma asperellum TJ01 cultured for 24 and 72?h using liquid chromatography with triple-quadrupole mass spectrometry. Compared to the 24?h culture of T. asperellum TJ01, the 72?h culture with amino acid metabolism tended to decrease while sugar and lipid metabolisms tended to increase. Furthermore, the 72?h culture had a higher proportion of upregulated flavonoids, in combination with a higher proportion of downregulated alkaloids, and equal proportions of upregulated and downregulated polyphenols and hormones. This study also identified a few valuable medicinal substances such as trigonelline and 5-hydroxytryptophan in T. asperellum TJ01 fermentation cultures.  相似文献   
6.
提高畜禽粪便沼气发酵产气量的研究进展   总被引:1,自引:0,他引:1  
随着畜禽养殖规模的不断扩大,合理处理畜禽粪便是目前刻不容缓的问题。目前,沼气发酵是解决畜禽养殖场粪污处理和资源化利用的主要方式之一,且通过提高畜禽粪便沼气发酵产气量可以实现将粪便变废为宝的目的和达到资源利用最大化效果。综述了畜禽粪便沼气发酵产气的内在影响因素和外在影响因素对产气量的影响,为提高畜禽粪便的利用率和沼气发酵产气量提供参考依据。  相似文献   
7.
绿色木霉改性玉米秸秆溢油吸附剂的制备及其性能研究   总被引:3,自引:0,他引:3  
利用绿色木霉对玉米秸秆进行固态发酵,通过单因素改性实验(改性时间、固液比和改性温度)制备溢油吸附剂TCS(Trichoderma viride modified corn stalk),并模拟溢油环境测定TCS的吸油量.研究表明,25℃下,改性6 d、固液比1∶4时,制得的TCS吸油量最大,达到13.84 g.g-1,相对原材料RCS(Raw corn stalk,吸油量为6.58 g.g-1)提高了110.33%.对RCS和TCS进行扫描电子显微镜(SEM)分析显示制得的TCS表面变得更加粗糙;傅里叶红外光谱分析(FT-IR)表明玉米秸秆纤维素组分被部分降解;X射线衍射分析(XRD)得到改性后的材料结晶度降低;纤维素、半纤维素和木质素等组分测定进一步表明生物改性降低了玉米秸秆中纤维素及半纤维素的含量,这些均说明改性后材料吸油量增加的原因.吸附动力学及保油性能测试表明,TCS具有快速的吸油速率,80 r.min-1条件下振荡1 h后即达到吸附平衡;且在吸附饱和后滴淌10 min仍能保持最初吸油量的74.87%,具有良好的保油性能.  相似文献   
8.
张超  陈银广 《环境科学》2013,34(7):2741-2747
发酵液是一种优质的碳源,能够提高生物除磷系统(EBPR)的除磷效果.采用基于碳源代谢的修正ASM2模型,能够较好地模拟发酵液作为EBPR碳源的动力学变化规律.发酵液作为EBPR唯一碳源时,系统中的异养菌不仅不对聚磷菌(PAO)的生长构成竞争关系,反而促进PAO的生长.发酵液作为实际污水的补充碳源时,优化了污水中的碳源组成,创造了有利于聚磷菌生长的环境,使EBPR中聚磷菌达到微生物总量的40%以上,比实际污水作为碳源的EBPR中的PAO含量提高了3.3倍.  相似文献   
9.
畜牧养殖业最大的污染物就是畜禽粪便,在畜禽养殖也实施清洁生产技术十分必要,将粪便在产生的环节上降低污染物的产生和排放,结合具体实例,按照企业清洁生产审核程序要求,对一家生猪养殖场进行清洁生产审核,对生态发酵床技术在规模化养猪场的应用进行深入研究,从技术、环境、经济三个方面阐述这项清洁生产技术的示范作用。  相似文献   
10.
延时曝气对常温低氨氮SBR亚硝化影响及恢复   总被引:4,自引:0,他引:4  
常温条件[(22±1)℃]下,采用SBR反应器,探讨延时曝气对常温低氨氮生活污水亚硝化的影响及寻找一种因延时曝气失稳的亚硝化高效恢复策略.结果表明,延时曝气可为NOB创造一个迅速增殖的有利环境,经23d的延时曝气(延迟时间1h)最终使亚硝化系统失稳;且失稳后仅通过限氧无法实现其恢复,而通过增设1h前置厌氧搅拌并缩短曝气时间控制氨氧化率在50%左右,经过60个周期(20d)实现了亚硝化的恢复.  相似文献   
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