Journal articles on the topic 'Odor span task'

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1

Krichbaum, Sarah, Bart Rogers, Emma Cox, L. Paul Waggoner, and Jeffrey S. Katz. "Odor span task in dogs (Canis familiaris)." Animal Cognition 23, no. 3 (February 25, 2020): 571–80. http://dx.doi.org/10.1007/s10071-020-01362-7.

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2

Cain, William S., Joseph C. Stevens, Connie M. Nickou, Amy Giles, Ingrid Johnston, and Maria Rosa Garcia-Medina. "Life-Span Development of Odor Identification, Learning, and Olfactory Sensitivity." Perception 24, no. 12 (December 1995): 1457–72. http://dx.doi.org/10.1068/p241457.

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In the first of three studies, children (aged 8 to 14 years) were found to perform worse than young and middle-aged adults in unprompted identification of odors, with average performance much like that of elderly adults. Comparisons on other tasks, specifically odor threshold, prompted odor identification, and object naming (Boston Naming Test), across the life span (five groups) revealed that children have the same excellent olfactory sensitivity as young adults and merely lack odor-specific knowledge that accumulates slowly through life. Such knowledge apparently accumulates so slowly that age-associated discriminative losses, measurable by early middle age, begin to wear away gains obtained through experience before odors can become overlearned. In the second study, a novel adaptive psychophysical method, the step procedure, confirmed the equivalent sensitivity of children and young adults. In the third study, a paired-associate task illustrated the sluggish course of odor learning. Young adults outperformed children, though the youngest group, first graders, made up ground relatively fast. For children and adults, common odors facilitated performance relative to novel odors. The outcome highlighted the relevance of semantic factors in odor learning irrespective of age.
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3

Branch, Carrie L., Mark Galizio, and Katherine Bruce. "What-Where-When memory in the rodent Odor Span Task." Learning and Motivation 47 (August 2014): 18–29. http://dx.doi.org/10.1016/j.lmot.2014.03.001.

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4

MacQueen, David A., and David J. Drobes. "Validation of the human odor span task: effects of nicotine." Psychopharmacology 234, no. 19 (July 14, 2017): 2871–82. http://dx.doi.org/10.1007/s00213-017-4680-z.

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Galizio, Mark, Michael Mathews, Madeleine Mason, Danielle Panoz-Brown, Ashley Prichard, and Paul Soto. "Amnestic drugs in the odor span task: Effects of flunitrazepam, zolpidem and scopolamine." Neurobiology of Learning and Memory 145 (November 2017): 67–74. http://dx.doi.org/10.1016/j.nlm.2017.09.006.

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Galizio, Mark, Brooke April, Melissa Deal, Andrew Hawkey, Danielle Panoz-Brown, Ashley Prichard, and Katherine Bruce. "Behavioral pharmacology of the odor span task: Effects of flunitrazepam, ketamine, methamphetamine and methylphenidate." Journal of the Experimental Analysis of Behavior 106, no. 3 (October 17, 2016): 173–94. http://dx.doi.org/10.1002/jeab.224.

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7

McGonigle, Colleen E., Christopher C. Lapish, and Marian L. Logrip. "Male and female impairments in odor span are observed in a rat model of PTSD." Learning & Memory 30, no. 1 (December 21, 2022): 1–11. http://dx.doi.org/10.1101/lm.053620.122.

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Posttraumatic stress disorder (PTSD) is associated with neural and behavioral alterations in response to trauma exposure, including working memory impairments. Rodent models of PTSD have not fully investigated chronic or reactive working memory deficits, despite clinical relevance. The present study uses footshock to induce a posttraumatic stress state in male and female rats and evaluates the effect of footshock and trauma-paired odor cues on working memory performance in the odor span task. Results demonstrate the emergence of chronic deficits in working memory among animals exposed to footshock by 3 wk after traumatic stress. The presentation of a trauma-paired odor cue was associated with further decrement in working memory performance for male animals. Furthermore, anxiety-like behaviors associated with the PTSD-like phenotype could predict the degree of working memory impairment in response to the trauma-paired odor cue. This study enhances validation of an existing rodent model of PTSD through replication of the clinical observations of working memory deficits associated with PTSD and provides novel insight into effects in female rodents. This will facilitate work to probe underlying mechanistic dysregulation of working memory following footshock trauma exposure and future development of novel treatment strategies.
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8

Galizio, Mark, Madeleine G. Mason, and Katherine Bruce. "Successive incrementing non‐matching‐to‐samples in rats: An automated version of the odor span task." Journal of the Experimental Analysis of Behavior 114, no. 2 (July 29, 2020): 248–65. http://dx.doi.org/10.1002/jeab.619.

