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1.
木质纤维素降解是中草药渣堆肥的主要难点.在前期小试的基础上,接种纤维素降解菌剂,将1 t新鲜药渣直接进行好氧堆肥.腐熟度指标T值和种子发芽指数(GI)显示,堆肥19 d左右就已经腐熟.堆肥过程中接种组(JZ)和对照组(CK)的纤维素平均降解速率分别为0.73 kg/d和0.64 kg/d,JZ比CK纤维素降解总量提高了13.39%,木质素降解量提高118.18%.第30天时,堆肥的含水率、p H、总养分、重金属等指标都达到有机肥料标准(NY 525-2012).接种菌剂提高了堆肥温度,加速了水分散失,促进了纤维素和木质的转化,有利于堆肥腐熟和提高肥料品质.因此,在中试规模上堆肥中草药渣生产有机肥是可行的.  相似文献   

2.
杏鲍菇是木腐型食用菌,其菇渣可以用于草腐型食用菌(如草菇)的栽培.为探讨杏鲍菇菇渣栽培草菇过程木质纤维素的利用情况及其降解酶活性变化,以杏鲍菇菇渣(SMS)和杏鲍菇菇渣加玉米芯(SMS-C)两个配方,采用二次发酵工艺进行草菇栽培,测定培养料理化性质、木质纤维素含量及其降解酶活性变化,并分析经济效益.结果显示,一次发酵阶段,SMS配方对纤维素、半纤维素和木质素的利用率分别为17.62%、18.78%和6.39%,SMS-C配方分别为23.71%、26.02%和6.81%;二次发酵阶段SMS配方分别为14.17%、11.12%和6.98%,SMS-C配方分别为16.36%、18.91%和4.43%;草菇发菌和出菇过程中,SMS配方分别为13.19%、13.06%和12.63%,SMS-C配方分别为11.37%、11.41%和7.31%.两个配方培养料不同时期的纤维素酶、木聚糖酶和漆酶活性变化趋势大体一致,SMS-C配方纤维素酶活性在发酵和出菇过程中均高于SMS配方,与期间纤维素利用率结果一致;发菌和出菇期,SMS配方木聚糖酶活性高于SMS配方;两个配方均在发菌阶段表现出较高的漆酶活性.SMS和SMS-C配方生物转化率分别为14.08%和11.85%,投入产出比分别为3.71和3.12,均高于同条件下废棉配方投入产出比.本研究表明,利用杏鲍菇菇渣栽培草菇过程中,优先利用纤维素和半纤维素,表现出较高纤维素酶和木聚糖酶活性,这种栽培方法技术可行、经济效益高.(图2表4参35)  相似文献   

3.
产氢细菌是厌氧发酵过程中重要的功能微生物.将分离自纤维素降解产甲烷复合菌系FSC的产氢细菌FSC-15回补至复合菌系,通过监测氢气产量、甲烷产量、脂肪酸浓度及秸秆降解效率,探究产氢细菌对水稻秸秆水解产甲烷代谢及微生物群落结构的影响.结果显示:添加菌株FSC-15使FSC中纤维素、半纤维素和木质素降解率分别提高了17.33%、28.61%和47.21%,对复合菌系FSC中秸秆降解效率有一定促进作用.培养第3天,氢气产量相比复合菌系FSC提高了41.18%,为产甲烷菌提供更充足的底物,使甲烷产量提高1倍.高通量测序结果显示,Ruminococcaceae和Methanobacteriaceae分别是水稻秸秆厌氧发酵产甲烷体系中水解纤维素和产甲烷的主要类群,Methanobacteriaceae是厌氧发酵体系挥发酸含量较高时产甲烷的主要物种,补加产氢细菌FSC-15对厌氧降解纤维素产甲烷菌系中的细菌群落结构无明显影响,但可以改变古菌的物种多样性及丰度.本研究证明向水稻秸秆厌氧发酵体系补加功能微生物能有效提高体系甲烷产量,可为调控水稻秸秆厌氧消化技术提供理论支撑.  相似文献   

