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| 1 | 水下喷发火山碎屑岩储层特征及主控因素:以新西兰Taranaki盆地中新世Kora火山为例显示文摘新西兰Taranaki盆地中新世Kora火山是海底喷发形成的碎屑岩型火山,可代表浅埋藏火山岩的储层特征。本文根据5口钻井的孔隙度、渗透率、孔隙孔径和铸体薄片开展Kora火山的储层特征、储集空间组成、缝宽以及原生和次生孔隙之间关系的分析。研究结果如下:(1)储集空间主要为次生孔隙,然后是裂缝和原生孔隙;Kora火山具有高孔隙度和高渗透率特征,孔径具有双峰到单峰的分布特征。(2)炸裂缝、淬火缝和粒间孔形成于岩浆破碎和/或喷发期间;在晚Tortonian期间产生了网状构造裂缝,在Tortonian晚期至Messinian早期产生规则构造裂缝,二者形成时间均早于原油充注;筛状孔和铸模孔应由风化阶段和/或埋藏阶段的溶蚀作用形成,晶间微孔应由埋藏阶段的蚀变和/或重结晶作用形成。(3)原生孔隙控制次生孔隙的分布,特别是原生的裂缝;在Kora火山中控制筛状孔和铸模孔形成的缝宽的阈值约为9μm,较宽的裂缝可优先促成筛状孔和铸模孔的形成。(4)再搬运火山颗粒含量的增加会显著降低高孔隙度岩石的总孔隙度;近源相带的孔隙度和渗透率高于远源相带,海底喷发火山远源相带发生的强烈钙质胶结可显著减少孔隙度和渗透率。相关认识可为火山岩储层形成、演化和分布规律研究提供依据。 | 唐华风 王寒非 Ben KENNEDY 张芯语 Marcos ROSSETTI Alan Patrick BISCHOFF Andrew NICOL | 2021 | 地学前缘2021,28,1: | 5 |
| 2 | 新西兰Taranaki盆地中新世Kora火山高精度地层格架显示文摘建立埋藏火山的高精度地层格架对了解火山系统的演化、储层成因和资源潜力等具有重要意义.以新西兰Taranaki盆地中新世Kora火山为例,利用小波变换和井震联合对比等方法,开展火山地层高精度格架分析.在Kora火山识别出20个堆积单元,主要为火山碎屑堆积单元以及再搬运碎屑堆积单元,可合并为5个部分(相当于5个火山机构);整体上火山地层的建造与喷发中心的形成和迁移有关.利用井和常规三维地震数据可以较为准确地识别出喷发间断不整合界面系统、可建立堆积单元尺度的高精度地层格架,利用常规三维地震数据只能识别出部分喷发间断不整合界面、只能建立火山机构尺度的地层格架.相对年代的高精度地层格架是埋藏火山的更好选择. | 唐华风 陶鹏 Alan Patrick Bischoff 王寒非 Marcos Rossetti Andrew Nicol Ben Kennedy 郭天婵 | 2022 | 地球科学2022,47,7: | 1 |
| 3 | Primary ovarian insufficiency: X chromosome defects and autoimmunity显示文摘 | Luca Persani Raffaella Rossetti Chiara Cacciatore Marco Bonomi | 2009 | Journal of Autoimmunity2009,,1: | 1 |
| 4 | Cytoreductive surgery and HIPEC after neoadjuvant chemotherapy for advanced epithelial ovarian cancer显示文摘AIM: To reduce postoperative complications and to make possible an optimal cytoreduction, neoadjuvant chemotherapy(NACT) followed by interval debulking surgery has been applied with encouraging results. METHODS: Between December 2009 and February 2012, patients with stage ⅢC-Ⅳ epithelial ovarian cancer(EOC) underwent diagnostic laparoscopy, to assess the feasibility of optimal debulking surgery. The modifi ed Fagotti score was applied to assess the feasibility of resection with zero residual tumor. Patients who were not candidate for upfront debulking surgery were submitted to NACT, then reassessed according to the RECIST 1.1 criteria and submitted to cytoreductive surgery(CRS) and hyperthermic intraperitoneal chemotherapy(HIPEC) if they showed clinical response or stable disease. The remaining cycles of adjuvant systemic chemotherapy(ASCT) were administered postoperatively, to complete 6 cycles of systemic chemotherapy.RESULTS: Nine patients were included. Clinical response to NACT was complete in 3 patients and partial in 5 patients; one patient had stable disease. All patients underwent CRS resulting in CC0 disease prior to HIPEC. Average operative time was 510 min. Average intensive care unit stay was 2 d. Average postoperative hospital stay was 25 d. No postoperative mortality was observed. One patient experienced pelvic abscess. One patient refused ASCT. The remaining 8 patients started ASCT. Average time to chemotherapy was 36 d. All patients are alive, with an average follow up of 11 mo. Eight patients are disease-free at follow up.CONCLUSION: HIPEC after CRS for advanced EOC is feasible with acceptable morbidity and mortality. NACT may increase the chance for achieving complete cytoreduction. Phase 3 studies are needed to determine the effects of HIPEC on survival. | Marco Lotti Luisa Maria Busci Luca Campanati Fausto Catena Federico Coccolini Naoual Bakrin Pierandrea De Iaco Giorgio Ercolani Giuseppe Grosso Michele Pisano Elia Poiasina Diego Rossetti Martina Rossi Claudio Zamagni Paolo Bertoli Antonio Daniele Pinna Luigi Frigerio Luca Ansaloni | 2013 | World Journal of Obstetrics and Gynecology2013,2,4: | 0 |
| 5 | Coupling of bioelectrochemical toluene oxidation and trichloroethene reductive dechlorination for single-stage treatment of groundwater containing multiple contaminants显示文摘Bioremediation of groundwater contaminated by a mixture of aromatic hydrocarbons and chlorinated solvents is typically challenged because these contaminants are degraded via distinctive oxidative and reductive pathways,thus requiring different amendments and redox conditions.Here,we provided the proof-of-concept of a single-stage treatment of synthetic groundwater containing toluene and trichloroethene(TCE)in a tubular bioelectrochemical reactor,known as a“bioelectric well”.Toluene was degraded by a microbial bioanode(up to 150 mmol L^(-1) d^(-1))with a polarized graphite anode(t0.2 V vs.SHE)serving as the terminal electron acceptor.The electric current deriving from microbially-driven toluene oxidation resulted in(abiotic)hydrogen production(at a stainless-steel cathode),which sustained the reductive dechlorination of TCE to less-chlorinated intermediates(i.e.,cis-DCE,VC,and ETH),at a maximum rate of 500 meq L^(-1) d^(-1),in the bulk of the reactor.A phylogenetic and functional genebased analysis of the“bioelectric well”confirmed the establishment of a microbiome harboring the metabolic potential for anaerobic toluene oxidation and TCE reductive dechlorination.However,Toluene degradation and current generation were found to be rate-limited by external mass transport phenomena,thus indicating the existing potential for further process optimization. | Carolina Cruz Viggi Matteo Tucci Marco Resitano Simona Crognale Maria Letizia Di Franca Simona Rossetti Federico Aulenta | 2022 | Environmental Science and Ecotechnology2022,,3: | 0 |