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9

April, L. Brooke, Katherine Bruce, and Mark Galizio. "The magic number 70 (plus or minus 20): Variables determining performance in the Rodent Odor Span Task." Learning and Motivation 44, no. 3 (August 2013): 143–58. http://dx.doi.org/10.1016/j.lmot.2013.03.001.

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10

De Falco, Emanuela, Lei An, Ninglei Sun, Andrew J. Roebuck, Quentin Greba, Christopher C. Lapish, and John G. Howland. "The Rat Medial Prefrontal Cortex Exhibits Flexible Neural Activity States during the Performance of an Odor Span Task." eneuro 6, no. 2 (March 2019): ENEURO.0424–18.2019. http://dx.doi.org/10.1523/eneuro.0424-18.2019.

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11

MacQueen, David A., Savannah R. Dalrymple, David J. Drobes, and David M. Diamond. "Influence of pharmacological manipulations of NMDA and cholinergic receptors on working versus reference memory in a dual component odor span task." Learning & Memory 23, no. 6 (May 18, 2016): 270–77. http://dx.doi.org/10.1101/lm.041251.115.

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12

Galizio, Mark, Melissa Deal, Michael Mathews, Danielle Panoz-Brown, Ashley Prichard, and Katherine E. Bruce. "Effects of NMDA antagonist dizocilpine (MK-801) are modulated by the number of distractor stimuli in the rodent odor span task of working memory." Neurobiology of Learning and Memory 161 (May 2019): 51–56. http://dx.doi.org/10.1016/j.nlm.2019.03.004.

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13

Scott, Gavin A., Max C. Liu, Nimra B. Tahir, Nadine K. Zabder, Yuanyi Song, Quentin Greba, and John G. Howland. "Roles of the medial prefrontal cortex, mediodorsal thalamus, and their combined circuit for performance of the odor span task in rats: analysis of memory capacity and foraging behavior." Learning & Memory 27, no. 2 (January 16, 2020): 67–77. http://dx.doi.org/10.1101/lm.050195.119.

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14

Young, Jared W., Lorraine E. Kerr, John S. Kelly, Hugh M. Marston, Christopher Spratt, Keith Finlayson, and John Sharkey. "The odour span task: A novel paradigm for assessing working memory in mice." Neuropharmacology 52, no. 2 (February 2007): 634–45. http://dx.doi.org/10.1016/j.neuropharm.2006.09.006.

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15

Rushforth, Samantha L., Thomas Steckler, and Mohammed Shoaib. "NICOTINE RESTORES COGNITIVE IMPAIRMENTS FOLLOWING SUB-CHRONIC KETAMINE EXPOSURE IN A RODENT ODOUR SPAN TASK." Schizophrenia Research 117, no. 2-3 (April 2010): 509–10. http://dx.doi.org/10.1016/j.schres.2010.02.973.

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16

Scott, Gavin A., Nadine K. Zabder, Quentin Greba, and John G. Howland. "Performance of the odour span task is not impaired following inactivations of parietal cortex in rats." Behavioural Brain Research 341 (April 2018): 181–88. http://dx.doi.org/10.1016/j.bbr.2017.12.013.

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17

Rushforth, Samantha L., Claire Allison, Susan Wonnacott, and Mohammed Shoaib. "Subtype-selective nicotinic agonists enhance olfactory working memory in normal rats: A novel use of the odour span task." Neuroscience Letters 471, no. 2 (March 2010): 114–18. http://dx.doi.org/10.1016/j.neulet.2010.01.022.

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18

Rupenian, Pablo Ruben. "Osteosíntesis Mínimamente Invasiva con Placa en Fracturas Diafisarias del Húmero. Minimally Invasive Plate Osteosynthesis (MIPO) in Humeral Shaft Fractures." Revista de la Asociación Argentina de Ortopedia y Traumatología 78, no. 2 (June 2, 2013): 53. http://dx.doi.org/10.15417/202.