4.
木薯渣堆肥及其对难溶性磷的活化试验研究   总被引:3,自引:0,他引:3  
试验以干鸡粪、米糠、堆肥返料作调理剂,同时加入不同含量的磷矿粉,对木薯渣进行好氧堆肥,研究木薯渣堆肥过程中堆肥理化性质的变化及木薯渣堆肥对难溶性磷的活化作用。试验设置磷矿粉加入量10%(T1)、15%(T2)、20%(T3)和不加磷矿粉(CK)四个处理,干鸡粪、米糠、堆肥返料的添加量均为10%、15%和20%。在堆肥过程中,四个处理均在55℃以上高温持续了25d,超过了国家规定的标准。在堆肥结束时,各处理水分含量均降至30%左右,pH升高至弱碱性,淀粉降解率均在90%以上,水溶性碳(DOC)含量均降至10g·kg-1以下,达到了基本腐熟的标准。证明木薯渣通过堆肥能达到稳定无害化状态。在堆肥结束时,T1、T2、T3有效磷增加量分别为12.58、12.81、12.96g·kg-1,对磷矿粉的活化率分别为23.53%、17.07%、14.50%,T1活化效果最好。研究结果表明木薯渣堆肥对难溶性磷有一定的活化作用,可为解决堆肥资源化产品中植物可利用磷含量偏低的难题开拓一条生物学途径。  相似文献   

5.
木薯渣堆肥及其对难溶性磷的活化试验研究   总被引:1,自引:1,他引:0  
试验以干鸡粪、米糠、堆肥返料作调理剂,同时加入不同含量的磷矿粉,对木薯渣进行好氧堆肥,研究木薯渣堆肥过程中堆肥理化性质的变化及木薯渣堆肥对难溶性磷的活化作用。试验设置磷矿粉加入量10%(T1)、15%(T2)、20%(T3)和不加磷矿粉(CK)四个处理,干鸡粪、米糠、堆肥返料的添加量均为10%、15%和20%。在堆肥过程中,四个处理均在55℃以上高温持续了25d,超过了国家规定的标准。在堆肥结束时,各处理水分含量均降至30%左右,pH升高至弱碱性,淀粉降解率均在90%以上,水溶性碳(DOC)含量均降至10g.kg。以下,达到了基本腐熟的标准。证明木薯渣通过堆肥能达到稳定无害化状态。在堆肥结束时,T1、T2、T3有效磷增加量分别为12.58、12.81、12.96g.kg-1,对磷矿粉的活化率分别为23.53%、17.07%、14.50%,T1活化效果最好。研究结果表明木薯渣堆肥对难溶性磷有一定的活化作用,可为解决堆肥资源化产品中植物可利用磷含量偏低的难题开拓一条生物学途径:  相似文献   

6.
土壤中总石油烃污染(TPH)的微生物降解与修复研究进展   总被引:9,自引:0,他引:9  
微生物降解和修复是处理土壤中总石油烃(TPH)污染最简单、有效的方法之一.论文阐述了土壤TPH污染的产生、危害以及物理、化学、生物等修复方法的各自特点,其中重点介绍了微生物修复方法,论述了土壤中TPH在微生物表面的吸附、转运,在微生物体内的降解以及相关降解酶及基因;详细介绍了电子受体、温度、pH、营养元素等外界因素对微生物修复TPH污染的影响,在此基础上对土壤TPH污染的微生物修复现状和发展趋势进行了讨论.  相似文献   

7.
磺酰脲类除草剂的微生物降解研究进展   总被引:1,自引:0,他引:1  
王新  倪子钧  李兆兴  宋磊  鲍佳  张惠文 《环境化学》2020,39(5):1356-1367
磺酰脲类除草剂属于高效、低毒、高选择性的新型除草剂,被广泛应用于水稻、玉米、小麦、大豆等田间杂草的防控,其用量也呈逐年增加的趋势,但其微量的除草剂残留易对后茬敏感作物产生药害.利用微生物降解土壤中的除草剂残留有望成为一种修复污染的有效方法.本文综述了近几年国内外筛选出的能够降解磺酰脲类除草剂菌株的来源和所属微生物类群,以及除草剂降解酶的研究进展,此外,对相关微生物对不同除草剂的降解途径也进行了简要介绍,最后提出了目前有待解决的问题并对未来该领域的研究趋势进行了展望,可为后续寻找高效的微生物降解菌种及利用基因工程法修复受污染的土壤、水源提供参考.  相似文献   

8.
腐熟堆肥接种对蔬菜废物中高温好氧降解过程的影响   总被引:1,自引:0,他引:1  
通过不同比例腐熟堆肥接种,进行蔬菜废物高温好氧降解试验,研究接种对蔬菜废物好氧降解过程的影响.结果表明:当接种率为5%,3%和1%时,增加腐熟堆肥接种比例有利于提高有机物的好氧降解率,试验末期有机物降解率分别为53.3%,50.0%和43.7%,糖类和纤维素类降解的差别是其降解率差距的主要来源;腐熟堆肥接种对堆肥过程中微生物演化规律影响明显,但接种率达到一定水平后,接种对生物相的影响会随堆肥过程而逐步消失;通过对微生物相演变与生物质降解过程的相关性分析,表明微生物种群增殖与特定生物质类型降解存在明显的相关性,从而提示了采用按堆肥过程中生物质分类的降解状况分段接种微生物的可能性.  相似文献   