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<div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p><span><strong>Objetivo</strong></span></p><p><span>Mostrar y analizar los resultados del tratamiento de un grupo de fracturas diafisarias de húmero con técnica MiPO. se hizo particular énfasis en el análisis del dolor durante el posoperatorio inmediato, la demora en la reincorporación a las actividades cotidianas básicas, los tiempos hasta alcanzar la consolidación radiológica y las complicaciones.</span></p><p><span><br /> </span><span><strong>Materiales y métodos</strong></span></p><p><span>S</span><span>e evaluaron, en forma retrospectiva, 15 fracturas diafisarias de húmero. La edad promedio era de 57 años (18-84). El seguimiento promedio fue de 26 meses (12-96). Ocho casos fueron tratados con técnica MiPO por vía anterior utilizando implantes rectos, y siete, con técnica MiPO e implantes helicoidales.<br /> </span></p><p><span><strong>Resultados</strong></span></p><p><span>T</span><span>odos los casos alcanzaron la consolidación. El tiempo promedio hasta la consolidación radiológica fue de 12 semanas (6-32). salvo un caso con retraso de la consolidación, el tiempo promedio fue de 10 semanas (6-16). El puntaje promedio del dolor según la escala analógica visual durante las primeras 48 horas del posoperatorio fue 2,4 (1-4). El tiempo promedio hasta retomar las actividades cotidianas básicas fue de 9 días (4-17). Las complicaciones fueron retraso de la consolidación (1 caso), infección superficial (1 caso) y tenosinovitis de la porción larga del bíceps (1 caso).</span></p><p><span><br /> </span><span><strong>Conclusiones</strong></span></p><p><span>La técnica MiPO mostró ser un método con alta tasa de consolidación en un tiempo igual o inferior al de otros métodos de osteosíntesis. Los pacientes sufrieron dolor leve durante el posoperatorio inmediato y la reincorporación a las actividades cotidianas básicas fue rápida. Las complicaciones fueron tratadas con éxito. </span></p><p><span>Palabras clave: Fractura. Húmero. MIPO. Osteosíntesis mínimamente invasiva. </span></p></div></div></div><p>Nivel de evidencia: IV</p><div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p> </p><div class="page" title="Page 1"><div class="layoutArea"><div class="column"><p> </p></div></div></div></div></div></div>
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19

Pistrick, Eckehard. "Visuelle oder klangliche Spuren?" Die Musikforschung 72, no. 4 (September 22, 2021): 307–22. http://dx.doi.org/10.52412/mf.2019.h4.37.

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This article focuses on the emerging ethnographic field 'refugee camp' and the challenges it poses in terms of an "engaged ethnomusicology" inscribed into a larger discussion about "public ethnography" and ethically informed collaborative practices. The prevailing focus of mass media and artists serves as a starting point, as they represent migratory phenomena primarily through the visual lens, through material artefacts, denying their multisensory character, particularly their immaterial and sonic aspects. Taking as examples the artistic work of Chinese dissident artist Ai Weiwei and exhibition concepts presented at the documenta 14 and at the Biennale in Venice 2019, the article questions the predominance of the material approach, the inaudibility of migration because of its compatibility with our "museological thinking'" and an abstract idea of "cultural heritage" as promoted by established cultural institutions in Western Europe. The article argues that sound should instead be taken more seriously into consideration. This includes reflecting on the prominent links between human existentiality and suffering, as well as musical production and performance. It is argued that the temporariness of refugee's musical practice is related to their precarious life conditions in camps suspended in time and space. As practical examples from the French camp of Calais demonstrate, music making in this context offers refugees one possible way to counter-act imposed policies of infantilization, passivity and an omnipresent experience of waiting. In a situation where creative space and musical instruments are a limited resource, social media and music apps generate particular forms of musical creativity and assume a fundamental role which should be acknowledged in research to a larger extent. Such conditions influence also largely the ways in which migrated musicians construct their self-image as "refugee musicians". Taking as an example Syrian pianist Aeham Ahmad, the article shows that such self and foreign attributions may be reductive and result in an ethically problematic branding with commercial intentions. The second part of the article presents a collaborative grassroot-music theatre project realized in a German Erstaufnahmeeinrichtung over a span of 4 months. It offers insights into the limitations of "making audible", or "voicing migrants" everyday concerns through artistic practice. It also questions the idea of developing an "artistic agency" and an equal "cultural participation" in a working context characterized by social and power hierarchies, emotional instabilities, and a constant flow of individuals and ideas. In this context the role of the ethnomusicologist as a (cultural) translator with multiple responsibilities is crucial. Not only does he/she balance out different levels of musical professionality or different aesthetic preferences, but he/she also opens up spaces for creativity for disadvantaged or marginalized individuals in the camps. On another level the researcher's responsibility lies in the task to make practices public which originally were self-referential or of local relevance in a socially segregated space. Despite numerous obstacles to make such interventions "culturally sustainable", the article shows the potentiality of producing bottom-up "counter-images" or "counter-soundings', which could generate counter-discourses to the main media narratives on migration.
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20

Choudhury, Atun Roy. "Techno-commercial Assessment of Concurrent Municipal Brown Field Reclamation Procedures: A Pivotal Case study of Jawahar Nagar Dump Site." Journal of Toxicology and Environmental Sciences 1, no. 1 (July 6, 2021): 23–33. http://dx.doi.org/10.55124/jtes.v1i1.35.

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The quantity of municipal solid waste (MSW) generation is escalating at an alarming rate with every passing year alongside the modernization of our economy. Unfortunately, the majority of this waste remains uncollected or ends up in open dumping and followed by uncontrolled burning. Citing the deep-rooted consequences, open dumping should be absolutely abandoned and scientific interventions should be aggressively exercised to reclaim the municipal brownfields. The present research work undertook the judicial task of assessing the comparative feasibility of biomining and scientific capping as a technology selection for reclamation of about a decade old 120 million tons of waste chunk laying at Jawahar Nagar dump yard. Primary dump samples were collected from various locations, considering depth as a variable. While leachate and groundwater samples were collected from Malkaram lake and preinstalled borewells receptively. Additionally, the ambient air quality and noise level also been ascertained within the buffer zone. The blended representative solid sample was segregated using a 70 mm mesh size trommel into organic and inorganic fractions. The organic fraction was composted using a lab-scale aerobic static pile composting (ASPC) while the trommel reject was processed as refuse derived fuel (RDF). Evidently, the compost lagged quality and depicted nutrient deficiency. While the burning of RDF produced siloxane gas, significantly due to elevated silicon level in the primary waste. Furthermore, due to the prolonged leaching tenure and seasonal dilution, the concentration of legacy leachate was relatively weaker. Borewell samples collected from a depth of 20 feet also portrayed minor contamination up to 500 meters horizontal radius. The issue of leachability can solely be resolved with the capping of the existing dump and the end product quality derived from the biomining process is highly questionable. Thus, handling such large quantity capping is a befitting option over biomining for Jawahar Nagar dumpsite. INTRODUCTION Presently, in India due to rapid urbanization and industrialization, the generation of MSW has been increasing tremendously and also expected to continue a similar trend in the future (Scott, 1995; Bhat et al., 2017; Sethurajan et al., 2018; Sharma et al., 2018). Annually, the comprehensive urban MSW generation in India is more than 62 million tons. Metro cities are the mammoth contributor of the entire chunk and waste production had already reached an alarming figure of 50,000 tonnes/day. While the waste generation from the tier 2 cities is also rigorously escalating and presently contribute up to 20,000 tones/day (Sharma et al., 2018). A study conducted by the central pollution control board (CPCB) revealed MSW generation in India is increasing at a distressing rate of 5 % per annum with a sharp escalation in the quantities of domestic hazardous waste (Sharma et al., 2018). With major financial constraints, inefficacy of collection, treatment, and disposal incurs further reasons to worry. So far India has miserably failed to set up wholesome source segregation and collection method. Presently, the country spends more than 60% of its annual waste management budget only in collection. Besides, only 20% or less of the collected materials are scientifically handled and treated. Citing the statistics, it is evident that the majority of the MSW is simply gets dumped on the low laying grounds located somewhere on the outskirts of the cities. The precipitation, infiltration, surface water runoff, bird menace, rodent interference etc. triggers the vulnerability of waste and leads to mal odor, ground and surface water contamination, human and environmental health deterioration (Jayawardhana et al., 2016). Further, the perseverance of the inorganic and inert fractions leads to soil contamination, poses a fire threat, and also may incur carcinogenicity and acute toxicity among the animals (Mir et al., 2021). There are numerous techniques for the reclamation and remediation of the dumpsites, includes processes such as capping and closure, in-situ vitrification, sub-surface cut-off walls, and waste biomining (Chakrabarti and Dubey, 2015; Thakare and Nandi, 2016). Waste biomining is a stable way to get rid of the entire range of problems associated with open dumping and reclaim valuable land (Kaksonen et al., 2017). There are several instances including reclamation of Mumbai Gorai dump yard by IL & FS Environment, 70 – 80 years old 12,00,000 tons of dump clearance by Nagar Nigam Indore within a minute span of 3 years and many more. But the process of biomining is highly sensitive and case-specific. The success