9.
选取由农林废物堆肥中筛选出的木质素降解优势土著微生物枯草芽孢杆菌(Bacillus subtilis)、铜绿假单孢菌(Pseudomonas aeruginosa)、黑曲霉(Aspergillus niger)、简青霉(Penicillium simplicissim)、栗褐链霉菌(Streptomyces badius),依据PLFA-PLS定量分析所得堆肥化2次发酵期有效的木质素降解微生物群落组成比例混合接种至稻草基质发酵瓶中,做1组L9(34)正交试验以优化混合比例,期望开发1种基于木质素降解的高效堆肥化接种剂.试验结果表明:混合菌剂具有较强的木质素降解能力,其对木质素的降解是木质素过氧化物酶、锰过氧化物酶、漆酶、纤维素酶和半纤维素酶共同作用的结果;当按照个数比细菌∶放线菌∶真菌为85∶5∶ 10,枯草芽孢杆菌∶铜绿假单孢菌为55∶25,黑曲霉∶简青霉为2∶1配比时,木质素、纤维素、半纤维素降解率最高,分别达到22.13%,48.97%和55.93%;在不灭菌前提下,按此配比接入菌剂,其木质素、纤维素、半纤维素降解率分别比不接菌剂发酵稻草提高19.16,38.25和46.30百分点.  相似文献   

10.
有机废弃物处置不当造成的环境污染和资源浪费已引起广泛关注,生物降解可以有效地实现有机废弃物资源化利用。微生物分泌的酶能催化生物降解的矿化和腐殖化过程,提高有机物降解率。然而,以往研究主要集中于微生物作用,对有机废弃物降解过程酶作用及其调控机制的总结很少。该文从酶学和生物化学角度出发,论述了生物酶催化降解有机质、促进腐殖质合成和削减污染物毒性等作用过程。基于酶动力学和热力学特征,从微生物、酶的固定化、理化因子和添加剂4个方面阐述酶作用的调控机制。生物酶高效、环保、可控,是有机废弃物资源化利用的重要催化剂之一。未来应加强研究酶降解的途径与分子机制、微生物-酶-有机废弃物系统的新陈代谢、激活剂对酶作用的调控、酶的固定化技术以及降解酶的生产与应用,以推动有机废弃物资源化利用的进程。  相似文献   

11.
• The sustainable approaches related to Fenton sludge reuse systems are summarized. • Degradation mechanism of Fenton sludge heterogeneous catalyst is deeply discussed. • The efficient utilization directions of Fenton sludge are proposed. The classical Fenton oxidation process (CFOP) is a versatile and effective application that is generally applied for recalcitrant pollutant removal. However, excess iron sludge production largely restricts its widespread application. Fenton sludge is a hazardous solid waste, which is a complex heterogeneous mixture with Fe(OH)3, organic matter, heavy metals, microorganisms, sediment impurities, and moisture. Although studies have aimed to utilize specific Fenton sludge resources based on their iron-rich characteristics, few reports have fully reviewed the utilization of Fenton sludge. As such, this review details current sustainable Fenton sludge reuse systems that are applied during wastewater treatment. Specifically, coagulant preparation, the reuse of Fenton sludge as an iron source in the Fenton process and as a synthetic heterogeneous catalyst/adsorbent, as well as the application of the Fenton sludge reuse system as a heterogeneous catalyst for resource utilization. This is the first review article to comprehensively summarize the utilization of Fenton sludge. In addition, this review suggests future research ideas to enhance the cost-effectiveness, environmental sustainability, and large-scale feasibility of Fenton sludge applications.  相似文献   

12.
The fungi Botryodiplodia theobromae and Rhizopus oryzae produce extracellular amylase when grown on a liquid medium containing 2% (WN) soluble starch or cassava starch residue(CSR) (as starch equivalent), a waste generated after extraction of starch from cassava, as the sole carbon source. Using CSR as the sole carbon source, the highest amylase activity of 3.25 and 3.8 units (mg, glucose released x ml(-1) x h(-1)) were obtained in shake flask cultures during the late stationary phase of growth of B. theobromae and R. oryzae, respectively. These values were slightly lower than the values obtained using soluble starch as the carbon source. Maximum enzyme synthesis in CSR incorporated medium occurred at the growth temperature of 30 degrees C and pH 6.0. Presence of inorganic NH4+ salts like ammonium acetate and ammonium nitrate in culture medium yielded more amylase than the other nitrogen sources. Amylase(s) production in the controlled environment of a Table-Top glass Jar Fermenter (2-L capacity) was 4.8 and 5.1 units for B. theobromae and R. oryzae, respectively using CSR as the carbon substrate. It is concluded that CSR, a cheap agricultural waste obtained after starch extraction from cassava could replace soluble starch as carbon substrate for commercial production of fungal amylase(s).  相似文献   