of the process solely depends on factors such as characteristics of the waste, efficacy of the effective microorganism culture, acceptability of the processed end product at the local market etc. (Jerez, 2017; Banerjee et al., 2017; Venkiteela, 2020). Contrarily, though the scientific capping is not an end-to-end solution but still advisable in the cases where the quantity of waste is gigantic, land scarcity is prevalent, no nearby industries to consume the end products etc. Mehta et al. (2018) have also supported the above claim based on the assessment of locations specific MSW dump reclamation case studies. While in another Nagpur-based case study conducted by Ashootosh et al. (2020) reported the superiority of the biominingprocess over simple land capping due to the favorability of the local conditions. Capping eliminates the environmental interference and thereby reduces biosphere contamination and leachate generation. Further, it captivates rodent and vector breeding and thereby curtails the spreading of communicable diseases and improves aesthetics. But right consolidation through compaction and execution is utmost necessary in the above case. As non-compaction and faulty sloping will easily lead to heavy settlement and slope failure (Berkun et al., 2005; Al-Ghouti et al., 2021). The present study has been pursued with the primary objective to run a techno-commercial assessment between scientific capping and biomining. While the secondary objective was to ascertain the level of contamination and propose mitigative measures. MATERIALS AND METHODStudy Area Spanning over 350 acres of a precious piece of land at the outskirts of Hyderabad city, Jawahar Nagar dumping yard was brutally utilized by the Greater Hyderabad Municipal Corporation (GHMC) for open dumping for a prolonged tenure of 10 years. It housed nearly 12 lakh metric tons of heterogeneous solid and domestic hazardous waste and continues polluting until 2015, until the Ramky group was offered to cap the legacy dumping and scientifically handle the site. The present study has been facilitated at Hyderabad Municipal Solid Waste Limited, formerly known as Jawahar Nagar dump yard to analyze and assess the feasibility of bio-mining as handling and management alternate to the existing practice of scientific capping. The epicenter of processing and disposal facility is lying approximately on the cross-section of 17°31'24.45"N and 78°35'23.37"E. As per the contract, the comprehensive legacy dumping to be capped in three phases over about 150 acres of area and Ramky has significantly entered the phase two of the operation only within a span of five years by successfully capping more than half of the legacy footprint. Sampling Methodology The waste pile was divided into three layers namely, base, middle, and top. A uniform amount of sample was collected from the successive layers of all five different corners which cover north, south, east, west, and central of the garbage pile. Sampling inspections were performed using a manual auger besides large samples were collected using a JCB excavator. The top six-inch layer of the pile was removed to avoid any contamination while collecting the samples and 5-10 kg of sample was collected from each of the locations. Further, intermediate and bottom layer samples were collected by digging a 500 mm diameter hole through the heap. A composite was prepared by a homogenized blending of all the fifteen grub samples. The blend was distributed into four equal quadrants and the top and bottom quadrants were eliminated diagonally while the left-over quadrants were mixed thoroughly. This process was repeated until a sample of the required bulk of 20 kg is obtained. Surface and subsurface water samples from borewell were collected in and around the facility. Piezometric monitoring borewells located near the landfills were utilized for the subsurface sample collection. While a rainwater pond turned leachate lake named Malkaram was determined as the primary source for leachate collection. Buffer samples were collected from Ambedkar Nagar, the nearby colony exiting at a distance of only 300 meters. Lab-scale Experimentation The representative sample was characterized for composition and further screened through a 70 mm mesh size trommel. The trommel permeate was considered as the organic fraction while the reject was mostly inorganics and inert. The organics were subjected to ASPC. The quantity of the air required is arrived using the method delineated below (Figure 1). MSW Pile size: 2m x 0.5m x 0.5m Volume of pile: 0.5 m3 Average Density of MSW: 620 Kg/m3 Weight of pile: 310 Kg Nitrogen required for matured compost: 9300 mg/kg dry : 9300 X 310 mg : 2.88 x 106 mg : 2.88 Kg Total air required: 2.88 x 100/76 [as Nitrogen in air is 76% by weight] : 3.79 Kg of dry air : 3.79/1.225 m3 [@ 15 deg C density of air 1.225 kg/m3] : 3.1 m3 This air is to be supplied for 100 min / day for 0.5 m pile Air flow rate required: 3.1 x 60/100 = 1.86 m3/h (for practical purpose a flowrate of 2 m3/h was maintained). The maturation period was considered as 28 days and post-maturation, the stabilized material was further cured for 24 hours and screened using 12 mm and 4 mm trommel respectively to obtain the desired product quality and particle size. Whereas, the trommel reject was evenly spreader on the copper trays and dried in an oven at 1050C for 2 hours. The dried material was micronized to the size of 50 mm or below using a scissor and inert such as glass, sand, stone etc. were segregated manually (Mohan and Joseph, 2020). Concurrently, a bench-scale capped landfill prototype was built using the below-mentioned procedure to evaluate the factors such as settlement and slope stability. A 30 mm thick low permeable soil was laid on the top of the waste, followed by a 60 mm layer of compacted clay liner (CCL). Each join between successive liner material was closely monitored. A 1.5 mm thick HDPE liner was placed on the top of the CCL. A 285 GSM geotextile membrane was placed as the successive above layer followed by a 15 mm thick drainage media layer. A further layer of geotextile membrane was placed on top of the drainage media for better stabilization, grip, and strength. The top vegetative soil layer of 45 mm thickness was laid off on top of the geotextile media and St. Augustine grass was rooted (Cortellazzo et al., 2020; Ashford et al., 2000). 2.4 Sample Analysis pH, Electrical Conductivity (EC) and Turbidity of the samples were analyzed using pH, EC-TDS, and Nephelometer of Mettler Toledo. The pH meter was calibrated with the buffer solution of 4.0, 7.0 & 9.12 at a controlled temperature. EC-TDS meter was calibrated with 0.1 M KCL having 12.8 mS/cm of conductivity. Nephelometer was calibrated with Formazine solution of 10 & 100 NTU. Total Dissolved Solids (TDS), (mg/L) was performed using the gravimetric method at 1800C in the oven. Titrimetric parameters such as Total Alkalinity as CaCO3 (mg/L), Total Hardness as CaCO3 (mg/L), Chloride as Cl- (mg/L), Calcium as Ca2+ (mg/L), Residual Free Chlorine (RFC), (mg/L) were analyzed using APHA (American Public Health Associations) method, 23rd Edition, 2017. Total Kjeldahl Nitrogen (mg/L) and Ammonical Nitrogen (mg/L) were performed through distillation followed by titration with H2SO4 as a titrant. Sulphide as S2- was done with the Iodometric method after distillation. Each titrimetric parameter was analyzed in triplicate after standardizing the titrant with required reagents and crossed checked by keeping a check standard. Sodium as Na (mg/L) and Potassium as K (mg/L) were performed using Flame Photometer. The photometer was calibrated with different standards from 10 to 100 (mg/L) standard solutions. The leachate sample was diluted enough to get the value within the standard range and cross-checked with check standards at the same time. Chemical Oxygen Demand (COD), (mg/L) was performed using the open reflux method for 2 hours at 1500C in COD Digestor. Biochemical Oxygen Demand (BOD), (mg/L) was performed using the alkali iodide azide method for 3 days. The samples were kept in a BOD incubator at 270C for 3 days. It was kept in duplicate to have a check on quality control. Sulphate was analyzed by the gravimetric method instead of turbidimetric or through UV-Visible spectrophotometer as its concentration was found more than 40 mg/L. Nitrate as NO3- was analyzed after filtration at 220-275 nm, while Hexavalent Chromium as Cr6+ was analyzed at 540 nm in the UV-Vis. Parameters like Cyanide as CN-, Fluoride as F-, and Phenolic Compounds were gone through a distillation process followed by UV-Vis. The distillation process ensures the removal of interferences presents either positive or negative. For the parameters like Total Iron or Ferric Iron, the samples were digested properly with the required reagents on the hot plate before analyzing in UV-Vis. For the metal analysis the water samples were digested at a temperature of 1000C using aqua regia as a media. The samples were digested to one-fourth of the volume on a hot plate. The recommended wavelengths as per APHA 3120 B were selected for each of the metals. The standard graph was plotted for each of the metals before analysis and crossed checked with the check standard at the same time. Parameters such as bulk density and particle size were performed through the certified beaker and sieve. The percentage of moisture content was estimated using the oven by keeping the compost sample for 2 hours at 1050C. C/N ratio was estimated through CHNS analyzer keeping sulfanilamide as a check standard. The analysis was performed by extracting the desired component in the desired solution prescribed in the method followed by converting the same from mg/L to mg/Kg. RESULTS AND DISCUSSION An exhaustive bench-study has been pursued and real-time samples were collected and analyzed for all possible parameters to determine the pros and cons attributed to both processes. The investigation begins by collecting the samples and concluded by