13.
Photocatalytic degradation of organic pollutants using suspended and dispersed semiconductor nano-photocatalysts in wastewater holds unique advantages, including high activity, low cost, solar utilization, and complete mineralization. But the recovery and reuse of photocatalysts are difficult because the fine particles are easily discharged in waters. Immobilization of photocatalysts on supports such as glass and zeolite results in decreased activities due to the low specific area and slow mass transfer. Furthermore, a large amount of the photocatalysts will result in colored contamination. Therefore, it is necessary to develop photocatalysts with a separation function for the reusable and cyclic application. In order to take advantage of the high activity and enable the semiconductor nano-photocatalysts to be reused, the concept of magnetic photocatalysts with separation function was raised. We review the photocatalytic principle, structure, and application of the magnetic semiconductor catalysts.  相似文献   

14.
吴海珍  韦朝海  周盛 《生态环境》2012,21(1):166-171
生物吸附与降解是解决持久性有机污染物(POPs)最有潜力的方法之一,有必要介绍利用微生物把目标污染物转化为易降解的物质甚至矿化的POPs修复原理及其技术。对此,概述了近年来国内外基于微生物通过膜融合、胞质融合和核融合形成能够降解POPs的杂种细胞的细胞融合技术;基于降解性质粒的相容性,把能够降解不同污染物的质粒组合到一个菌种中,形成多质粒的新菌种,使微生物由于代谢途径的改变能够矿化POPs的基因工程菌构建技术;基于通过某些载体把酶固定于其中实现活性稳定、可以回收及可重复利用的酶固定化技术,以及基于降解菌活性酶分子亚基置换、降解菌活性酶的定点突变、降解酶的体外定向进化这几方面的酶构建技术;进一步分析基于分子生物学提高POPs生物修复能力的原理,指出经生物技术改造的工程菌和固定化酶未能进入实际应用的障碍所在。以多溴联苯醚(PBDEs)的微生物细胞吸收和降解机理作为典型POPs生物修复的案例,强调生物降解的过程强化需要建立多尺度上功能方面的适合;提出了分子生物学与基因工程学的结合在解决POPs环境污染方面未来的基础科学问题与研究思路。综合上述,典型POPs的生物修复技术的构建需要考虑宏观污染物协同降解的工艺理论,在基因水平、分子水平、反应器水平及工程水平上追求更高功能方面的适合。  相似文献   

15.
通过淹水植稻试验,研究了几种有机-无机复混肥肥料氮的有效性及影响因素.结果表明:含不同有机物料(木薯渣、人粪渣、泥炭和花生麸)的有机-无机复混肥肥料氮的有效性不同:有机物料能够延缓前期肥料氮的释放,促进中后期水稻氮素的供应;不同有机物料对水稻氮素供应的影响亦有不同;有机物料的组分是影响有机-无机复混肥肥料氮有效性的主要因素之一.  相似文献   

16.
There is serious concern about the disposal of solid residues left after large scale extraction of starch from cassava. Owing to the high starch content (55-65% on dry weight basis) and organic matter of these wastes, an attempt has been made to utilize it for the production of three bioproducts, i.e. alpha-amylase, lactic acid and ethanol in solid substrate fermentation by incubating the solid residue at different moisture holding capacity (40-80%) and incubation period (12- 60 hr for alpha-amylase, 24-144 hr for ethanol and 2-10 days for lactic acid). The highest product yield was obtained at 60% moisture holding capacity of the residue and period of incubation varied from 36 hr (alpha-amylase), 120 hr (ethanol) to 6 days (lactic acid). This study showed that the solid residues from cassava starch factories could serve as a low-cost substrate for bioproducts production.  相似文献   