impact assessment studies inclusive of the buffer zone. Both solid, liquid, and gaseous samples were precisely investigated to opt for the best solution. A detailed finding of the investigation is summarized below. Primarily, the representative solid sample was characterized through a manual separation process and the results are portrayed in Figure 1. Compost Characterization ASPC of the organic fraction has resulted in a recovery of 46.7% of the initial load. While 53.3% of the influent mass were inert and barely degradable fraction contributes to reject, the rest 4.1% is miscellaneous process loss. The processed compost was extensively analyzed including for metal contamination and the same is tabulated in Table 1. The value of C/N ratio, OC, TN, K2O, P2O5, and NPK evidently portrays the shortcoming in terms of nutrient availability. Though it is highly enriched in organic carbon and thus the same can be effectively utilized as a soil preconditioner. Ayilara et al. (2020) also reported a similar finding, where the city compost sourced from MSW lagged major plant nutrients. RDF Characterization Processed trommel rejects constitute cloth, rexine, leather, jute, paper, plastics, coir and other inert contributed to RDF. The fraction of inert was as high as 37.2% of the overall RDF mass and it mostly constituted glass and sand. The combined weight of sand and glass fragments contributed 73.5% of the total inert, while the rest was stone and small brickbats. The higher level of silicon associated with the presence of glass and sand yielded siloxane and triggered the possibility of kiln corrosion. A detailed RDF analysis report is enclosed in Table 2. The values explicitly portray the quality of RDF is moderately lower and higher salts concentration is extremely prevalent. With relatively lower NCV and such high salt concentration, the above specimen will certainly pose a corrosion threat to the kiln and shall be either neglected as kiln feed or can be utilized after dilution with Grade III RDF quality. Further, such high ash generation will also induct high transportation and landfill charges. Leachate Characterization The Malkaram leachate lake is the end result of prolonged, slow, and steady mixing of the legacy leachate through the existing fissure cracks in the sheath rock bottom profile. Apparently, the concentration of leachate is significantly lower due to the dilution. Samples were analyzed in triplicates and the mean value is tabulated here in Table 3. The metal concertation and rest of the parameter values are well within the secondary treatment influent range, except for TDS. Thus, a modular aerobic biological treatment unit such as moving bed biofilm bioreactor (MBBR) or membrane bioreactor (MBR) would be a well-suited pick. However, a reverse osmosis (RO) system needs to be installed to get rid of the high TDS content. The permeate of RO can be reused back into the system. Whereas, the reject can be converted into dried powder through forced evaporation mechanisms. The higher concentration of salts in RDF collaterally justifies the elevated TDS level in leachate. In a leachate impact assessment study performed by El-Salam and Abu-Zuid (2015) the reported BOD/COD ratio of 0.69 is greater than double the value of 0.301 reported in Table 3. Though the difference in both the values are quite high, it is relatable and justifiable by the huge age difference of the source waste. The primarily characterized data is of a fresh leachate generated from regular MSW, while the later one is from a decade old waste that barely has any unstabilized organic content. Groundwater Contamination The obvious reason for downward leachate infiltration and osmotic movement facilitates groundwater contamination. Both surface and subsurface water samples were collected within the dump yard and the buffer zone and analyzed using the standard methods. The results are portrayed in Table 4. The slightly alkaline pH of the borewell sample is an indication of the ongoing anaerobic process. The dissolved oxygen value of 3.5 mg/L further validates the correlation. Higher TDS and hardness values are self-indicative of elevated salt concentration in source waste. Eventually, the same interfered with the RDF quality. Positively in the case of all the parameters, a successive decrement in pollution concentration has been spotted from dump ground towards the buffer zone. In a similar study conducted by Singh et al. (2016) at Varanasi, Uttar Pradesh the reported concentration of the parameters is significantly higher than reported in Table 4. The basic reason behind variation is the dissimilarities of the local soil profile. The sandy and clay loam soil profile of Varanasi allows a greater rate of percolation and infiltration. While the bottom sheath rock profile at Jawahar Nagar permits the only a minute to little percolation rate. The difference in percolation rate is directly correlated to the concentration levels in this case. Contrarily, Kurakalva et al. (2016) have