17.
以亚热带坡地毛竹林地为试验背景,结合室内控制条件下的降解试验,研究咪唑烟酸在土壤中的分布与归趋,以指导咪唑烟酸在类似地区的安全使用。结果表明,实验室条件下,咪唑烟酸在土壤中的微生物降解较缓慢,降解半衰期为77 d,可能是因为纯毛竹林地土壤中可降解咪唑烟酸的微生物较少或活性较低所致。田间条件下,咪唑烟酸残留主要分布在0~20 cm深度土层。当施用前期咪唑烟酸浓度较高时,随降水作用咪唑烟酸淋溶现象明显,径流损失也较严重;施用后期土壤中咪唑烟酸浓度较低时,其消解受降水影响较小,主要表现为微生物降解作用。咪唑烟酸在土壤中具有一定的移动性和稳定性,在降水量较大的山区使用时,应注意其对下游水源和环境生物的影响。  相似文献   

18.
Addition of plant residue into soils improves soil physiochemical properties and its fertility. Rapeseed residue is an emerging N source to paddy soils via rice-rape double-cropping practice. The objective of this study was to evaluate the effects of rapeseed residue and eggshell waste on chemical changes and enzyme activity in the rice paddy soil. The powdered eggshells at 0, 1, 3, and 5% were applied once to 7.0 kg paddy repacked soils in each pot treated with the rapeseed residue or the conventional N, P, and K fertilisers. Eight rice seedlings (Oriza sativa L. cv. Ilmibyeo) (40 days after sowing) were transplanted to the treated each pot. The contents of total C (TC) and N (TN), and organic matter (OM) were significantly increased in soils treated with the rapeseed residue compared to the N, P, and K fertilisers. With the addition of eggshell containing ~92% CaCO3, a considerable increase of soil pH was observed in soils treated with the rapeseed residue and the N, P, and K fertilisers, compared to the untreated soil. Activities of β-glucosidase, urease, and arylsulfatase enzymes were higher in soils treated with the rapeseed residue than soils treated with the N, P, and K fertilisers. The eggshell additions at 1, 3, and 5% into soils treated with the rapeseed residue increased enzyme activity mainly resulting from N mineralisation, whereas no change in enzyme activity was observed in the soils treated with the NPK fertiliser. The combined use of the rapeseed residue and the eggshells can be beneficial to improve soil environment.  相似文献   

19.
● We have provided an activated method to remove the toxicity of antibiotic residue. ● PFRB can greatly improve the salt adsorption capacity of MCDI. ● The hierarchical porous and abundant O/N-doped played the key role for the high-capacity desalination. ● A new field of reuse of penicillin fermentation residue has been developed. Membrane capacitive deionization (MCDI) is an efficient desalination technology for brine. Penicillin fermentation residue biochar (PFRB) possesses a hierarchical porous and O/N-doped structure which could serve as a high-capacity desalination electrode in the MCDI system. Under optimal conditions (electrode weight, voltage, and concentration) and a carbonization temperature of 700 °C, the maximum salt adsorption capacity of the electrode can reach 26.4 mg/g, which is higher than that of most carbon electrodes. Furthermore, the electrochemical properties of the PFRB electrode were characterized through cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) with a maximum specific capacitance of 212.18 F/g. Finally, biotoxicity tests have showed that PFRB was non-biotoxin against luminescent bacteria and the MCDI system with the PFRB electrode remained stable even after 27 adsorption–desorption cycles. This study provides a novel way to recycle penicillin residue and an electrode that can achieve excellent desalination.  相似文献   

20.
• Various low-cost adsorbents are studied for capturing urban stormwater pollutants. • Adsorbents are selected based on both pollutant adsorption and unexpected leaching. • Application modes of adsorbents influence their utilization efficacy in practice. Stormwater represents a major non-point pollution source at an urban environment. To improve the treatment efficacy of stormwater infrastructure, low-cost adsorbents have increasingly gained attention over the past decades. This article aims to briefly discuss several key aspects and principles for utilization of low-cost adsorbents for urban stormwater treatment. To determine whether a low-cost adsorbent is suitable for stormwater treatment, two aspects should be carefully assessed, including: 1) its adsorption mechanisms and behaviors that can influence the binding stre.g.,h, adsorption kinetics, and treatment capacity; and 2) unwanted chemical leaching patterns that can affect the extent of water quality degradation. Furthermore, the application mode of an adsorbent in the system design influences the utilization efficiency. Adsorbents, after dosed to soil media in infrastructure, would eventually become ineffective after oversaturation. In contrast, standalone filters or innovative composite adsorbents (e.g., adsorbent-coated mulch chips) can enable a long-lasting adsorption due to periodic replacement with fresh adsorbents. The aforementioned principles play a key role in the success of urban stormwater treatment with low-cost adsorbents.  相似文献   

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