reported much-elevated pollutant concertation both in ground and surface water for a study conducted at the same site in 2016. The higher concentration is relatable to the fact of the non-closure of the open dump back then. Capping activity had at Jawahar Nagar gained its pace 2018 onwards and capping for the primary section of 70 acres got concluded only during mid of 2019. Due to the decrement in runoff and percolation, the quality of both surface and subsurface water has improved drastically. Impact Assessment The odor and groundwater contamination are two of the primary issues that triggered a massive public agitation initially. The root causes of both the issues are identified as rainwater percolation and anaerobic digestion respectively. Eventually, the completion of the capping process would resolve both the problems effectively. Other non-tangential impacts include nausea; headache; irritation of the eye, nasal cavity, and throat; diarrhoeal diseases; vector-borne disease, cattle toxicity etc. Scientific capping can easily cater as the wholesome solution for all (Cortellazzo et al., 2020). Yu et al. (2018) had performed an extensive study to comprehend the relativity of respiratory sickness and MSW borne air pollution. The study made a couple of dreadful revelations such as gases released due to the anaerobic digestion of MSW such as methane, hydrogen sulphide, and ammonia incur detrimental impact on Lysozyme and secretory immunoglobulin A (SIgA). While SO2 was reported as the lung capacity and functionality reducer. Further, a gender-specific study executed by the same research group revealed, air pollution impacts more severely on male children than the female and retards immune functions. Presently, the area of 351 acres has been developed as Asia’s one of the largest state of the art municipal solid waste processing and disposal facility by Ramky Enviro Engineers Limited. This ensured zero dumping and no further environmental interventions. As legal compliance, the facility monitors the quality of groundwater and ambient air quality in and around the facility on monthly basis to assure the biosafety. The variation in concentration of various monitoring parameters between 2012 to 2020 is summarized in Figure 2. The concentration of each of the parameters are showcased in ppm and a standard equipment error was settled at 3% for respirable dust sampler and multi-gas analyzer (Taheri et al., 2014). Despite all parameter values have gradually increased except for methane, the facility still managed to maintain them well under the regulatory limits. The decrement in methane concentration is directly correlated to the practice of aerobic composting and aeration-based secondary treatment that prevented the formation of the anaerobic atmosphere and henceforth methane generation. While for the rest of the parameters the increment in values is quite substantial and predictable due to the sudden escalation in MSW generation in the past decade in correlation with Gross domestic product (GDP) enhancement. The observed and interpreted impacts due to the elevated pollutant level are in-line with the georeferenced findings reported by Deshmukh and Aher (2016) based on a study conducted at Sangamner, Maharashtra. CONCLUSION The study critically analyzed and investigated every techno-environmental and socio-economic aspect correlated to open dumping. The bench-scale experimentation revealed the efficiency of the single liner scientific capping is fair enough to eliminate any further rainwater infiltration, however, it has no control over the generation of leachate due to the inherent moisture. Internal moisture related issue was anyhow compensated with pertinent compaction prior to dispose of the waste. 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Galizio, Mark, Melissa Deal, Andrew Hawkey, and Brooke April. "Working memory in the odor span task: effects of chlordiazepoxide, dizocilpine (MK801), morphine, and scopolamine." Psychopharmacology, August 24, 2012. http://dx.doi.org/10.1007/s00213-012-2825-7.

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Wagner, Thomas J., Katherine Bruce, and Mark Galizio. "Incrementing non-matching- but not matching-to-sample is rapidly learned in an automated version of the odor span task." Animal Cognition, February 25, 2022. http://dx.doi.org/10.1007/s10071-022-01608-6.

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"Language teaching." Language Teaching 36, no. 2 (April 2003): 120–57. http://dx.doi.org/10.1017/s0261444803211939.

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TESOL Quarterly (Alexandria, VA, USA), 36, 3 (2002), 453—75.03—284 Weasenforth, Donald (The George Washington U., USA; Email: weasenf@gwu.edu), Biesenbach-Lucas, Sigrun and Meloni, Christine. Realising constructivist objectives through collaborative technologies: Threaded discussions. Language Learning and Technology (http://llt.msu.edu/), 6, 3 (2002), 58—86.
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